EP3381827A1 - A container with a movable partition - Google Patents
A container with a movable partition Download PDFInfo
- Publication number
- EP3381827A1 EP3381827A1 EP17163121.1A EP17163121A EP3381827A1 EP 3381827 A1 EP3381827 A1 EP 3381827A1 EP 17163121 A EP17163121 A EP 17163121A EP 3381827 A1 EP3381827 A1 EP 3381827A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- partition
- container
- elastic sheet
- equal
- side walls
- 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
- 238000005192 partition Methods 0.000 title claims abstract description 61
- 238000005452 bending Methods 0.000 description 5
- 239000000126 substance Substances 0.000 description 4
- 230000000712 assembly Effects 0.000 description 2
- 238000000429 assembly Methods 0.000 description 2
- 239000012634 fragment Substances 0.000 description 2
- 238000003466 welding Methods 0.000 description 2
- 238000004026 adhesive bonding Methods 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000013013 elastic material Substances 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
- 238000005476 soldering Methods 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D25/00—Details of other kinds or types of rigid or semi-rigid containers
- B65D25/02—Internal fittings
- B65D25/04—Partitions
- B65D25/06—Partitions adapted to be fitted in two or more alternative positions
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D5/00—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
- B65D5/42—Details of containers or of foldable or erectable container blanks
- B65D5/44—Integral, inserted or attached portions forming internal or external fittings
- B65D5/48—Partitions
- B65D5/48024—Partitions inserted
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D5/00—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
- B65D5/20—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding-up portions connected to a central panel from all sides to form a container body, e.g. of tray-like form
- B65D5/22—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding-up portions connected to a central panel from all sides to form a container body, e.g. of tray-like form held erect by extensions of one or more sides being doubled-over to enclose extensions of adjacent sides
Definitions
- Fig. 1B presents an example embodiment of a template for forming the body 100 of the container.
- the template comprises elements 111, 151 which, after folding, form side walls 110, 150 and elements 141, 142, 121, 122 which, after folding, form double-layer walls 140, 120 of the body 100.
- the elements 142 and 122 have edge protrusions 143 and 123, which after folding are inserted into openings 132 located in the bottom 130.
- the template further comprises tabs 112, 152 and 113, 153 which after folding are positioned between two layers of the double-layer side walls 141, 142 and 121, 122 respectively.
- the elements are folded along folding lines 114, 115, 116, 124, 125, 126, 144, 145, 146, 154, 155, 156 as will be explained later in the document.
- Fig. 3 presents the container in a cross-sectional view along the line A-A.
- the two attachment positions 216, 217 of the elastic sheet 200 are located in line with the elements 142 and 122 forming the layers of the double-layer side walls 140, 120, respectively.
- the regulation distance of the partition 213 is equal to w 2 , which means that the partition 213 may be located in any position between side walls 140, 120 of the body 100.
- the folded tabs 214, 215 of the elastic sheet 200 are located between the layers 141, 142 and 121, 122, respectively.
- the elastic sheet 200 has a length w 5 greater than the regulation distance w 2 , therefore it bends between the attachment positions 216, 217 upwards, as shown in Fig. 1A , thereby forming a protrusion constituting the partition 213.
- the first compartment 160 is formed by the movable partition 213 and the side wall 140 and at least part of the bottom 130 of that compartment is formed by the fragment 211 of the elastic sheet 200.
- the second compartment 170 is formed by the movable partition 213 and the side wall 120 and at least part of the bottom 130 of that compartment is formed by the fragment 212 of the elastic sheet 200.
- Fig. 4 presents details and dimensions of the template of the body 100.
- a thickness of the sheet of the template is equal to g 1 .
- a height of the side walls elements 111, 151 is equal to h1 and their width is equal to w 2
- a length of the bottom 130 and the layers 141, 142, 121, 122 is equal to l 1 , which is the length of the container wherein l 1 >w 1 >h 1 >>g 1 >g 2 (g 2 is a thickness of the elastic element 200).
