WO2005014399A1 - Procede et dispositif de conditionnement et element conditionne - Google Patents
Procede et dispositif de conditionnement et element conditionne Download PDFInfo
- Publication number
- WO2005014399A1 WO2005014399A1 PCT/JP2004/011436 JP2004011436W WO2005014399A1 WO 2005014399 A1 WO2005014399 A1 WO 2005014399A1 JP 2004011436 W JP2004011436 W JP 2004011436W WO 2005014399 A1 WO2005014399 A1 WO 2005014399A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- container
- film
- sheet
- package
- web
- 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.)
- Ceased
Links
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
- B65D75/00—Packages comprising articles or materials partially or wholly enclosed in strips, sheets, blanks, tubes or webs of flexible sheet material, e.g. in folded wrappers
- B65D75/52—Details
- B65D75/58—Opening or contents-removing devices added or incorporated during package manufacture
- B65D75/5861—Spouts
- B65D75/5872—Non-integral spouts
- B65D75/5883—Non-integral spouts connected to the package at the sealed junction of two package walls
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B3/00—Packaging plastic material, semiliquids, liquids or mixed solids and liquids, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
- B65B3/02—Machines characterised by the incorporation of means for making the containers or receptacles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65B—MACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
- B65B61/00—Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages
- B65B61/18—Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for making package-opening or unpacking elements
- B65B61/186—Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for making package-opening or unpacking elements by applying or incorporating rigid fittings, e.g. discharge spouts
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- 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
- B65D1/00—Rigid or semi-rigid containers having bodies formed in one piece, e.g. by casting metallic material, by moulding plastics, by blowing vitreous material, by throwing ceramic material, by moulding pulped fibrous material or by deep-drawing operations performed on sheet material
- B65D1/02—Bottles or similar containers with necks or like restricted apertures, designed for pouring contents
- B65D1/0223—Bottles or similar containers with necks or like restricted apertures, designed for pouring contents characterised by shape
- B65D1/023—Neck construction
- B65D1/0238—Integral frangible closures
Definitions
- Packaging method packaging device and package
- the present invention relates to a packaging method, a packaging apparatus and a package, and relates to a container having fluidity, for example, a container such as a liquid, a paste, a girder, a zonole-like article or material, and the like.
- a bag-like packaging container (container) is filled with a small amount of, for example, about 2 to several tens of grams, and a hermetically sealed package, such as a toothpaste or shampoo that is provided to a guest in a hotel or other accommodation room and provided to guests
- the present invention relates to a packaging method and a packaging device for a package in which a bag-like or tube-like container is filled and sealed with a rinse, and a package as described above.
- the present invention relates to a packaging method, a packaging apparatus, and a packaging body for manufacturing a packaging body which is made of a sheet, and in which an extraction member is attached to an opening of the packaging body which is filled and sealed with the packaging material.
- a container for filling and sealing a container having fluidity as described above in a tube-shaped or bag-shaped container a heat-sealing, substantially flexible, laminated material is used.
- a container for a limited dose of liquid, oil, cream, especially an envelope, a bag, etc. having a container body formed by a composite film of coextruded film, which is welded to the head of the envelope, A base, a neck with a hole, a limited break and a knurled cap, wherein the pin is re-inserted into the base after the cap has been broken and flipped 180 ° to ensure sealing of the envelope.
- a resealable container with a substantially rigid insert protruding from the center of the cap has been proposed (see, for example, Patent Document 1). Furthermore, a resealable insert (extraction port member) provided at an opening of a head portion of the envelope (bag), wherein an integrally molded cap is divided and resealable as an extraction port device, At the upper end, a cap for closing this spout is integrally formed in an inverted state, and a horizontally long heat-sealing shoulder is integrally formed at the lower end of the spout so that the tip of the heat-sealing shoulder becomes gradually thinner. Where the film at the end of the heat-sealing shoulder and the film on the front and back of the bag fit together.
- a bag spouting device designed so as not to generate pinholes in a minute (for example, see Patent Document 2).
