US20050015837A1 - Stab proof vest - Google Patents
Stab proof vest Download PDFInfo
- Publication number
- US20050015837A1 US20050015837A1 US10/743,462 US74346203A US2005015837A1 US 20050015837 A1 US20050015837 A1 US 20050015837A1 US 74346203 A US74346203 A US 74346203A US 2005015837 A1 US2005015837 A1 US 2005015837A1
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- US
- United States
- Prior art keywords
- elements
- proof vest
- coupling
- stab proof
- stab
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 230000008878 coupling Effects 0.000 claims abstract description 173
- 238000010168 coupling process Methods 0.000 claims abstract description 173
- 238000005859 coupling reaction Methods 0.000 claims abstract description 173
- 229910001220 stainless steel Inorganic materials 0.000 claims description 18
- 239000010935 stainless steel Substances 0.000 claims description 18
- 239000000725 suspension Substances 0.000 description 15
- 239000000463 material Substances 0.000 description 6
- 238000005452 bending Methods 0.000 description 4
- 239000004918 carbon fiber reinforced polymer Substances 0.000 description 4
- 239000004744 fabric Substances 0.000 description 4
- 239000011152 fibreglass Substances 0.000 description 4
- 230000004048 modification Effects 0.000 description 4
- 238000012986 modification Methods 0.000 description 4
- 230000000149 penetrating effect Effects 0.000 description 4
- 230000001681 protective effect Effects 0.000 description 4
- 229910000831 Steel Inorganic materials 0.000 description 3
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 3
- 229910052782 aluminium Inorganic materials 0.000 description 3
- 230000006378 damage Effects 0.000 description 3
- 239000010959 steel Substances 0.000 description 3
- 238000003466 welding Methods 0.000 description 3
- -1 acryl Chemical group 0.000 description 2
- 230000007797 corrosion Effects 0.000 description 2
- 238000005260 corrosion Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 239000004417 polycarbonate Substances 0.000 description 2
- 229920000515 polycarbonate Polymers 0.000 description 2
- 238000003825 pressing Methods 0.000 description 2
- 229920005989 resin Polymers 0.000 description 2
- 239000011347 resin Substances 0.000 description 2
- 208000027418 Wounds and injury Diseases 0.000 description 1
- 210000001015 abdomen Anatomy 0.000 description 1
- 239000000835 fiber Substances 0.000 description 1
- 208000014674 injury Diseases 0.000 description 1
- 239000010985 leather Substances 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 231100000989 no adverse effect Toxicity 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 229920003023 plastic Polymers 0.000 description 1
- 210000004243 sweat Anatomy 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H1/00—Personal protection gear
- F41H1/02—Armoured or projectile- or missile-resistant garments; Composite protection fabrics
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41H—ARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
- F41H5/00—Armour; Armour plates
- F41H5/02—Plate construction
- F41H5/04—Plate construction composed of more than one layer
- F41H5/0492—Layered armour containing hard elements, e.g. plates, spheres, rods, separated from each other, the elements being connected to a further flexible layer or being embedded in a plastics or an elastomer matrix
Definitions
- the present invention relates to a stab proof vest for protecting a wearer against an attacker possessing a sharp object such as a knife, which can be effectively worn by a taxi driver, a guard, a clerk at a convenience store, a bank clerk, a police officer, etc.
- Japanese Utility Model Publication No. 14(1939)-559 discloses a stab proof protective gear which protects a wearer against an attacker possessing a sharp object such as a knife.
- the stab proof protective gear has two steel plates having thickness of a few centimeters which are disposed in the front and back of the wearer.
- a stab proof vest wherein at least a portion of the stab proof vest includes a plurality of elements, and a coupling member for coupling adjacent the elements together.
- Each side of the elements is provided with at least one projection and at least one depression adjacent to the projection, and a coupling hole into which the coupling member is inserted.
- the projection of one of the element is engaged with the depression of an adjacent the element.
- the common coupling member is inserted into each the hole of adjacent the elements and is secured thereto in order to couple the adjacent elements.
- the stab proof vest prefferably fastened by hook and loop fasteners provided on front and back faces of the stab proof vest.
- the element prefferably be made of stainless steel.
- the element can be provided with an air vent.
- the projection and the depression prefferably be asymmetrically provided on at least one of two pairs of opposite sides of the element.
- the coupling member prefferably includes a rectangular main portion, and arm portions provided at both ends of the main portion and extending perpendicularly to the main portion.
- the coupling member has a shape of a letter “H.”
- the two of the coupling holes prefferably be formed in each side of the element, and for the arm portions of the coupling member to be inserted into the coupling holes to couple adjacent the elements together.
- the coupling member can be made of stainless steel.
- the at least a portion of the stab proof vest prefferably covered with an elastic member.
- a thickness of the element prefferably in a range of 0.5 mm to 2 mm.
- Each of the elements can have the same shape.
- At least one of a front body portion and a back body portion is desirable for at least one of a front body portion and a back body portion to include a single plate member.
- FIG. 1A is a plan view of an element of a stab proof vest, according to a first embodiment of the present invention
- FIG. 1B is a side view of the element of the stab proof vest
- FIG. 2 is a plan view of the elements constituting the stab proof vest according to the first embodiment which are arranged in a horizontal direction;
- FIG. 3 is a plan view of the elements of the stab proof vest according to the first embodiment which are arranged in a vertical direction;
- FIG. 4A is a plan view of a coupling member for coupling four elements of the stab proof vest, according to the first embodiment, which are arranged in two columns and two rows;
- FIG. 4B is a plan view of another coupling member for coupling two elements of the stab proof vest in the horizontal direction;
- FIG. 4C is a plan view of further another coupling member for coupling two elements of the stab proof vest in the vertical direction;
- FIG. 5 is a plan view showing the attachment positions of the coupling members to elements of the stab proof vest arranged vertically and horizontally;
- FIG. 6A is a plan view showing the elements of the stab proof vest coupled by the coupling members in the vertical and horizontal directions;
- FIG. 6B is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line VIB-VIB of FIG. 6A ;
- FIG. 6C is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line VIC-VIC of FIG. 6A ;
- FIG. 6D is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line VID-VID of FIG. 6A ;
- FIG. 7 is a plan view of the stab proof vest in which the elements thereof are completely coupled together;
- FIG. 8 is a perspective view of the stab proof vest in which hook and loop fasteners and suspension members are attached;
- FIG. 9 is a plan view showing the modification of the first embodiment according to the present invention.
- FIG. 10A is a plan view of an element of the stab proof vest, according to a second embodiment of the present invention.
- FIG. 10B is a side view of the element of the stab proof vest of FIG. 10A ;
- FIG. 10C is a plan view of an element of the stab proof vest according to the second embodiment.
- FIG. 10D is a side view of the element of the stab proof vest of FIG. 10C ;
- FIG. 11 is a plan view showing the elements of the stab proof vest, according to the second embodiment, which are arranged in the vertical and horizontal directions;
- FIG. 12A is a plan view showing the elements of the stab proof vest, according to the second embodiment, which are coupled by the coupling members in the vertical and horizontal directions;
- FIG. 12B is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line XIIB-XIIB of FIG. 12A ;
- FIG. 12C is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line XIIC-XIIC of FIG. 12A ;
- FIG. 12D is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line XIID-XIID of FIG. 12A ;
- FIG. 13 is a plan view of a stab proof vest, according to the second embodiment, in which the elements of the stab proof vest are completely coupled;
- FIG. 14 is an explanatory view of a cover according to the second embodiment.
- FIG. 15 is a plan view of a stab proof vest according to a third embodiment of the present invention.
- a stab proof vest (a stab proof jacket) 10 is used for protecting a wearer against an attacker (criminal) possessing a sharp object such as a knife.
- the stab proof vest 10 comprises elements (rectangular elements) 20 which are coupled vertically and horizontally.
- FIGS. 1A and 1B show an element 20 (of the stab proof vest 10 shown in FIG. 7 ).
- the element 20 is an approximately rectangle-shaped stainless steel plate which has been press-formed. According to an experiment carried out by the inventor of the present invention, even when the element 20 having a thickness of 0.8 mm is stabbed with great force using a knife, the tip of the knife does not penetrate the element 20 . It is apparent from the experiment that the element 20 has high resistance to stabbing. On the other hand, it is desirable that the element 20 is thin and lightweight so that the stab proof vest 10 (which constructed from a plurality of the elements 20 ) is suitable for wearing for a period of long time.
- the thickness of the element 20 is approximately 0.5 to 2 mm, and a range of 0.5 to 1 mm is more desirable.
- the wearer can easily wear the stab proof vest 10 between outerwear and underwear, or under the underwear. Since the stainless steel has high resistance to corrosion, the element 20 of stainless steel is not subject to corrosion by human sweat even if a stab proof vest 10 is worn for a long time. The element 20 has little or no adverse effect on the human body.
- the element 20 is made of stainless steel in this embodiment, but can be made of another material such as aluminum, acryl resin, polycarbonate, CFRP (carbon fiber reinforced plastic), and GFRP (glass fiber reinforced plastic), as long as the material has both resistance to stabbing and light weight.
- another material such as aluminum, acryl resin, polycarbonate, CFRP (carbon fiber reinforced plastic), and GFRP (glass fiber reinforced plastic), as long as the material has both resistance to stabbing and light weight.
- the element 20 has a pair of long sides 21 and 22 extending in a vertical direction (in direction A of FIG. 1A ).
- a plurality of rectangular projections 31 and 33 protruding outward in a horizontal direction (in direction B of FIG. 1A ), are vertically provided in the long sides 21 and 22 , respectively.
- Rectangular depressions 32 are formed between the adjacent projections 31 .
- rectangular depressions 34 are formed between the adjacent projections 33 .
- the projections 31 and depressions 32 are alternately arranged along the long side 21 , and the widths of the projections 31 in the vertical direction are the same as those of the depressions 32 .
- the projections 33 and the depressions 34 are alternately arranged along the long side 22 , and the widths of the projections 33 in the vertical direction are the same as those of the depressions 34 . Accordingly, as shown in FIG. 2 , the projections 31 are inserted into and engaged with the depressions 34 of an adjacent element 20 , and the projections 33 are inserted into and engaged with the depressions 32 of an adjacent element 20 , to couple (connect) the adjacent elements 20 together.