- the openings 232 may have a form of a half of the opening 132 when it is divided by a longitudinal axis of symmetry (parallel to the folding lines 126, 146). Therefore, the straight side of the openings 232 located adjacent to the tab 214 lies on the folding line 246 and the straight side of the openings 232 located adjacent to the tab 215 lies on the folding line 226.
- a width of the openings 232 is equal to g 1 .
- Figs. 6A-6B present formulas describing relations between dimensions of the templates of the body and the elastic sheet of the container as described above.
- Figs. 11A-11C present details and dimensions of the shaft 700.
- the shaft 700 is formed by bending a straight piece of a rod or wire along bending lines 716 and 756.
- the first arm 710 has a length h 7 and it is bent by 90 degrees along the bending line 716 where 1/4h 5 ⁇ h 7 ⁇ 1/2h 5 .
- the second arm 750 has a length h 6 and it is bent by 90 degrees along the bending line 756 which results in a C-shape where 1/2h 5 ⁇ h 6 ⁇ h 5 .
- Fig. 12 presents a template of the body 100A.
- the notches 117, 157 are positioned on side wall elements 111A, 151A in a distance h 5 from the folding lines 116A, 156A respectively being in parallel to them.
- Fig.13 presents a container with the body 100A in a cross-section A-A.
- the partition 213 is suspended on the main support part 730 which slides along the notches 117, 157.
- Figs. 14 - 18 present another embodiment of a support assembly 1200 and its dimensions.
- the support assembly 1200 comprises a support shaft 1031 on which the partition 213 is suspended and two forming shafts 1032, 1033 for forming the partition 213 near its base (near the bottom 130B).
- the shafts 1031, 1032, 1033 are integrated with a clip 1050 which together are denoted as element 1000.
- the element 1000 is secured with a clamp 1110.
- the clamp 1110 has openings 1131, 1132 and 1133 for receiving ends of the shafts 1031, 1032, 1033 respectively.
- Fig. 19B presents a template of the body 100B.
- the notches 119, 159 have a form of slotted notches in which a distance between the end radii center points is equal to w 6 where the end radius is equal to r 3 .
- Fig. 20 presents a container with the body 100B and the support assembly 1200 in a cross-section.
- the support assembly 1200 maintains a permanent shape of the partition 213 even if the container is empty.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Details Of Rigid Or Semi-Rigid Containers (AREA)
- Cartons (AREA)
Abstract
Description
- The present invention relates to a container with a movable partition.
- There are known various types of containers having a partition which divides the container into two compartments. Such containers are typically used to store or transport two different kinds of products or substances, one type in each compartment. There are also known containers having a movable partition where the position of the partition can be adjusted to a predetermined location, thus changing the volume of each compartment. Usually, to change the position of the partition, it is necessary to take the partition out of the container and place it into a new location inside the container. The positions of the partitions may be defined by grooves formed in the side walls of the container. While changing the position of the partition the two products or substances currently stored inside the container may easily mix with each other.
- Therefore, there is a need to provide an alternative structure of a container with a movable partition, that will allow changing the position of the partition in a smooth manner without the risk of mixing the products within the container.
- There is disclosed a container comprising: a cuboid body a first compartment and a second compartment separated by a movable partition within the body characterized in that: the partition is made of an elastic sheet attached to the body at two attachment positions separated by a regulation distance wherein the elastic sheet has a length greater than the regulation distance such that it forms a protrusion constituting the partition movable between the attachment positions.
- The partition can be suspended on a support slidable in notches formed in two opposing side walls of the body.
- The support can be C-shaped and has arms of different length.
- The two opposing side walls of the body of the container can be double-layer walls.
- The elastic sheet may comprise two folded tabs which are located between the layers of the double-layer side walls of the body.