- a resealable bouch packaging container a) having a substantially rigid fitment (the same member as the insert and the extraction port device), the fitment includes an inner end, an outer end, This inner end force has an orifice extending to the outer end, and has a flat flange at the inner end.
- a thermoplastic film piece constituting a packaging container is provided with a hole, A recess is formed around the hole by molding means, the flat flange of the fitment is adhered to the hole of the film piece, and the film piece is bent away from the fitment to form a bent end.
- the concave portion of the film piece is shaped to receive the flat flange of the fitment, and the reclosable voucher packaging container, and a method of manufacturing the voucher packaging container, include: Forming recesses in the thermoplastic film piece by means of: b) flowing fluid between the patch and a substantially rigid fitment having a planar flange and an orifice therethrough. Forming a hole in the recess, c) bonding a flat flange of the fitting to the recess of the film piece, and d) forming an overlapped film edge with the folded end.
- Patent Document 4 discloses a similar method for manufacturing a container. That is, in the method for manufacturing a container disclosed in Patent Document 4, a tube material is formed by bending a sheet material along one axis and bonding along a side edge of the folded and stacked sheet material.
- the overlapping portions of the tube-shaped body are spread apart from each other, an intermediate portion is defined by an end portion side edge, the intermediate portion forms the end portion side portion, and the end portion side portion is formed.
- a lid body is attached, and a paste-like product is filled into the expanded tubular body through an opening located on a side opposite to the end face side, and the opening is filled with the product.
- an outlet opening is formed in the intermediate part which will form the end face side, and two superposed parts of the material are provided on both side edges thereof.
- the fixed connecting piece is introduced into the tubular body through the opening located on the side opposite to the end face side. Extruding the neck portion of the fixed connection piece outward through the outlet opening and fixing the neck portion inside the intermediate portion;
- an outlet connection piece and a lid body constituting a lid top are mounted on the neck portion of the fixed connection piece protruding from the tubular body, whereby the intermediate portion is connected to the fixed connection piece and the fixed connection piece.
- Patent Document 1 discloses a method of manufacturing (packing) the container simply by saying “the packaging device may be a device installed in an existing packaging machine. This device performs the following operation. Removal of the plastic insert from a suitable dispensing device; placement of the insert in the envelope opening after loading of the insert; transport of the packaging material along the production line if necessary. "(Patent Document 1, paragraph [0031] Column), but no details of the packaging method or equipment. Further, in Patent Document 2, the extraction device is described as follows: “The rib is inserted into the mouth of the bag so as to be sandwiched between the back and front films, and is pressed from the front and back by a grooved heat-sealing bar so that the ribs are inserted into the film.
- Patent Document 1 Japanese Patent Application Laid-Open No. 5-162756 (Claim 1, FIG. 1, FIG. 2)
- Patent Document 2 Japanese Patent Application Laid-Open No. 5-229566 (Claim 1, paragraphs [0012], [0018], FIGS. 14)
- Patent Document 3 Japanese Patent Application Laid-Open No. 10-510790 (Claim 1 , Section 7, Figure 6 Figure 9, Figure 11, Figure 12)
- Patent Document 4 Japanese Translation of PCT International Publication No. 2001-514602 (Claim 7, Claims 13 and 11-13)
- a tube-shaped or bag-shaped container made of a heat-fusible film which has a vertically-long rectangular shape as described above, and has an insert, an extraction port device, a fitment, etc.
- a member attached to the container for extruding, squeezing, or extracting a fluid or an article or a material filled and sealed into the container and having fluidity is referred to as a “sbout”.
- a rectangular shape made of a flexible synthetic resin film is used.
- a package A in which a spurt S is attached to the edge b on the long side of the container (bag) a has been proposed.
- the package A is generally manufactured by the steps shown in FIGS. 18 (b) to 18 (e). That is, for example, at least one surface is made of a material having a heat-sealing property (heat-sealing property) such as a thermoplastic resin, and the two films f forming the front and back of the container a are heat-sealed. Or a similar film having a width almost twice as long as the length of the container a (the length in the vertical direction in Fig. 18 (a)).