- the projections 31 and the depressions 34 are asymmetrically provided on opposite sides of the element 20 , and the depressions 32 and the projections 33 are likewise asymmetrically provided on opposite sides of the element 20 . Namely, one of the projections 31 is provided at an uppermost portion of the long side 21 , and one of the depressions 32 provided at a lowermost portion of the long side 21 . Likewise, one of the depressions 34 is provided at an uppermost portion of the long side 22 , and one of the projections 33 is provided at a lowermost portion of the long side 22 .
- the projections 31 and 33 are inserted into and engaged with the depressions 34 and 32 of the adjacent elements 20 , respectively, so that the elements 20 are coupled and arranged in line without leaving any gap.
- the long side 21 cannot be engaged with the long side 21 of an adjacent element 20
- the long side 22 cannot be engaged with the long side 22 of an adjacent element 20 .
- the element 20 when the element 20 is curved (bent) so as to fit a human body, as shown in FIG. 1B , it is unnecessary to confirm the direction of curvature whenever the element 20 is coupled. Furthermore, the elements 20 are formed into the same shape, so that the cost for dies is reduced.
- one projection and one corresponding depression can be alternatively provided one each long side 21 and 22 in order to couple the adjacent elements 20 .
- the shape of the projections 31 and 33 and the depressions 32 and 34 can be an arc, instead of a rectangle, as long as the projections 31 and 33 are engageable with the depressions 32 and 34 , respectively.
- the projection 31 or the depression 34 may not be provided at an uppermost position, and the depression 32 or the projection 33 may not be provided at a lowermost position, as long as the projections ( 31 and 32 ) and depressions ( 33 and 34 ) are formed at corresponding positions on the long sides 21 and 22 .
- a pair of short sides 23 and 24 of the element 20 extends in the horizontal direction.
- An arc-shaped depression 35 is formed in the middle of the short side 23 .
- An arc-shaped projection 36 having the shape corresponding with the depression 35 is formed in the middle of the short side 24 (refer to FIG. 1A ).
- FIG. 3 when the projection 36 is inserted into and engaged with the depression 35 of the vertically adjacent element 20 , a plurality of the elements 20 are vertically aligned without leaving any gap. Since the elements 20 are coupled by the engagement of the depression 35 and the projection 36 , there is no linear gap left between an adjacent elements 20 , so that an edge of an edge tool does not enter through the gap.
- the short side 23 cannot be engaged with the short side 23 of an adjacent element 20 , and the short side 24 cannot be engaged with the short side 24 of an adjacent element 20 . Therefore, it is possible to prevent the element 20 from being engaged in an improper manner.
- FIG. 1A Although one depression 35 and one projection 36 are provided in FIG. 1A , a plurality of depressions and a corresponding plurality of projections can be provided on the short sides 23 and 24 , respectively.
- the shape of the depression 35 and the projection 36 can be rectangular, instead of an arc, as long as the projection 36 is engageable with the depression 35 .
- Coupling holes 37 and 38 for inserting a coupling member thereinto are formed at one vertical end (the upper end as shown in FIG. 1A ) of the element 20 , and coupling holes 39 and 40 are formed in the other vertical end (the lower end as shown in FIG. 1A ) thereof.
- the coupling holes 37 through 40 are rectangular openings having the same shape.
- the coupling holes 37 and 39 are symmetrical to the coupling holes 38 and 40 of the adjacent element 20 (refer to FIG. 2 ).
- the coupling holes 37 and 38 are symmetrical to the coupling holes 39 and 40 of an adjacent element 20 (refer to FIG. 3 ).
- Coupling holes 41 and 42 for inserting a coupling member thereinto are formed at one horizontal end (the left end as shown in FIG. 1A ) of the element 20 , and coupling holes 43 and 44 are formed at the other horizontal end (the right end as shown in FIG. 1A ) of the element 20 .
- the coupling holes 41 to 44 are rectangular openings having the same size and shape. When the elements 20 are horizontally aligned, the coupling holes 41 and 42 are symmetrical to the coupling holes 43 and 44 of the adjacent element 20 .
- the coupling holes 37 to 40 and the coupling holes 41 to 44 are the same, and the distance between the coupling hole 37 and the coupling hole 38 of the adjacent element 20 (the coupling hole 39 and the coupling hole 40 of an adjacent element 20 ) is the same as the distance between the coupling holes 41 and 42 (the coupling holes 43 and 44 ) in a single element 20 , a common coupling member can be used so that the cost can be reduced.
- coupling members 50 , 60 and 65 made of stainless steel are used for coupling the elements 20 .
- the coupling member 50 couples four elements 20 which are arranged in two columns and two rows.
- the coupling member 50 press-formed into the shape of a letter “H”, includes a rectangular main portion 51 extending horizontally, and rectangular arm portions 52 and 53 extending vertically which are disposed in both ends of the main portion 51 .
- the distance between the arm portions 52 and 53 corresponds with the distance between the coupling hole 37 and the coupling hole 38 of an adjacent element 20 (the coupling hole 39 and the coupling hole 40 of an adjacent element 20 ).
- the width of the arm portions 52 and 53 in the horizontal direction is almost the same as the width of the coupling holes 37 to 40 .
- the end portions 53 a and 53 b of the arm portion 53 are inserted and press-fitted into the coupling holes 39 and 37 , respectively, of the two different elements 20 arranged on a right side.
- the end portions 52 a and 52 b of the arm portion 52 are inserted and press-fitted into the coupling holes 40 and 38 , which are in the vicinity of the coupling holes 39 and 37 , of the two different elements 20 arranged on a left side, respectively. Thereafter, as shown in FIGS.
- the coupling member 50 can be secured to the elements 20 by welding, bonding, or the like, by only inserting and folding the upper end portions 52 a and 53 a and lower end portions 52 b and 53 b , a coupling between adjacent elements 20 can be maintained due to the rigidity of stainless steel, and also allows bending of the stab proof vest 10 via the coupling members 50 about the boundary surface 45 in accordance with the shape and movement of a wearer's body. Moreover, since a single coupling member ( 50 ) can couple the four elements arranged in two columns and two rows, it is possible to efficiently carry out an assembly process.
- the coupling member 60 is used for coupling the two adjacent elements 20 in the horizontal direction.
- the coupling member 60 press-formed into the shape of letter “I” (the same as the shape of letter “H” rotated 90 degrees), includes a rectangular main portion 61 extending vertically, and rectangular arm portions 62 and 63 extending horizontally which are disposed in both ends of the main portion 61 .
- the distance between the arm portions 62 and 63 corresponds with the distance between coupling holes 41 and 42 (the coupling holes 43 and 44 ).
- the width of the arm portions 62 and 63 in the vertical direction is substantially the same as the width of the coupling holes 41 to 44 .
- the left end portions 62 a and 63 a of the arm portions 62 and 63 are inserted into the coupling holes 43 and 44 of the element 20 arranged on a left side, respectively.
- the right end portions 62 b and 63 b of the arm portions 62 and 63 are inserted into the coupling holes 41 and 42 , which are in the vicinity of the coupling holes 43 and 44 , of the element 20 arranged on a right side, respectively. Thereafter, as shown in FIGS.
- the coupling member 60 can be secured to the elements 20 by welding, bonding, or the like, by only inserting and folding the left end portions 62 a and 63 a and the right end portions 62 b and 63 b , a coupling between adjacent elements 20 can be maintained due to the rigidity of stainless steel, and also allows bending of the stab proof vest 10 via the coupling member 60 about the boundary surface 46 in accordance with the shape and movement of a wearer's body.
- it is possible to couple the elements 20 only by the coupling members 50 it is desirable to use the coupling members 60 also for the purpose of ensuring a secure coupling.
- the coupling member 65 is used for vertically coupling the elements 20 arranged in horizontal end portions.
- the coupling member 65 is press-formed into a rectangular shape extending in the vertical direction.
- an upper end portion 65 a is inserted into the coupling hole 39 of the element 20 arranged on an upper side, and a lower end portion 65 b is inserted into the coupling hole 37 of the element 20 arranged on a lower side.
- the upper end portion 65 a is inserted into the coupling hole 40 of the element 20 arranged on the upper side, and the lower end portion 65 b is inserted into the coupling hole 38 of the element 20 arranged on the lower side.
- the coupling member 65 can be secured to the elements 20 by welding, bonding, or the like, by only inserting and folding the upper and lower end portions 65 a and 65 b , a coupling between adjacent elements 20 can be maintained due to the rigidity of stainless steel, and also allows bending of the stab proof vest 10 via the coupling members 65 about the boundary surface 45 in accordance with the shape and movement of a wearer's body.
- it is possible to couple the elements 20 only by the coupling members 50 it is desirable to use the coupling members 65 also, for the purpose of ensuring a secure coupling of the elements 20 in the horizontal end portions. Since the unsecured end portions may cause injury on a wearer, it is also desirable to secure the end portions with the coupling member 65 for safety reasons.
- the thickness of the coupling member 50 , 60 , 65 be 0.5 to 1 mm.
- the coupling members 50 and 60 can be in a rectangular shape to have the same width as that of the coupling holes 37 to 44 . In this case, both ends of the coupling member 50 or 60 are inserted into the coupling holes 37 and 39 , the coupling holes 38 and 40 , the coupling holes 41 and 43 , or the coupling holes 42 and 44 . Thereafter, the ends of the coupling member 50 or 60 protruding from the rear face 26 are folded and secured as in the case of the above embodiment.
- the number of the coupling holes formed in each side of the element 20 can be one, three or more, as long as the adjacent elements 20 are securely coupled with each other.
- the stab proof vest 10 of the present invention which protects the wearer against an attacker possessing a sharp object such as a knife. Since the rectangular elements 20 are coupled vertically and horizontally, and the adjacent elements 20 are bendable, so that the stab proof vest 10 fits the wearer's body.
- the number of elements 20 coupled in the vertical and horizontal directions is can be appropriately changed in accordance with the physique of the wearer, the area to be protected, etc. In other words, the elements 20 coupled in the vertical direction are addable or detachable in accordance with the size of a chest, and the elements 20 coupled in the horizontal direction are addable or detachable in accordance with height.