- The partition can be driven by a support assembly comprising two shafts positioned at the bottom of the partition, slidable in the notches formed in two opposing side walls of the body and a support shaft wherein the ends of the shafts are connected with a clip and with a clamp.
- The container may comprise more than one partition.
- Further details and features of the present invention, its nature and various advantages will become more apparent from the following detailed description of the preferred embodiments shown in drawings, in which:
-
Fig. 1A presents a container according to the invention; -
Fig. 1B presents a template for forming a body of the container; -
Fig. 2A and 2B present an elastic sheet; -
Fig. 3 presents the container in a cross-sectional view A-A; -
Fig. 4 presents details and dimensions of the template of the body; -
Fig. 5 presents details and dimensions of the template of the elastic sheet; -
Figs. 6A-6B present formulas describing relations between dimensions of the templates of the body and the elastic sheet of the container; -
Figs. 7A-7C present steps of forming of the partition; -
Figs. 8A-8H present steps of forming the container; -
Fig. 9 presents another embodiment of abody 100A; -
Fig. 10 presents an example of a support having a form of a C-shaped shaft; -
Figs. 11A-11C present details and dimensions of the shaft; -
Fig. 12 presents a template of thebody 100A; -
Fig. 13 presents a container with thebody 100A in a cross-section A-A; -
Figs. 14 - 18 present another embodiment of asupport assembly 1200 and its dimensions; -
Fig. 19A presents another embodiment of abody 100B; -
Fig. 19B presents a template of thebody 100B; -
Fig. 20 presents a container with thebody 100B and thesupport assembly 1200 in a cross-section; -
Fig. 21 presents another embodiment of the container having thebody 100B andseveral partitions 213 driven by the support assemblies. -
Fig. 1A presents a container comprising acuboid body 100 with 110, 120, 140, 150 and aside walls bottom 130, in which there are two compartments: afirst compartment 160 and asecond compartment 170 separated by amovable partition 213 made of anelastic sheet 200. - The container may be adapted to store various products or substances, such as small electronic or mechanical components, loose materials or even liquid substances (if appropriate sealing means are provided).
- The
body 100 of the container may be made of paper, sheet metal or plastic which can be formed into relatively thin plates which are possible to be folded in order to manually create the container out of a template without the need of welding, soldering, screwing or riveting. In other embodiments, thebody 100 of the container can be also assembled by means of gluing, welding, screwing or riveting. In yet other embodiments, thebody 100 of the container may be a moulded element. -
Fig. 1B presents an example embodiment of a template for forming thebody 100 of the container. The template comprises 111, 151 which, after folding,elements 110, 150 andform side walls 141, 142, 121, 122 which, after folding, form double-elements 140, 120 of thelayer walls body 100. The 142 and 122 haveelements 143 and 123, which after folding are inserted intoedge protrusions openings 132 located in thebottom 130. The template further comprises 112, 152 and 113, 153 which after folding are positioned between two layers of the double-tabs 141, 142 and 121, 122 respectively. The elements are folded alonglayer side walls 114, 115, 116, 124, 125, 126, 144, 145, 146, 154, 155, 156 as will be explained later in the document.folding lines -
Fig. 2A and 2B present a structure of theelastic sheet 200 for forming the partition. -
Fig. 2A presents theelastic sheet 200 in a top view. In afirst part 211 and in asecond part 212 of theelastic sheet 200 there can be twoopenings 232, which after introducing theelastic sheet 200 into thebody 100, coincide with theopenings 132 located in the bottom 130. -
Fig. 2B presents theelastic sheet 200 in a cross-sectional view along the line A-A. Theelastic sheet 200 comprises thefirst part 211 and thesecond part 212 and a middle portion located between the first 211 and the second 212 part, for forming thepartition 213 when theelastic sheet 200 is installed within thebody 100 of the container. Theelastic sheet 200 may additionally comprise two folded 214, 215 located at the end of thetabs first part 211 and thesecond part 212 respectively. Thefirst part 211 of theelastic sheet 200 forms a layer adjacent to thebottom 131 of thefirst compartment 160 and thesecond part 212 forms a layer adjacent to thebottom 133 of thesecond compartment 170 as presented inFig. 3 . -
Fig. 3 presents the container in a cross-sectional view along the line A-A. In the presented embodiment, the two 216, 217 of theattachment positions elastic sheet 200 are located in line with the 142 and 122 forming the layers of the double-elements 140, 120, respectively. Thus, the regulation distance of thelayer side walls partition 213 is equal to w2, which means that thepartition 213 may be located in any position between 140, 120 of theside walls body 100. The folded 214, 215 of thetabs elastic sheet 200 are located between the 141, 142 and 121, 122, respectively.layers - The attachment positions 216, 217 can be located at various positions within the
body 100, typically depending on how theelastic sheet 200 is fixed with respect to thebody 100. For example, theelastic sheet 200 can be fixed to thebottom 130 of thebody 100, then the attachment positions 216, 217 are located at the bottom 130. Alternatively, theelastic sheet 200 can be fixed to the 120, 140, then the attachment positions 216, 217 are located at theside walls 120, 140. Furthermore, the attachment positions 216, 217 can be located at the edge between the bottom 130 and theside walls 120, 140.side walls - The
elastic sheet 200 has a length w5 greater than the regulation distance w2, therefore it bends between the attachment positions 216, 217 upwards, as shown inFig. 1A , thereby forming a protrusion constituting thepartition 213. - As a result, the
first compartment 160 is formed by themovable partition 213 and theside wall 140 and at least part of the bottom 130 of that compartment is formed by thefragment 211 of theelastic sheet 200. Thesecond compartment 170 is formed by themovable partition 213 and theside wall 120 and at least part of the bottom 130 of that compartment is formed by thefragment 212 of theelastic sheet 200. -
Fig. 4 presents details and dimensions of the template of thebody 100. A thickness of the sheet of the template is equal to g1. A height of the 111, 151 is equal to h1 and their width is equal to w2, while a width of the bottom 130 is equal to w1, wherein w2 = w1 - 2g1. A length of the bottom 130 and theside walls elements 141, 142, 121, 122 is equal to l1, which is the length of the container wherein l1>w1>h1>>g1>g2 (g2 is a thickness of the elastic element 200). A width of thelayers 141, 121 is equal to h2 and a width of thelayers 142, 122 is equal to h3 wherein h2=h1-g1 and h3 =h2-g2. A distance between thelayers 124 and 125, 144 and 145 is equal to w3=g1+g2. A width of thefolding lines 123, 143 is equal to d2=d1 - (g1+g2) and a height of theprotrusions 123, 143 is equal to w3. Theprotrusion 112, 113, 152, 153 have a width equal to w4, while their height is equal to h1-2g1, wherein l2+1/2d1<w4<1/211, wherein l2 is the distance between the axis of symmetry of thetabs 123, 143 being also the axis of symmetry of theprotrusion corresponding opening 132 and the edge of the side wall layers 141, 142, 121, 122. Theopenings 132 have a form of slotted openings and have a width equal to d3=2g1+g2 and a length equal to d1, wherein d1<l2<=3/1011. The relation between d1 and l1 is 1/7l1<d1<=1/5l1. A distance between the end radii center points is equal to d4=d1-d3=d1-2r1, where the end radius is equal to r1=1/2d3=1/2 (2g1+g2). -