- the elements 20 vertically coupled in a front part 11 corresponding to the front body part and both sides can be larger in number than that in a back body part 12 .
- the end face of the stab proof vest 10 can be straight, as shown in FIG. 7 , by omitting the depressions 35 of the elements 20 uppermost in the vertical direction, the projections 36 of the lowermost elements 20 , the projections 31 of the elements 20 in the horizontal left end, and the projections 33 of the elements 20 in the horizontal right end.
- a wearer and his or her clothes are prevented from damage, because the projections 31 , 33 , and 36 do not protrude outward.
- FIG. 7 To prevent any physical damage of the wearer, as shown in FIG.
- rectangular hook and loop fasteners 70 and 71 have the same shape are disposed on the upper and lower sides in the vertical direction on the front face 11 a of the front part 11 .
- Hook and loop fasteners 73 and 74 are also so disposed in the rear face 12 b of the back body part 12 as to be opposed to the hook and loop fasteners 70 and 71 , when wrapping the wearer's body (upper-body) with the stab proof vest 10 .
- the fasteners 70 and 71 there are small loops arranged on a base material (not illustrated).
- the fasteners 73 and 74 there are small hooks arranged on a base material (not illustrated).
- the hooks are engaged with the loops to fasten the fasteners 73 and 74 on the fasteners 70 and 71 . Accordingly, the wearer's body is wrapped in the stab proof vest 10 so that the front part 11 covers the front and side of the wearer, and then the fasteners 73 and 74 are pressed against the fasteners 70 and 71 to secure the stab proof vest 10 .
- the hooks can be provided in the fasteners 70 and 71
- the loops can be provided in the fasteners 73 and 74 .
- Another type of fastener having the configuration except for the combination of the hooks and loops can be alternatively used.
- the positions and the number of the hook and loop fasteners can be optional, as long as the hook and loop fasteners in the front part 11 correspond to those in the back part 12 in position, and the hook and loop fasteners are have the same shape.
- each of the suspension members 81 and 82 includes a belt 81 a or 82 a , a length adjusting portion 81 b or 82 b , a connecting portion 81 c or 82 c connected to one end of the belt 81 a or 82 a via the length adjusting portion 81 b or 82 b , and a connecting portion 81 d or 82 d connected to the other end of the belt 81 a or 82 a .
- the suspension members 81 and 82 are suspended from both shoulders of the wearer.
- hooks 81 c 1 and 81 c 2 provided at the end of the connecting portion 81 c are inserted into the coupling holes 37 and 38 of the uppermost element 20 in the front part 11 from the side of the front face 11 a , and then protruding parts of the hooks 81 c 1 and 81 c 2 from a rear face 11 b are bent upward.
- Hooks 81 d 1 and 81 d 2 provided at the end of the connecting portion 81 d are inserted into the coupling holes 37 and 38 of the uppermost element 20 in the back part 12 from the side of the front face 12 a , and then protruding parts of the hooks 81 d 1 and 81 d 2 from a rear face 12 b are bent upward, in order to secure the suspension member 81 to the stab proof vest 10 .
- hooks 82 c 1 and 82 c 2 provided at the end of the connecting portion 82 c are inserted into the coupling holes 37 and 38 of the uppermost element 20 in the front part 11 from the side of the front face 11 a , and then protruding parts of the hooks 82 c 1 and 82 c 2 from a rear face 11 b are bent upward.
- Hooks 82 d 1 and 82 d 2 provided at the end of the connecting portion 82 d are inserted into the coupling holes 37 and 38 of the uppermost element 20 in the back part 12 from the side of the front face 12 a , and then protruding parts of the hooks 82 d 1 and 82 d 2 from a rear face 12 b are bent upward, in order to secure the suspension member 82 to the stab proof vest 10 .
- the suspension members 81 and 82 are disposed in any places of the front part 11 and the back body part 12 , in accordance with the physique of the wearer, or preference of the wearer, etc.
- the belts 81 a and 82 a are made of, for example, cloth or leather.
- the connecting portions 81 c , 81 d , 82 c , and 82 d are made of material which can suspend the stab proof vest 10 for a long time, such as stainless steel, aluminum, and plastics.
- the stab proof vest 10 it is desirable to cover the stab proof vest 10 with an elastic member or stretchable member (for example, rubber or cloth), in order to prevent the wearer and his/her clothes from being damaged by the front and rear faces 11 a and 11 b of the front part 11 , and the front and rear faces 12 a and 12 b of the back body part 12 . It is desirable to secure the elastic or stretchable member to the stab proof vest 10 by bonding, binding, or the like.
- the elastic or the stretchable member can cover the whole of the stab proof vest 10 , or a part thereof.
- the stab proof vest 10 is constructed from the plurality of elements 20 coupled vertically and horizontally.
- the stab proof vest 10 can be constructed from vertically extending long plates which are coupled in the horizontal direction.
- the elements 20 are vertically coupled in an upward direction to the uppermost elements 20 in addition, the wearer's neck is also protected. In this case, it is desirable to add smaller elements 20 than those wrapped around the body, in order not to constrict the movement of the neck.
- the elements 20 are vertically coupled in a downward direction from the lowermost elements 20 in addition, it is possible to also protect wearer's waist and legs, etc.
- the stab proof vest includes elements 90 and 120 shown in FIGS. 10A to 10 D, in addition to the elements 20 .
- the element 90 is a stainless steel plate having an approximately right-angled triangular shape which is press-formed. It is desirable for the thickness of the element 90 to be approximately 0.5 to 2 mm, and a range of 0.5 to 1 mm is more desirable. When the thickness of the element 90 is within the above-mentioned range, the wearer can wear the stab proof vest between outerwear and underwear, or under the underwear.
- Rectangular projections 103 are provided on a long side 92 of the element 90 along a vertical direction (in direction C of FIG. 10A ).
- the rectangular projections 103 protrude outward in a horizontal direction (along the direction of D of FIG. 10A ).
- a plurality of depressions 104 are formed between the adjacent projections 103 .
- the projections 103 and the depressions 104 are provided alternatively along the long side 92 , and the width of the projection 103 in the vertical direction is the same as that of the depression 104 . Accordingly, the projections 103 are inserted into and engaged with the depressions 32 of an adjacent element 20 , as shown in FIG. 11 , so that the element 90 is coupled to the element 20 . Since the element 90 is coupled to the element 20 by the engagement between the projection 103 and the depression 32 , a linear gap is not left at the boundary between the adjacent elements 90 and 20 , so that an edge or tip of a sharp object such as a knife cannot enter through the gap therebetween.
- An arc-shaped projection 106 corresponding to the depression 35 of the element 20 , is provided at the midpoint of a short side 94 of the element 90 extending in the horizontal direction (refer to FIG. 10A ).
- FIG. 11 when the projection 106 of the element 90 is vertically inserted into and engaged with the depression 35 of the element 20 , the elements 90 and 20 are vertically aligned without leaving any gap. Since the element 90 is coupled to the element 20 by the engagement between the projection 106 and the depression 35 , as described above, a linear gap is not left in the boundary between the elements 90 and 20 , so that an edge of an edge tool does not enter through the gap.
- the short side 94 of the element 90 does not fit with the short side 24 of the element 20 , so that it is possible to couple the elements 90 and 20 in a correct orientation.
- the element 120 shown in FIGS. 10C and 10D is a stainless steel plate having an approximately right-angled triangular shape which is press-formed. It is desirable that the thickness of the element 120 is approximately 0.5 to 2 mm, and a range of 0.5 to 1 mm is more desirable. When the thickness of the element 120 is within the above-mentioned range, the wearer can wear the stab proof vest between outerwear and underwear, or under the underwear.
- Rectangular projections 131 are provided on a long side 122 of the element 120 along a vertical direction (in direction E of FIG. 10C ).
- the rectangular projections 131 protrude outward in a horizontal direction (along direction F of FIG. 10C ).
- a plurality of depressions 132 are formed between the adjacent projections 131 .
- the projections 131 and the depressions 132 are provided alternatively along the long side 122 , and the width of the projection 131 in the vertical direction is the same as that of the depression 132 . Accordingly, the projections 131 are inserted into and engaged with the depressions 34 of an adjacent element 20 , as shown in FIG. 11 , so that the element 120 is coupled to the element 20 . Since the element 120 is coupled to the element 20 by the engagement between the projection 131 and the depression 34 , a linear gap is not left at the boundary between the adjacent elements 120 and 20 , so that an edge or tip of a sharp object such as a knife cannot enter through the gap therebetween.
- An arc-shaped projection 136 corresponding to the depression 35 of the element 20 , is provided at the midpoint of a short side 124 of the element 120 extending in the horizontal direction (refer to FIG. 10 c ).
- the projection 136 of the element 120 is vertically inserted into and engaged with the depression 35 of the element 20 , the elements 120 and 20 are vertically aligned without leaving any gap. Since the element 120 is coupled to the element 20 by the engagement between the projection 136 and the depression 35 , as described above, a linear gap is not left in the boundary between the elements 120 and 20 , so that an edge of an edge tool does not enter through the gap.
- the short side 124 of the element 120 does not fit with the short side 24 of the element 20 , so that it is possible to couple the elements 120 and 20 in a correct orientation.
- coupling holes (holes) 109 and 110 for inserting a coupling member are formed in the lower end portion of the element 90 .
- the coupling holes 109 and 110 are rectangular openings having the same shape.
- the coupling hole 110 is symmetrical to the coupling hole 39 of the element 20 (refer to FIG. 11 ).
- the coupling holes 109 and 110 are symmetrical to the coupling holes 37 and 38 of the element 20 , respectively (refer to FIG. 11 ).
- coupling holes 113 and 114 for inserting a coupling member thereinto are formed in the horizontal right end of the element 90 .
- the coupling holes 113 and 114 are rectangular openings having the same shape.
- the coupling holes 113 and 114 are symmetrical to the coupling holes 41 and 42 of the element 20 (refer to FIG. 11 ).
- the size and shape of the coupling holes 109 , 110 , 113 and 114 is the same as that of the coupling holes 37 to 44 of the element 20 , and the distance between the coupling holes 109 and 110 is the same as the distance between the coupling holes 113 and 114 , a common coupling member can be used so that the cost can be reduced.