Fig. 5 presents details and dimensions of a template of theelastic sheet 200. The template has a thickness g2, the length l1 and a width w10=w5+2h4, where h4 is a height of the 214, 215, which is 1/4h2<=h4<=h2. A distance betweentabs 246, 226 is equal to w5=w1-2(g1+g2)+2(h5-r2)-4r2-2g2+2π(r2+g2), where r2=r3+g2 and r2>=g1+g2 is the radius of each bending formed by anfolding lines elastic sheet 200 necessary to form thepartition 213 as presented infig. 2A and 2B and h5=h1-2r2 is a height of the partition 213 (the distance between the surface of the bottom 130 of thebody 100 and the center of the radii of the top of thepartition 213, when thepartition 213 is located in the body 100). Theopenings 232 may have a form of a half of theopening 132 when it is divided by a longitudinal axis of symmetry (parallel to thefolding lines 126, 146). Therefore, the straight side of theopenings 232 located adjacent to thetab 214 lies on thefolding line 246 and the straight side of theopenings 232 located adjacent to thetab 215 lies on thefolding line 226. A width of theopenings 232 is equal to g1. -
Figs. 6A-6B present formulas describing relations between dimensions of the templates of the body and the elastic sheet of the container as described above. -
Figs. 7A-7C present steps of forming of the partition. Thepartition 213 is formed of the template of theelastic sheet 200. In the first step the 214, 215 are folded by 90 degrees along thetabs 246, 226 and the sheet having the width w5 is obtained. Next the protrusion constituting thefolding lines partition 213 is formed after approximating the 214, 215 towards each other, until the width of thetabs elastic sheet 200 is equal to w2, while maintaining their 90 degrees angle with respect to the remaining surface of the elastic sheet 200 (simultaneously maintaining their parallelism). -
Figs. 8A-8H present steps of forming the container. First steps relate to formation of the template of thebody 100. In the 112, 113, 152, 153 are folded by 90 degrees along thefirst step tabs 114, 115, 154, 155 respectively. Next thefolding lines 111, 151 are folded by 90 degrees along theside walls elements 116, 156 respectively in order to formfolding lines 110, 150 of theside walls body 100. Next the 141, 142 are folded by 90 degrees along thelayers folding line 146 and thelayer 122 is folded by 90 degrees along thefolding line 124 as can be seen infig. 8D . In this stage the previously formedelastic sheet 200 is introduced inside thebody 100 so that thetab 214 is adjacent to thelayers 141/142 and thetab 215 is near theside element 121 as shown infig. 8E and fig. 8F . Next theside element 142 is folded by 90 degrees along thefolding line 145 and theside layer 121 is folded by 90 degrees along thefolding line 126 as shown infig. 8G . Next thepartition 213 is moved to a position in which it allows theside element 142 to be folded by 90 degrees along thefolding line 144 so that theprotrusions 143 enter into theopenings 232 in theelastic sheet 200 and into theopenings 132 inside thebody 100. In the last step theside layer 122 is folded by 90 degrees along thefolding line 125 so that theprotrusions 123 enter into theopenings 232 inside theelastic material 200 and into theopenings 132 inside thebody 100. The assembled container is presented infig. 8H in a top view. -
Fig. 9 presents another embodiment of abody 100A of the container which has 117, 157 in an upper part of thelongitudinal notches 110A, 150A respectively. The notches are designed to accept aside walls support 700 on which thepartition 213 is suspended. Such design increases the rigidity of thepartition 213 and makes it easier to change its position within thebody 100A. Thesupport 700 slides along the 117, 157 while thenotches partition 213 is being moved. -
Fig. 10 presents an example of asupport 700 having a form of a C-shaped shaft. Thesupport 700 comprises amain part 730 which is in contact with thepartition 213 and afirst arm 710 and asecond arm 750 which prevent the support from falling out of the 117, 157.notches -
Figs. 11A-11C present details and dimensions of theshaft 700. Theshaft 700 is formed by bending a straight piece of a rod or wire along bending 716 and 756. Thelines first arm 710 has a length h7 and it is bent by 90 degrees along thebending line 716 where 1/4h5<h7<1/2h5. Thesecond arm 750 has a length h6 and it is bent by 90 degrees along thebending line 756 which results in a C-shape where 1/2h5<h6<h5. Themain part 730 has a length l3=l1+2g1 and it is located between thefirst arm 710 and thesecond arm 750. The circular cross-section of the rod has a radius r3>=g1. The radius r3 relates to the radius r2 according to the formula r2=r3+g2. -
Fig. 12 presents a template of thebody 100A. The 117, 157 have a form of slotted notches in which a distance between the end radii center points is equal to w6=w2-4(r3+g2)=w2-4r2 where the end radius is equal to r3. Thenotches 117, 157 are positioned onnotches 111A, 151A in a distance h5 from theside wall elements 116A, 156A respectively being in parallel to them.folding lines -
Fig.13 presents a container with thebody 100A in a cross-section A-A. Thepartition 213 is suspended on themain support part 730 which slides along the 117, 157.notches - The
support 700 is introduced into a container having thebody 100A and thepartition 213 by aligning the 710, 750 in parallel to thearms 157, 117 and inserting thenotches first arm 710 into thenotch 157 under the top of thepartition 213 until thefirst arm 710 protrudes through thenotch 117 on the other side of thebody 100A. Next thesupport 700 is rotated so that the 710, 750 are hanging vertically so that the movement of thearms support 700 along the axis of themain part 730 is restricted. -
Figs. 14 - 18 present another embodiment of asupport assembly 1200 and its dimensions. Thesupport assembly 1200 comprises asupport shaft 1031 on which thepartition 213 is suspended and two forming 1032, 1033 for forming theshafts partition 213 near its base (near the bottom 130B). The 1031, 1032, 1033 are integrated with ashafts clip 1050 which together are denoted aselement 1000. Theelement 1000 is secured with aclamp 1110. Theclamp 1110 has 1131, 1132 and 1133 for receiving ends of theopenings 1031, 1032, 1033 respectively.shafts - A distance between the
1132 and 1133 in theopenings clamp 1110 is equal to d5=4r3+2g2. A distance between the surface, determined by two axes of the 1132 and 1133, to the axis of theopenings opening 1131 is equal to h8=h5-(r3+g2). A height of theclamp 1110 is equal to h9=h8+2(r3+g1+g2) where r3 is the radius of the 1131, 1132, 1133 and r3>=g1. A thickness of theopening clamp 1110 is equal to d7=2r3. A radius of the upper rounded end of theclamp 1110 is equal to r4=r3+g1+g2. Similarly radiuses of the lower rounded end of theclamp 1110 is equal to r4 and a width of the lower end of theclamp 1110 is equal to d6=d5+2r4. A length of the 1031, 1032, 1033 is equal to l4=l3+2r3=l3+d7. The shape and dimensions of theshafts clamp 1110 is the same as ofclip 1050. -
Fig. 19A presents another embodiment of abody 100B. Thebody 100B has 118, 158 which cooperate with anotches support 1031 on which thepartition 213 is suspended and additionally has 119, 159 located in the lower part ofnotches 110B and 150B. Theside walls 119, 159 are designed to accept twonotches 1032, 1033 for forming theadditional shafts partition 213 near the bottom 130B. -
Fig. 19B presents a template of thebody 100B. The 119, 159 have a form of slotted notches in which a distance between the end radii center points is equal to w6 where the end radius is equal to r3. Thenotches 119, 159 are positioned onnotches 111B, 151B in a distance h10=r3+g2 from theside walls elements folding lines 116B, 156B respectively being in parallel to them. Thenotches 118 and 158 (corresponding to the 117, 157 in thenotches body 100A) have a distance between the end radii center points equal to w7=w6-2(r3+g2). A distance between the 118 and 119, 158 and 159 is equal to h8=h5-(r3+g2).notches -
Fig. 20 presents a container with thebody 100B and thesupport assembly 1200 in a cross-section. Thesupport assembly 1200 maintains a permanent shape of thepartition 213 even if the container is empty. -
Fig. 21 presents another embodiment of the container having thebody 100B andseveral partitions 213 driven by the 1200, 1200B, 1200C. In such case the length of the elastic sheet has to be adequately longer to form additional partitions. Having threesupport assemblies partitions 213, the container has four compartments. - The scope of protection is not limited to the preferred embodiments described in the specification, but is only limited by the claims that follow.