- coupling holes 139 and 140 for inserting a coupling member thereinto are formed in the lower end of the element 120 .
- the coupling holes 139 and 140 are rectangular openings having the same shape.
- the coupling hole 140 is symmetrical to the coupling hole 40 of the element 20 (refer to FIG. 11 ).
- the coupling holes 140 and 139 are symmetrical to the coupling holes 37 and 38 of the element 20 (refer to FIG. 11 ).
- coupling holes 141 and 142 for inserting a coupling member thereinto are formed along the horizontal left end of the element 120 .
- the coupling holes 141 and 142 are rectangular openings having the same shape.
- the coupling holes 141 and 142 are symmetrical to the coupling holes 43 and 44 of the element 20 (refer to FIG. 11 ). If the shape of the coupling holes 139 to 142 is the same as that of the coupling holes 37 to 44 of the element 20 , and the distance between the coupling holes 139 and 140 is the same as the distance between the coupling holes 141 and 142 , cost is reduced because a common coupling member can be used.
- the coupling members 50 , 60 , and 65 made of stainless steel shown in FIGS. 4A to 4 C are used for coupling the element 90 or 120 to the element 20 .
- How to couple the element 120 is hereinafter described with reference to FIGS. 11 and 12 A to 12 D. Note that the element 90 is coupled in a like manner.
- the end portions 52 a and 52 b (or the end portions 53 a and 53 b ) of the arm portion 52 of the coupling member 50 is inserted (press-fitted) into the coupling holes 140 and 37 , respectively.
- the upper end portion 65 a of the coupling member 65 is inserted into the coupling hole 139 of the element 120 arranged on an upper side, and the lower end portion 65 b thereof is inserted into the coupling hole 38 of the element 20 arranged on a lower side, to securely couple the elements 120 and 20 together.
- the left end portions 62 a and 63 a of the arm portions 62 and 63 are inserted into the coupling holes 43 and 44 of the element 20 arranged on a left side, and the right end portions 62 b and 63 b of the arm portions 62 and 63 are inserted into the coupling holes 141 and 142 , which are in the vicinity of the coupling holes 43 and 44 , of the element 120 arranged on a right side, respectively.
- a stab proof vest 150 having such a configuration according to the second embodiment can protect a greater portion of the wearer.
- the suspension members 81 and 82 can be directly attached to the elements 20 of the stab proof vest 150 , as in the first embodiment.
- Suspension members 161 and 162 as shown in FIG. 14 , can be sewed on a cloth cover 160 which contains the stab proof vest 150 . Since a wearer suspends the suspension members 161 and 162 from his/her shoulders, the stab proof vest 15 is prevented from dropping.
- the cover 160 contains the stab proof vest 150 in a space 165 between a front portion 163 and a back portion 164 sewed together.
- the cover 160 can be applied to the stab proof vest 10 according to the first embodiment.
- the stab proof vest 150 can be composed of elastic members or stretchable members (for example, rubber or cloth).
- plate members 180 and 190 are provided for wearing on the front body portion and the back body portion, respectively.
- the plate members 180 and 190 are connected by connection members 200 and 210 , each of which is constructed from the elements 20 coupled vertically and horizontally.
- Each of the plate members 180 and 190 in the shape of an approximately rectangle is press-formed from stainless steel. It is desirable that the thickness of the plate members 180 and 190 is approximately 0.5 to 2 mm, as in the case of the element 20 . A range of 0.5 to 1 mm is more desirable.
- the plate members 180 and 190 are made of stainless steel in this embodiment, the members can be made of, for example, aluminum, acryl resin, polycarbonate, CFRP (carbon fiber reinforced plastic), GFRP (glass fiber reinforced plastic), or fiber having special configuration, as long as the material has both resistance to stabbing and is light weight.
- Connection slots 181 and 182 for attaching the suspension member 81 and connection slots 183 and 184 for attaching the suspension member 82 are formed in the upper portion of the plate member 180 in a vertical direction.
- Connection slots 193 and 194 for attaching the suspension member 81 and the connection slots 191 and 192 for attaching the suspension member 82 are formed in the upper portion of the plate member 190 in the vertical direction.
- Hook and loop fasteners 185 and 186 are glued on both ends of the plate member 180 in the horizontal direction, and hook and loop fasteners 195 and 196 are glued on both ends of the plate member 190 .
- hook and loop fasteners 201 and 202 are glued on both ends of the connection member 200 in the horizontal direction
- hook and loop fasteners 211 and 212 are glued on both ends of the connection member 210 . Pressing the fasteners 201 , 202 , 211 and 212 against the fasteners 186 , 195 , 196 , and 185 makes it possible to assemble the stab proof vest 170 .
- the flexible connection members 200 and 210 can securely protect the sides of the wearer. Adopting the plate members 180 and 190 in the front and back body parts, instead of the coupled elements 20 , makes it possible to reduce a process for coupling the elements 20 . Therefore, manufacturing cost is reduced.
- both of the plate members 180 and 190 are provided for wearing on the front and back body portions.
- One of the plate members 180 and 190 can be exchanged with a connection member, such as the connection members 200 and 210 , which includes the elements 20 coupled vertically and horizontally.
- the configuration, operation, effect, and modification of the third embodiment are the same as those of the first and second embodiments, except for those mentioned above.
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Professional, Industrial, Or Sporting Protective Garments (AREA)
Abstract
A stab proof vest, wherein at least a portion of the stab proof vest includes a plurality of elements, and a coupling member for coupling adjacent the elements together. Each side of the elements is provided with at least one projection and at least one depression adjacent to the projection, and a coupling hole into which the coupling member is inserted. The projection of one element is engaged with the depression of an adjacent element. The common coupling member is inserted into each the hole of adjacent elements and is secured thereto in order to couple the adjacent elements.
Description
- 1. Field of the Invention
- The present invention relates to a stab proof vest for protecting a wearer against an attacker possessing a sharp object such as a knife, which can be effectively worn by a taxi driver, a guard, a clerk at a convenience store, a bank clerk, a police officer, etc.
- 2. Description of the Related Art
- Japanese Utility Model Publication No. 14(1939)-559 discloses a stab proof protective gear which protects a wearer against an attacker possessing a sharp object such as a knife. The stab proof protective gear has two steel plates having thickness of a few centimeters which are disposed in the front and back of the wearer.
- In the above stab proof protective gear, though an edge tool does not penetrate the steel plate due to the thickness thereof, the protective gear is too heavy to wear for a long period of time. Moreover, since the two steel plates just sandwich the wearer at the front and back and do not cover either side of the wearer, the sides of the wearer cannot be protected from being stabbed.
- According to an aspect of the present invention, a stab proof vest, wherein at least a portion of the stab proof vest includes a plurality of elements, and a coupling member for coupling adjacent the elements together. Each side of the elements is provided with at least one projection and at least one depression adjacent to the projection, and a coupling hole into which the coupling member is inserted. The projection of one of the element is engaged with the depression of an adjacent the element. The common coupling member is inserted into each the hole of adjacent the elements and is secured thereto in order to couple the adjacent elements.
- It is desirable for the coupling member couples four elements arranged in two columns and two rows.
- It is desirable for the stab proof vest to be fastened by hook and loop fasteners provided on front and back faces of the stab proof vest.
- It is desirable for the element to be made of stainless steel.
- The element can be provided with an air vent.
- It is desirable for the projection and the depression to be asymmetrically provided on at least one of two pairs of opposite sides of the element.
- It is desirable for the coupling member to include a rectangular main portion, and arm portions provided at both ends of the main portion and extending perpendicularly to the main portion. The coupling member has a shape of a letter “H.”
- It is desirable for the two of the coupling holes to be formed in each side of the element, and for the arm portions of the coupling member to be inserted into the coupling holes to couple adjacent the elements together.
- The coupling member can be made of stainless steel.
- It is desirable for the at least a portion of the stab proof vest to be covered with an elastic member.
- It is desirable for a thickness of the element to be in a range of 0.5 mm to 2 mm.
- Each of the elements can have the same shape.
- It is desirable for at least one of a front body portion and a back body portion to include a single plate member.
- The present disclosure relates to subject matter contained in Japanese Patent Application No.2003-270351 (filed on Jul. 2, 2003) which is expressly incorporated herein by reference in its entirety.