Claims (7)
- A container comprising:- a cuboid body (100);- a first compartment (160) and a second compartment (170) separated by a movable partition (213) within the body (100);characterized in that:- the partition (213) is made of an elastic sheet (200) attached to the body (100) at two attachment positions (216, 217) separated by a regulation distance (w2) wherein the elastic sheet (200) has a length (w5) greater than the regulation distance (w2) such that it forms a protrusion constituting the partition (213) movable between the attachment positions (216, 217).
- The container according to claim 1, characterized in that the partition (213) is suspended on a support (700) slidable in notches (117, 157) formed in two opposing side walls of the body (100A).
- The container according to claim 2, characterized in that the support (700) is C-shaped and has arms (710, 750) of different length.
- The container according to any of previous claims, characterized in that the two opposing side walls (120, 140) of the body (100) of the container are double-layer walls (121, 122, 141, 142).
- The container according to any of previous claims, characterized in that the elastic sheet (200) comprises two folded tabs (214, 215) which are located between the layers (141, 142; 121, 122) of the double-layer side walls of the body (100).
- The container according to any of claims 1, 4 or 5 characterized in that the partition (213) is driven by a support assembly (1200) comprising two shafts (1032, 1033) positioned at the bottom of the partition (213), slidable in the notches (119, 159) formed in two opposing side walls of the body (100B) and a support shaft (1031) wherein the ends of the shafts (1032, 1033, 1031) are connected with a clip (1050) and with a clamp (1110).
- The container according to any of previous claims, characterized in that the container comprises more than one partition (213).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP17163121.1A EP3381827B1 (en) | 2017-03-27 | 2017-03-27 | Container with a movable partition |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP17163121.1A EP3381827B1 (en) | 2017-03-27 | 2017-03-27 | Container with a movable partition |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3381827A1 true EP3381827A1 (en) | 2018-10-03 |
| EP3381827B1 EP3381827B1 (en) | 2019-12-25 |
Family
ID=58454880
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP17163121.1A Active EP3381827B1 (en) | 2017-03-27 | 2017-03-27 | Container with a movable partition |
Country Status (1)
| Country | Link |
|---|---|
| EP (1) | EP3381827B1 (en) |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE19506042A1 (en) * | 1995-02-21 | 1996-08-22 | Allan Fruehauf | Containers for fruit or vegetables |
| US20060249515A1 (en) * | 2005-05-05 | 2006-11-09 | Dobrinski Brian T | Container having non-linear support members for supporting dunnage |
| US20160002844A1 (en) * | 2014-07-04 | 2016-01-07 | Heather Fleming | Hygienic Laundry Basket |
| WO2016024239A1 (en) * | 2014-08-12 | 2016-02-18 | G.D S.P.A. | Packet of smoke articles |
-
2017
- 2017-03-27 EP EP17163121.1A patent/EP3381827B1/en active Active
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE19506042A1 (en) * | 1995-02-21 | 1996-08-22 | Allan Fruehauf | Containers for fruit or vegetables |
| US20060249515A1 (en) * | 2005-05-05 | 2006-11-09 | Dobrinski Brian T | Container having non-linear support members for supporting dunnage |
| US20160002844A1 (en) * | 2014-07-04 | 2016-01-07 | Heather Fleming | Hygienic Laundry Basket |
| WO2016024239A1 (en) * | 2014-08-12 | 2016-02-18 | G.D S.P.A. | Packet of smoke articles |
Also Published As
| Publication number | Publication date |
|---|---|
| EP3381827B1 (en) | 2019-12-25 |
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