- The present invention will be discussed below in detail with reference to the accompanying drawings, in which:
-
FIG. 1A is a plan view of an element of a stab proof vest, according to a first embodiment of the present invention; -
FIG. 1B is a side view of the element of the stab proof vest; -
FIG. 2 is a plan view of the elements constituting the stab proof vest according to the first embodiment which are arranged in a horizontal direction; -
FIG. 3 is a plan view of the elements of the stab proof vest according to the first embodiment which are arranged in a vertical direction; -
FIG. 4A is a plan view of a coupling member for coupling four elements of the stab proof vest, according to the first embodiment, which are arranged in two columns and two rows; -
FIG. 4B is a plan view of another coupling member for coupling two elements of the stab proof vest in the horizontal direction; -
FIG. 4C is a plan view of further another coupling member for coupling two elements of the stab proof vest in the vertical direction; -
FIG. 5 is a plan view showing the attachment positions of the coupling members to elements of the stab proof vest arranged vertically and horizontally; -
FIG. 6A is a plan view showing the elements of the stab proof vest coupled by the coupling members in the vertical and horizontal directions; -
FIG. 6B is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line VIB-VIB ofFIG. 6A ; -
FIG. 6C is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line VIC-VIC ofFIG. 6A ; -
FIG. 6D is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line VID-VID ofFIG. 6A ; -
FIG. 7 is a plan view of the stab proof vest in which the elements thereof are completely coupled together; -
FIG. 8 is a perspective view of the stab proof vest in which hook and loop fasteners and suspension members are attached; -
FIG. 9 is a plan view showing the modification of the first embodiment according to the present invention; -
FIG. 10A is a plan view of an element of the stab proof vest, according to a second embodiment of the present invention; -
FIG. 10B is a side view of the element of the stab proof vest ofFIG. 10A ; -
FIG. 10C is a plan view of an element of the stab proof vest according to the second embodiment; -
FIG. 10D is a side view of the element of the stab proof vest ofFIG. 10C ; -
FIG. 11 is a plan view showing the elements of the stab proof vest, according to the second embodiment, which are arranged in the vertical and horizontal directions; -
FIG. 12A is a plan view showing the elements of the stab proof vest, according to the second embodiment, which are coupled by the coupling members in the vertical and horizontal directions; -
FIG. 12B is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line XIIB-XIIB ofFIG. 12A ; -
FIG. 12C is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line XIIC-XIIC ofFIG. 12A ; -
FIG. 12D is a cross sectional view of the coupling member securing the elements of the stab proof vest taken along the line XIID-XIID ofFIG. 12A ; -
FIG. 13 is a plan view of a stab proof vest, according to the second embodiment, in which the elements of the stab proof vest are completely coupled; -
FIG. 14 is an explanatory view of a cover according to the second embodiment; and -
FIG. 15 is a plan view of a stab proof vest according to a third embodiment of the present invention. - (First Embodiment)
- A stab proof vest (a stab proof jacket) 10 according to the present invention is used for protecting a wearer against an attacker (criminal) possessing a sharp object such as a knife. The stab
proof vest 10 comprises elements (rectangular elements) 20 which are coupled vertically and horizontally. The first embodiment of the present invention will be hereinafter described in detail with reference to the accompanying drawings. -
FIGS. 1A and 1B show an element 20 (of the stabproof vest 10 shown inFIG. 7 ). Theelement 20 is an approximately rectangle-shaped stainless steel plate which has been press-formed. According to an experiment carried out by the inventor of the present invention, even when theelement 20 having a thickness of 0.8 mm is stabbed with great force using a knife, the tip of the knife does not penetrate theelement 20. It is apparent from the experiment that theelement 20 has high resistance to stabbing. On the other hand, it is desirable that theelement 20 is thin and lightweight so that the stab proof vest 10 (which constructed from a plurality of the elements 20) is suitable for wearing for a period of long time. Accordingly, in consideration of a balance between resistance to stabbing and weight, it is desirable that the thickness of theelement 20 is approximately 0.5 to 2 mm, and a range of 0.5 to 1 mm is more desirable. When the thickness of theelement 20 is within the above-mentioned range, the wearer can easily wear the stabproof vest 10 between outerwear and underwear, or under the underwear. Since the stainless steel has high resistance to corrosion, theelement 20 of stainless steel is not subject to corrosion by human sweat even if a stabproof vest 10 is worn for a long time. Theelement 20 has little or no adverse effect on the human body. Theelement 20 is made of stainless steel in this embodiment, but can be made of another material such as aluminum, acryl resin, polycarbonate, CFRP (carbon fiber reinforced plastic), and GFRP (glass fiber reinforced plastic), as long as the material has both resistance to stabbing and light weight. - The
element 20 has a pair of 21 and 22 extending in a vertical direction (in direction A oflong sides FIG. 1A ). A plurality of 31 and 33, protruding outward in a horizontal direction (in direction B ofrectangular projections FIG. 1A ), are vertically provided in the 21 and 22, respectively.long sides Rectangular depressions 32 are formed between theadjacent projections 31. Likewise,rectangular depressions 34 are formed between theadjacent projections 33. - The
projections 31 anddepressions 32 are alternately arranged along thelong side 21, and the widths of theprojections 31 in the vertical direction are the same as those of thedepressions 32. Likewise, theprojections 33 and thedepressions 34 are alternately arranged along thelong side 22, and the widths of theprojections 33 in the vertical direction are the same as those of thedepressions 34. Accordingly, as shown inFIG. 2 , theprojections 31 are inserted into and engaged with thedepressions 34 of anadjacent element 20, and theprojections 33 are inserted into and engaged with thedepressions 32 of anadjacent element 20, to couple (connect) theadjacent elements 20 together. As described above, since theelements 20 are coupled by the engagement between theprojections 31 and thedepressions 34, or between theprojections 33 and thedepressions 32, a linear gap is not left between theadjacent elements 20, so that it is possible to prevent a tip of a knife from piercing through the gap between theadjacent elements 20. - The
projections 31 and thedepressions 34 are asymmetrically provided on opposite sides of theelement 20, and thedepressions 32 and theprojections 33 are likewise asymmetrically provided on opposite sides of theelement 20. Namely, one of theprojections 31 is provided at an uppermost portion of thelong side 21, and one of thedepressions 32 provided at a lowermost portion of thelong side 21. Likewise, one of thedepressions 34 is provided at an uppermost portion of thelong side 22, and one of theprojections 33 is provided at a lowermost portion of thelong side 22. Therefore, when a plurality ofelements 20 are aligned in the horizontal direction in such a manner that thelong side 21 is on the left and thelong side 22 is on the right (or thelong side 21 is on the right and thelong side 22 is on the left), the 31 and 33 are inserted into and engaged with theprojections 34 and 32 of thedepressions adjacent elements 20, respectively, so that theelements 20 are coupled and arranged in line without leaving any gap. According to such an arrangement of the 31 and 33 andprojections 32 and 34, thedepressions long side 21 cannot be engaged with thelong side 21 of anadjacent element 20, and thelong side 22 cannot be engaged with thelong side 22 of anadjacent element 20. Accordingly, when theelement 20 is curved (bent) so as to fit a human body, as shown inFIG. 1B , it is unnecessary to confirm the direction of curvature whenever theelement 20 is coupled. furthermore, theelements 20 are formed into the same shape, so that the cost for dies is reduced. - Although the plurality of
projections 31 anddepressions 32, and the plurality ofprojections 33 anddepressions 34 are provided in the embodiment shown inFIG. 1A , one projection and one corresponding depression can be alternatively provided one each 21 and 22 in order to couple thelong side adjacent elements 20. The shape of the 31 and 33 and theprojections 32 and 34 can be an arc, instead of a rectangle, as long as thedepressions 31 and 33 are engageable with theprojections 32 and 34, respectively. Thedepressions projection 31 or thedepression 34 may not be provided at an uppermost position, and thedepression 32 or theprojection 33 may not be provided at a lowermost position, as long as the projections (31 and 32) and depressions (33 and 34) are formed at corresponding positions on the 21 and 22.long sides - A pair of
23 and 24 of theshort sides element 20 extends in the horizontal direction. An arc-shapeddepression 35 is formed in the middle of theshort side 23. An arc-shapedprojection 36 having the shape corresponding with thedepression 35 is formed in the middle of the short side 24 (refer toFIG. 1A ). InFIG. 3 , when theprojection 36 is inserted into and engaged with thedepression 35 of the verticallyadjacent element 20, a plurality of theelements 20 are vertically aligned without leaving any gap. Since theelements 20 are coupled by the engagement of thedepression 35 and theprojection 36, there is no linear gap left between anadjacent elements 20, so that an edge of an edge tool does not enter through the gap. Theshort side 23 cannot be engaged with theshort side 23 of anadjacent element 20, and theshort side 24 cannot be engaged with theshort side 24 of anadjacent element 20. Therefore, it is possible to prevent theelement 20 from being engaged in an improper manner. - Although one
depression 35 and oneprojection 36 are provided inFIG. 1A , a plurality of depressions and a corresponding plurality of projections can be provided on the 23 and 24, respectively. The shape of theshort sides depression 35 and theprojection 36 can be rectangular, instead of an arc, as long as theprojection 36 is engageable with thedepression 35. - Coupling holes 37 and 38 for inserting a coupling member thereinto are formed at one vertical end (the upper end as shown in
FIG. 1A ) of theelement 20, and coupling holes 39 and 40 are formed in the other vertical end (the lower end as shown inFIG. 1A ) thereof. The coupling holes 37 through 40 are rectangular openings having the same shape. When theelements 20 are horizontally aligned, the coupling holes 37 and 39 are symmetrical to the coupling holes 38 and 40 of the adjacent element 20 (refer toFIG. 2 ). When theelements 20 are vertically aligned, the coupling holes 37 and 38 are symmetrical to the coupling holes 39 and 40 of an adjacent element 20 (refer toFIG. 3 ). - Coupling holes 41 and 42 for inserting a coupling member thereinto are formed at one horizontal end (the left end as shown in
FIG. 1A ) of theelement 20, and coupling holes 43 and 44 are formed at the other horizontal end (the right end as shown inFIG. 1A ) of theelement 20. The coupling holes 41 to 44 are rectangular openings having the same size and shape. When theelements 20 are horizontally aligned, the coupling holes 41 and 42 are symmetrical to the coupling holes 43 and 44 of theadjacent element 20. Since the size and shape of the coupling holes 37 to 40 and the coupling holes 41 to 44 are the same, and the distance between thecoupling hole 37 and thecoupling hole 38 of the adjacent element 20 (thecoupling hole 39 and thecoupling hole 40 of an adjacent element 20) is the same as the distance between the coupling holes 41 and 42 (the coupling holes 43 and 44) in asingle element 20, a common coupling member can be used so that the cost can be reduced. - As shown in
FIGS. 4A, 4B , and 4C, 50, 60 and 65 made of stainless steel are used for coupling thecoupling members elements 20. Thecoupling member 50 couples fourelements 20 which are arranged in two columns and two rows. Thecoupling member 50, press-formed into the shape of a letter “H”, includes a rectangularmain portion 51 extending horizontally, and 52 and 53 extending vertically which are disposed in both ends of therectangular arm portions main portion 51. The distance between the 52 and 53 corresponds with the distance between thearm portions coupling hole 37 and thecoupling hole 38 of an adjacent element 20 (thecoupling hole 39 and thecoupling hole 40 of an adjacent element 20). The width of the 52 and 53 in the horizontal direction is almost the same as the width of the coupling holes 37 to 40.arm portions - To couple four of the
elements 20 arranged in two columns and two rows, as shown inFIG. 5 , the 53 a and 53 b of theend portions arm portion 53 are inserted and press-fitted into the coupling holes 39 and 37, respectively, of the twodifferent elements 20 arranged on a right side. The 52 a and 52 b of theend portions arm portion 52 are inserted and press-fitted into the coupling holes 40 and 38, which are in the vicinity of the coupling holes 39 and 37, of the twodifferent elements 20 arranged on a left side, respectively. Thereafter, as shown inFIGS. 6A and 6B , on condition that themain portion 51 is tightly in contact with the front faces 25 of theelements 20, the 52 a and 53 a and theupper end portions 52 b and 53 b, penetrating through thelower end portions elements 20 and protruding from the rear faces 26 thereof, are folded on either side of theboundary surface 45 between theelements 20 adjacent in the vertical direction, to tightly contact with the rear faces 26. Although thecoupling member 50 can be secured to theelements 20 by welding, bonding, or the like, by only inserting and folding the 52 a and 53 a andupper end portions 52 b and 53 b, a coupling betweenlower end portions adjacent elements 20 can be maintained due to the rigidity of stainless steel, and also allows bending of the stabproof vest 10 via thecoupling members 50 about theboundary surface 45 in accordance with the shape and movement of a wearer's body. Moreover, since a single coupling member (50) can couple the four elements arranged in two columns and two rows, it is possible to efficiently carry out an assembly process. - On the other hand, the
coupling member 60 is used for coupling the twoadjacent elements 20 in the horizontal direction. Thecoupling member 60, press-formed into the shape of letter “I” (the same as the shape of letter “H” rotated 90 degrees), includes a rectangularmain portion 61 extending vertically, and 62 and 63 extending horizontally which are disposed in both ends of therectangular arm portions main portion 61. The distance between the 62 and 63 corresponds with the distance between coupling holes 41 and 42 (the coupling holes 43 and 44). The width of thearm portions 62 and 63 in the vertical direction is substantially the same as the width of the coupling holes 41 to 44.arm portions - To couple the
elements 20 arranged in the horizontal direction, as shown inFIG. 5 , the 62 a and 63 a of theleft end portions 62 and 63 are inserted into the coupling holes 43 and 44 of thearm portions element 20 arranged on a left side, respectively. The 62 b and 63 b of theright end portions 62 and 63 are inserted into the coupling holes 41 and 42, which are in the vicinity of the coupling holes 43 and 44, of thearm portions element 20 arranged on a right side, respectively. Thereafter, as shown inFIGS. 6A and 6C , on condition that themain portion 61 is tightly in contact with the front faces 25 of theelements 20, the 62 a and 63 a and theleft end portions 62 b and 63 b, penetrating through theright end portions elements 20 and protruding from the rear faces 26 thereof, are folded on either side of theboundary surface 46 between theelements 20 adjacent in the vertical direction, to tightly contact with the rear faces 26. Although thecoupling member 60 can be secured to theelements 20 by welding, bonding, or the like, by only inserting and folding the 62 a and 63 a and theleft end portions 62 b and 63 b, a coupling betweenright end portions adjacent elements 20 can be maintained due to the rigidity of stainless steel, and also allows bending of the stabproof vest 10 via thecoupling member 60 about theboundary surface 46 in accordance with the shape and movement of a wearer's body. Although it is possible to couple theelements 20 only by thecoupling members 50, it is desirable to use thecoupling members 60 also for the purpose of ensuring a secure coupling. - The
coupling member 65 is used for vertically coupling theelements 20 arranged in horizontal end portions. Thecoupling member 65 is press-formed into a rectangular shape extending in the vertical direction. - To vertically couple the
elements 20 arranged in a horizontal left end portion, as shown inFIG. 5 , anupper end portion 65 a is inserted into thecoupling hole 39 of theelement 20 arranged on an upper side, and alower end portion 65 b is inserted into thecoupling hole 37 of theelement 20 arranged on a lower side. Likewise, to vertically couple theelements 20 arranged in a horizontal right end portion, theupper end portion 65 a is inserted into thecoupling hole 40 of theelement 20 arranged on the upper side, and thelower end portion 65 b is inserted into thecoupling hole 38 of theelement 20 arranged on the lower side. Thereafter, as shown inFIGS. 6A and 6D , on condition that thecoupling member 65 is tightly in contact with the front faces 25 of theelements 20, the 65 a and 65 b, penetrating though theend portions elements 20 and protruding from the rear faces 26 thereof, are folded on either side of theboundary surface 45 between anadjacent elements 20 in the vertical direction, to tightly contact with the rear faces 26. Although thecoupling member 65 can be secured to theelements 20 by welding, bonding, or the like, by only inserting and folding the upper and 65 a and 65 b, a coupling betweenlower end portions adjacent elements 20 can be maintained due to the rigidity of stainless steel, and also allows bending of the stabproof vest 10 via thecoupling members 65 about theboundary surface 45 in accordance with the shape and movement of a wearer's body. Although it is possible to couple theelements 20 only by thecoupling members 50, it is desirable to use thecoupling members 65 also, for the purpose of ensuring a secure coupling of theelements 20 in the horizontal end portions. Since the unsecured end portions may cause injury on a wearer, it is also desirable to secure the end portions with thecoupling member 65 for safety reasons. - In consideration of resistance to stabbing which prevents a knife edge or tip from penetrating, and ease of bending at the
45 or 46, it is desirable that the thickness of theboundary surface 50, 60, 65 be 0.5 to 1 mm. Thecoupling member 50 and 60 can be in a rectangular shape to have the same width as that of the coupling holes 37 to 44. In this case, both ends of thecoupling members 50 or 60 are inserted into the coupling holes 37 and 39, the coupling holes 38 and 40, the coupling holes 41 and 43, or the coupling holes 42 and 44. Thereafter, the ends of thecoupling member 50 or 60 protruding from thecoupling member rear face 26 are folded and secured as in the case of the above embodiment. The number of the coupling holes formed in each side of theelement 20 can be one, three or more, as long as theadjacent elements 20 are securely coupled with each other. - As described above, surrounding a wearer's body (chest, abdomen, back, and side) with the
elements 20 coupled by the 50, 60, and 65 makes it possible to form the stabcoupling members proof vest 10 of the present invention which protects the wearer against an attacker possessing a sharp object such as a knife. Since therectangular elements 20 are coupled vertically and horizontally, and theadjacent elements 20 are bendable, so that the stabproof vest 10 fits the wearer's body. The number ofelements 20 coupled in the vertical and horizontal directions is can be appropriately changed in accordance with the physique of the wearer, the area to be protected, etc. In other words, theelements 20 coupled in the vertical direction are addable or detachable in accordance with the size of a chest, and theelements 20 coupled in the horizontal direction are addable or detachable in accordance with height. - As shown in
FIG. 7 , for example, theelements 20 vertically coupled in afront part 11 corresponding to the front body part and both sides can be larger in number than that in aback body part 12. The end face of the stabproof vest 10 can be straight, as shown inFIG. 7 , by omitting thedepressions 35 of theelements 20 uppermost in the vertical direction, theprojections 36 of thelowermost elements 20, theprojections 31 of theelements 20 in the horizontal left end, and theprojections 33 of theelements 20 in the horizontal right end. In this case, a wearer and his or her clothes are prevented from damage, because the 31, 33, and 36 do not protrude outward. To prevent any physical damage of the wearer, as shown inprojections FIG. 7 , it is desirable to round the corner of theelement 20 at eachcorner 14 of the stabproof vest 10. It is desirable to curve theelements 20 as shown inFIG. 1B , and if a radius of curvature of eachelement 20 is variable in accordance with the position thereof when worn, the stabproof vest 10 provides a more comfortable fit for the wearer and puts less constraint to the wearer's movements. - As shown in
FIG. 8 , rectangular hook and 70 and 71 have the same shape are disposed on the upper and lower sides in the vertical direction on theloop fasteners front face 11 a of thefront part 11. Hook and 73 and 74 are also so disposed in the rear face 12 b of theloop fasteners back body part 12 as to be opposed to the hook and 70 and 71, when wrapping the wearer's body (upper-body) with the stabloop fasteners proof vest 10. In the 70 and 71, there are small loops arranged on a base material (not illustrated). In thefasteners 73 and 74, there are small hooks arranged on a base material (not illustrated). By pressing thefasteners 73 and 74 against thefasteners 70 and 71, respectively, the hooks are engaged with the loops to fasten thefasteners 73 and 74 on thefasteners 70 and 71. Accordingly, the wearer's body is wrapped in the stabfasteners proof vest 10 so that thefront part 11 covers the front and side of the wearer, and then the 73 and 74 are pressed against thefasteners 70 and 71 to secure the stabfasteners proof vest 10. The hooks can be provided in the 70 and 71, and the loops can be provided in thefasteners 73 and 74. Another type of fastener having the configuration except for the combination of the hooks and loops can be alternatively used. The positions and the number of the hook and loop fasteners can be optional, as long as the hook and loop fasteners in thefasteners front part 11 correspond to those in theback part 12 in position, and the hook and loop fasteners are have the same shape. - To prevent the stab
proof vest 10 from dropping, it is desirable to provide 81 and 82. As shown insuspension members FIG. 8 , each of the 81 and 82 includes asuspension members 81 a or 82 a, abelt 81 b or 82 b, a connectinglength adjusting portion 81 c or 82 c connected to one end of theportion 81 a or 82 a via thebelt 81 b or 82 b, and a connectinglength adjusting portion 81 d or 82 d connected to the other end of theportion 81 a or 82 a. When the stabbelt proof vest 10 is worn, the 81 and 82 are suspended from both shoulders of the wearer. Specifically, hooks 81 c 1 and 81 c 2 provided at the end of the connectingsuspension members portion 81 c are inserted into the coupling holes 37 and 38 of theuppermost element 20 in thefront part 11 from the side of thefront face 11 a, and then protruding parts of thehooks 81 c 1 and 81 c 2 from arear face 11 b are bent upward.Hooks 81d 1 and 81d 2 provided at the end of the connectingportion 81 d are inserted into the coupling holes 37 and 38 of theuppermost element 20 in theback part 12 from the side of thefront face 12 a, and then protruding parts of thehooks 81d 1 and 81d 2 from a rear face 12 b are bent upward, in order to secure thesuspension member 81 to the stabproof vest 10. Likewise, in thesuspension member 82, hooks 82 c 1 and 82 c 2 provided at the end of the connectingportion 82 c are inserted into the coupling holes 37 and 38 of theuppermost element 20 in thefront part 11 from the side of thefront face 11 a, and then protruding parts of thehooks 82 c 1 and 82 c 2 from arear face 11 b are bent upward.Hooks 82d 1 and 82d 2 provided at the end of the connectingportion 82 d are inserted into the coupling holes 37 and 38 of theuppermost element 20 in theback part 12 from the side of thefront face 12 a, and then protruding parts of thehooks 82d 1 and 82d 2 from a rear face 12 b are bent upward, in order to secure thesuspension member 82 to the stabproof vest 10. - The
81 and 82 are disposed in any places of thesuspension members front part 11 and theback body part 12, in accordance with the physique of the wearer, or preference of the wearer, etc. The 81 a and 82 a are made of, for example, cloth or leather. The connectingbelts 81 c, 81 d, 82 c, and 82 d are made of material which can suspend the stabportions proof vest 10 for a long time, such as stainless steel, aluminum, and plastics. - Furthermore, it is desirable to cover the stab
proof vest 10 with an elastic member or stretchable member (for example, rubber or cloth), in order to prevent the wearer and his/her clothes from being damaged by the front and rear faces 11 a and 11 b of thefront part 11, and the front and rear faces 12 a and 12 b of theback body part 12. It is desirable to secure the elastic or stretchable member to the stabproof vest 10 by bonding, binding, or the like. The elastic or the stretchable member can cover the whole of the stabproof vest 10, or a part thereof. - In the above-described embodiment, the stab
proof vest 10 is constructed from the plurality ofelements 20 coupled vertically and horizontally. The stabproof vest 10, however, can be constructed from vertically extending long plates which are coupled in the horizontal direction. - As shown in
FIG. 9 , it is desirable to provideair vents 47 extending through theelement 20, in order to dissipate heat accumulated in the stabproof vest 10 with air going through the air vents 47. - In the stab
proof vest 10 of the above embodiment, if theelements 20 are vertically coupled in an upward direction to theuppermost elements 20 in addition, the wearer's neck is also protected. In this case, it is desirable to addsmaller elements 20 than those wrapped around the body, in order not to constrict the movement of the neck. - If the
elements 20 are vertically coupled in a downward direction from thelowermost elements 20 in addition, it is possible to also protect wearer's waist and legs, etc. - (Second Embodiment)
- A second embodiment of the present invention will be hereinafter described. In the second embodiment, identical members to the first embodiment are referred to the same reference numbers. In the second embodiment, the stab proof vest includes
90 and 120 shown inelements FIGS. 10A to 10D, in addition to theelements 20. - As shown in
FIGS. 10A and 10B , theelement 90 is a stainless steel plate having an approximately right-angled triangular shape which is press-formed. It is desirable for the thickness of theelement 90 to be approximately 0.5 to 2 mm, and a range of 0.5 to 1 mm is more desirable. When the thickness of theelement 90 is within the above-mentioned range, the wearer can wear the stab proof vest between outerwear and underwear, or under the underwear. -
Rectangular projections 103 are provided on along side 92 of theelement 90 along a vertical direction (in direction C ofFIG. 10A ). Therectangular projections 103 protrude outward in a horizontal direction (along the direction of D ofFIG. 10A ). A plurality ofdepressions 104 are formed between theadjacent projections 103. - The
projections 103 and thedepressions 104 are provided alternatively along thelong side 92, and the width of theprojection 103 in the vertical direction is the same as that of thedepression 104. Accordingly, theprojections 103 are inserted into and engaged with thedepressions 32 of anadjacent element 20, as shown inFIG. 11 , so that theelement 90 is coupled to theelement 20. Since theelement 90 is coupled to theelement 20 by the engagement between theprojection 103 and thedepression 32, a linear gap is not left at the boundary between the 90 and 20, so that an edge or tip of a sharp object such as a knife cannot enter through the gap therebetween.adjacent elements - An arc-shaped
projection 106, corresponding to thedepression 35 of theelement 20, is provided at the midpoint of ashort side 94 of theelement 90 extending in the horizontal direction (refer toFIG. 10A ). As shown inFIG. 11 , when theprojection 106 of theelement 90 is vertically inserted into and engaged with thedepression 35 of theelement 20, the 90 and 20 are vertically aligned without leaving any gap. Since theelements element 90 is coupled to theelement 20 by the engagement between theprojection 106 and thedepression 35, as described above, a linear gap is not left in the boundary between the 90 and 20, so that an edge of an edge tool does not enter through the gap. Theelements short side 94 of theelement 90 does not fit with theshort side 24 of theelement 20, so that it is possible to couple the 90 and 20 in a correct orientation.elements - The
element 120 shown inFIGS. 10C and 10D is a stainless steel plate having an approximately right-angled triangular shape which is press-formed. It is desirable that the thickness of theelement 120 is approximately 0.5 to 2 mm, and a range of 0.5 to 1 mm is more desirable. When the thickness of theelement 120 is within the above-mentioned range, the wearer can wear the stab proof vest between outerwear and underwear, or under the underwear. -
Rectangular projections 131 are provided on along side 122 of theelement 120 along a vertical direction (in direction E ofFIG. 10C ). Therectangular projections 131 protrude outward in a horizontal direction (along direction F ofFIG. 10C ). A plurality ofdepressions 132 are formed between theadjacent projections 131. - The
projections 131 and thedepressions 132 are provided alternatively along thelong side 122, and the width of theprojection 131 in the vertical direction is the same as that of thedepression 132. Accordingly, theprojections 131 are inserted into and engaged with thedepressions 34 of anadjacent element 20, as shown inFIG. 11 , so that theelement 120 is coupled to theelement 20. Since theelement 120 is coupled to theelement 20 by the engagement between theprojection 131 and thedepression 34, a linear gap is not left at the boundary between the 120 and 20, so that an edge or tip of a sharp object such as a knife cannot enter through the gap therebetween.adjacent elements - An arc-shaped
projection 136, corresponding to thedepression 35 of theelement 20, is provided at the midpoint of ashort side 124 of theelement 120 extending in the horizontal direction (refer toFIG. 10 c). As shown inFIG. 11 , when theprojection 136 of theelement 120 is vertically inserted into and engaged with thedepression 35 of theelement 20, the 120 and 20 are vertically aligned without leaving any gap. Since theelements element 120 is coupled to theelement 20 by the engagement between theprojection 136 and thedepression 35, as described above, a linear gap is not left in the boundary between the 120 and 20, so that an edge of an edge tool does not enter through the gap. Theelements short side 124 of theelement 120 does not fit with theshort side 24 of theelement 20, so that it is possible to couple the 120 and 20 in a correct orientation.elements - As shown in
FIG. 10A , coupling holes (holes) 109 and 110 for inserting a coupling member are formed in the lower end portion of theelement 90. The coupling holes 109 and 110 are rectangular openings having the same shape. When theelement 90 is adjacent to theelement 20 in the horizontal direction, thecoupling hole 110 is symmetrical to thecoupling hole 39 of the element 20 (refer toFIG. 11 ). When theelement 90 is adjacent to theelement 20 in the vertical direction, the coupling holes 109 and 110 are symmetrical to the coupling holes 37 and 38 of theelement 20, respectively (refer toFIG. 11 ). - As shown in
FIG. 10A , coupling holes 113 and 114 for inserting a coupling member thereinto are formed in the horizontal right end of theelement 90. The coupling holes 113 and 114 are rectangular openings having the same shape. When theelement 90 is adjacent to theelement 20 in the horizontal direction, the coupling holes 113 and 114 are symmetrical to the coupling holes 41 and 42 of the element 20 (refer toFIG. 11 ). Since the size and shape of the coupling holes 109, 110, 113 and 114 is the same as that of the coupling holes 37 to 44 of theelement 20, and the distance between the coupling holes 109 and 110 is the same as the distance between the coupling holes 113 and 114, a common coupling member can be used so that the cost can be reduced. - On the other hand, as shown in
FIG. 10C , coupling holes 139 and 140 for inserting a coupling member thereinto are formed in the lower end of theelement 120. The coupling holes 139 and 140 are rectangular openings having the same shape. When theelement 120 is adjacent to theelement 20 in the horizontal direction, thecoupling hole 140 is symmetrical to thecoupling hole 40 of the element 20 (refer toFIG. 11 ). When theelement 120 is adjacent to theelement 20 in the vertical direction, the coupling holes 140 and 139 are symmetrical to the coupling holes 37 and 38 of the element 20 (refer toFIG. 11 ). - As shown in
FIG. 10C , coupling holes 141 and 142 for inserting a coupling member thereinto are formed along the horizontal left end of theelement 120. The coupling holes 141 and 142 are rectangular openings having the same shape. When theelement 120 is adjacent to theelement 20 in the horizontal direction, the coupling holes 141 and 142 are symmetrical to the coupling holes 43 and 44 of the element 20 (refer toFIG. 11 ). If the shape of the coupling holes 139 to 142 is the same as that of the coupling holes 37 to 44 of theelement 20, and the distance between the coupling holes 139 and 140 is the same as the distance between the coupling holes 141 and 142, cost is reduced because a common coupling member can be used. - As in the case of the first embodiment, the
50, 60, and 65 made of stainless steel shown incoupling members FIGS. 4A to 4C are used for coupling the 90 or 120 to theelement element 20. How to couple theelement 120 is hereinafter described with reference toFIGS. 11 and 12 A to 12D. Note that theelement 90 is coupled in a like manner. - To couple the
element 120 to theelement 20 adjacent in the vertical direction, as shown inFIGS. 11, 12A and 12B, the 52 a and 52 b (or theend portions 53 a and 53 b) of theend portions arm portion 52 of thecoupling member 50 is inserted (press-fitted) into the coupling holes 140 and 37, respectively. Thereafter, as shown inFIGS. 11, 12A and 12D, theupper end portion 65 a of thecoupling member 65 is inserted into thecoupling hole 139 of theelement 120 arranged on an upper side, and thelower end portion 65 b thereof is inserted into thecoupling hole 38 of theelement 20 arranged on a lower side, to securely couple the 120 and 20 together.elements - On the other hand, to couple the
element 120 to theelement 20 adjacent in the horizontal direction, as shown inFIGS. 11, 12A and 12C, the 62 a and 63 a of theleft end portions 62 and 63 are inserted into the coupling holes 43 and 44 of thearm portions element 20 arranged on a left side, and the 62 b and 63 b of theright end portions 62 and 63 are inserted into the coupling holes 141 and 142, which are in the vicinity of the coupling holes 43 and 44, of thearm portions element 120 arranged on a right side, respectively. - As shown in
FIG. 13 , it is possible to couple the 90 and 120 to one of theelements elements 20 to which anotherelement 20 cannot be coupled. Therefore, a stabproof vest 150 having such a configuration according to the second embodiment can protect a greater portion of the wearer. - The
81 and 82 can be directly attached to thesuspension members elements 20 of the stabproof vest 150, as in the first embodiment. 161 and 162, as shown inSuspension members FIG. 14 , can be sewed on acloth cover 160 which contains the stabproof vest 150. Since a wearer suspends the 161 and 162 from his/her shoulders, the stab proof vest 15 is prevented from dropping. Thesuspension members cover 160 contains the stabproof vest 150 in aspace 165 between afront portion 163 and aback portion 164 sewed together. After a wearer's body is wrapped with thecover 160, hook and 166 and 167 are pressed against hook andloop fasteners 168 and 169, respectively, to fix the stabloop fasteners proof vest 150 therewithin. Thecover 160 can be applied to the stabproof vest 10 according to the first embodiment. The stabproof vest 150 can be composed of elastic members or stretchable members (for example, rubber or cloth). - The configuration, operation, effect, and modification of the second embodiment are the same as those of the first embodiment except for those mentioned above.
- (Third Embodiment)
- In the third embodiment, identical members to the first and second embodiments are referred by the same reference numbers.
- In a stab
proof vest 170 according to the third embodiment, as shown inFIG. 15 , 180 and 190 are provided for wearing on the front body portion and the back body portion, respectively. Theplate members 180 and 190 are connected byplate members 200 and 210, each of which is constructed from theconnection members elements 20 coupled vertically and horizontally. - Each of the
180 and 190 in the shape of an approximately rectangle is press-formed from stainless steel. It is desirable that the thickness of theplate members 180 and 190 is approximately 0.5 to 2 mm, as in the case of theplate members element 20. A range of 0.5 to 1 mm is more desirable. Although the 180 and 190 are made of stainless steel in this embodiment, the members can be made of, for example, aluminum, acryl resin, polycarbonate, CFRP (carbon fiber reinforced plastic), GFRP (glass fiber reinforced plastic), or fiber having special configuration, as long as the material has both resistance to stabbing and is light weight.plate members -
181 and 182 for attaching theConnection slots suspension member 81 and 183 and 184 for attaching theconnection slots suspension member 82 are formed in the upper portion of theplate member 180 in a vertical direction.Connection slots 193 and 194 for attaching thesuspension member 81 and theconnection slots 191 and 192 for attaching thesuspension member 82 are formed in the upper portion of theplate member 190 in the vertical direction. Hook and 185 and 186 are glued on both ends of theloop fasteners plate member 180 in the horizontal direction, and hook and 195 and 196 are glued on both ends of theloop fasteners plate member 190. - On the other hand, hook and
201 and 202 are glued on both ends of theloop fasteners connection member 200 in the horizontal direction, and hook andloop fasteners 211 and 212 are glued on both ends of theconnection member 210. Pressing the 201, 202, 211 and 212 against thefasteners 186, 195, 196, and 185 makes it possible to assemble the stabfasteners proof vest 170. - It is difficult to make the single plate member fit with the side of a wearer. According to the stab
proof vest 170 having the above configuration, however, the 200 and 210 can securely protect the sides of the wearer. Adopting theflexible connection members 180 and 190 in the front and back body parts, instead of the coupledplate members elements 20, makes it possible to reduce a process for coupling theelements 20. Therefore, manufacturing cost is reduced. - In the third embodiment, both of the
180 and 190 are provided for wearing on the front and back body portions. One of theplate members 180 and 190 can be exchanged with a connection member, such as theplate members 200 and 210, which includes theconnection members elements 20 coupled vertically and horizontally. The configuration, operation, effect, and modification of the third embodiment are the same as those of the first and second embodiments, except for those mentioned above. - Obvious changes may be made in the specific embodiments of the present invention described herein, such modifications being within the spirit and scope of the invention claimed. It is indicated that all matter contained herein is illustrative and does not limit the scope of the present invention.
Claims (13)
1. A stab proof vest, wherein at least a portion of said stab proof vest comprises:
a plurality of elements; and
a coupling member for coupling adjacent said elements together,
wherein each side of said elements is provided with at least one projection and at least one depression adjacent to said projection, and a coupling hole into which said coupling member is inserted,
wherein the projection of one of said element is engaged with the depression of an adjacent said element, and
wherein said common coupling member is inserted into each said hole of adjacent said elements and is secured thereto in order to couple said adjacent elements.
2. The stab proof vest according to claim 1 , wherein said coupling member couples four said elements arranged in two columns and two rows.
3. The stab proof vest according to claim 1 , wherein the stab proof vest is fastened by hook and loop fasteners provided on front and back faces of said stab proof vest.
4. The stab proof vest according to claim 1 , wherein the element is made of stainless steel.
5. The stab proof vest according to claim 1 , wherein said element is provided with an air vent.
6. The stab proof vest according to claim 1 , wherein the projection and the depression are asymmetrically provided on at least one of two pairs of opposite sides of said element.
7. The stab proof vest according to claim 1 , wherein the coupling member comprises:
a rectangular main portion; and
arm portions provided at both ends of said main portion and extending perpendicularly to said main portion,
wherein said coupling member has a shape of a letter “H.”
8. The stab proof vest according to claim 7 , wherein two of said coupling holes are formed in each side of said element, and wherein said arm portions of said coupling member are inserted into the coupling holes to couple adjacent said elements together.
9. The stab proof vest according to claim 1 , wherein the coupling member is made of stainless steel.
10. The stab proof vest according to claim 1 , wherein at least a portion of the stab proof vest is covered with an elastic member.
11. The stab proof vest according to claim 1 , wherein a thickness of said element is in a range of 0.5 mm to 2 mm.
12. The stab proof vest according to claim 1 , wherein each of said elements has the same shape.
13. The stab proof vest according to claim 1 , wherein at least one of a front body portion and a back body portion comprises a single plate member.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2003270351 | 2003-07-02 | ||
| JP2003-270351 | 2003-07-02 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| US6842908B1 US6842908B1 (en) | 2005-01-18 |
| US20050015837A1 true US20050015837A1 (en) | 2005-01-27 |
Family
ID=33562612
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US10/743,462 Expired - Fee Related US6842908B1 (en) | 2003-07-02 | 2003-12-23 | Stab proof vest |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US6842908B1 (en) |
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| US20070094761A1 (en) * | 2005-10-18 | 2007-05-03 | Supreme Elastic Corporation | Modular cut and abrasion resistant protective garment and protective garment system |
| US20100043112A1 (en) * | 2007-10-08 | 2010-02-25 | Manish Khandelwal | Quickly releasable vest |
| US20100196986A1 (en) * | 2008-06-25 | 2010-08-05 | Danisco A/S | Composition |
| US20100287681A1 (en) * | 2007-11-01 | 2010-11-18 | Storms Jr Frederick W | Releasable vest |
| EP1787537A3 (en) * | 2005-11-18 | 2011-05-25 | Lothar Müller | Stab resistant body armour |
| US20120233750A1 (en) * | 2008-11-20 | 2012-09-20 | Kdh Defense Systems, Inc. | Weight Distribution and Support Device and System for Armor Vests |
| EP2702348A4 (en) * | 2011-04-27 | 2014-10-01 | Edan Administration Services Ireland Ltd | Armor system |
| US9322621B2 (en) | 2009-10-27 | 2016-04-26 | Edan Administration Services (Ireland) Limited | Armor system |
| US9562746B2 (en) | 2007-10-08 | 2017-02-07 | Mku Pvt Ltd | Quickly releasable vest |
| US9709363B2 (en) | 2012-09-23 | 2017-07-18 | Edan Administration Services (Ireland) Limited | Armor system |
| CN110057246A (en) * | 2019-05-06 | 2019-07-26 | 苏州高甲防护科技有限公司 | A kind of anti-stabbing lining structure of insertion slot type high security |
| DE202018002267U1 (en) * | 2018-05-08 | 2019-08-13 | Mk Technology Gmbh | Connecting element for a body armor, in particular for impact and / or puncture protection, and body armor |
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| EP1994840B1 (en) * | 2007-05-25 | 2018-03-07 | Hexonia GmbH | Garment with a ventilation device |
| US20110283446A1 (en) * | 2010-05-19 | 2011-11-24 | Robert James Baldauf | Life Vest |
| US8978535B2 (en) * | 2010-08-11 | 2015-03-17 | Massachusetts Institute Of Technology | Articulating protective system for resisting mechanical loads |
| US20160187106A1 (en) * | 2014-10-03 | 2016-06-30 | Response Solutions & Innovations, Inc. | Frame configurable for use as a ballistic shield and related methods |
| CN108634429A (en) * | 2018-06-29 | 2018-10-12 | 北京理工大学 | A kind of stab-resistance body armor |
| KR102317271B1 (en) * | 2019-10-29 | 2021-10-22 | 이종영 | Finger guard |
| NL2025843B1 (en) * | 2020-06-17 | 2022-02-17 | Emanuel Johannes Van Riel Rudolf | Ballistic panel |
| US20230332870A1 (en) * | 2021-05-06 | 2023-10-19 | Thin Gold Line, Inc. | Progressive stiffness energy distributing suspension of impact plate |
| CN116135533A (en) * | 2021-11-18 | 2023-05-19 | 中国科学院苏州纳米技术与纳米仿生研究所 | Variable curvature flexible anti-stab cushioning energy-absorbing core structure and its preparation method and application |
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Also Published As
| Publication number | Publication date |
|---|---|
| US6842908B1 (en) | 2005-01-18 |
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| AS | Assignment |
Owner name: YUGEN GAISHA KUROIWA KOGYO, JAPAN Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:SAITO, HISAO;REEL/FRAME:014841/0538 Effective date: 20031217 |
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| STCH | Information on status: patent discontinuation |
Free format text: PATENT EXPIRED DUE TO NONPAYMENT OF MAINTENANCE FEES UNDER 37 CFR 1.362 |
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| FP | Expired due to failure to pay maintenance fee |
Effective date: 20090118 |