- a material having a heat-sealing property such as a thermoplastic resin
- the film f is folded in half so that the surface having the heat-sealing property is on the inside, and is overlapped, and the edges c on both short sides of the overlapped films f are heat-sealed h to be flat (opened).
- the edge c that has been heat-sealed h is shorter than the edge b (see FIG. 18 (b)).
- a spat S is arranged in one of the openings (lower end opening) of the long side edges b, b, and between the two films f constituting the front and back of the container a.
- the edge b is heat sealed together with the edge b to seal the edge b, and at the same time, the spat S is adhered to form a bag-shaped container a.
- a liquid, paste-like, or other fluid material m is filled from the opening (upper end opening) o on the edge b of the container a.
- the edge b is heat-sealed h, the opening o is closed, the container a is sealed, and the package A
- the opening is easily opened by pressing the adhesive S of the spout S into the opening of the container a. It can be easily adhered by heat sealing between the films f constituting the front and back.
- the case where the space between the front and back two films f in the container a and between the film f and the bonding portion S of the spurt S are bonded by heat sealing has been described, but they may be bonded by an adhesive.
- the proportion of the gap e increases, for example, if the container a is a small-capacity container having a capacity of about 10 g, only about 50% of the capacity of the container a can be filled with the container m. However, there is a problem that only an extremely low filling rate with respect to the capacity of the container can be obtained. Further, as shown in FIG.
- the spat S in the case where the spat S is attached to the long side edge b of the rectangular container a, the spat S which is not only unsatisfactory in terms of product appearance (design)
- the container space above the spat S There is a problem that it is difficult to completely squeeze out the container m from the container a because the container remains.
- the present invention has been made in view of the above-described problems in a package in which a spat is attached to a flexible bag-like or tube-like container made of a synthetic resin film or the like, and a small amount of the package is provided.
- a relatively small-capacity package for filling and storing objects even if the opening width at the spurt mounting position is small, the spat can be easily attached, and a package with a high appearance, ease of use, and a high filling rate of the contents is provided.
- Another object of the present invention is to provide a packaging method, a packaging device, and a package that can be manufactured at low cost without using complicated processes and packaging devices. Means for solving the problem
- the present invention provides a flexible or flexible container for folding and stacking a film or a sheet constituting the front and back of a container into two parts.
- a bag making process in which two films or sheets constituting the front and back sides are superimposed, and both sides of the superimposed film or sheet are adhered to each other to form a container, and a spurt take-out in which a spart is attached to the container.
- the bag making step includes continuously feeding the film or sheet.
- the two or more films or sheets to be supplied and continuously supplied and folded or overlapped are provided with a rod-shaped opening forming means for forming openings, which extends in the longitudinal direction of the film or sheet,
- a rod-shaped opening forming means for forming openings, which extends in the longitudinal direction of the film or sheet.
- both sides of the overlapped film or sheet are bonded to each other on both sides in the longitudinal direction of the opening forming means.
- a cylindrical container having an opening between the films or sheets is continuously formed, and the continuously formed cylindrical container is formed into a single container length while maintaining the cylindrical shape.
- the packaging method is characterized in that the package is cut into small pieces and transferred to a spurt attaching step while maintaining the cylindrical shape, and the spurt is attached.
- the container to which the spurs are attached in the spurt attaching step is transferred to a filling-sealing step while maintaining the cylindrical shape, and the container is made to have fluidity. It is preferable to fill and seal the contents such as goods or materials.
- the bag making process is transferred to the spurt attaching step, it is preferable to transfer a plurality of subdivided single containers simultaneously to the spurt attaching step.
- the spat attaching step it is preferable that the spat is simultaneously attached to the plurality of single containers transferred at the same time.
- a plurality of single containers to which the spurts are attached are simultaneously transferred to the filling / sealing step from the spurt attaching step.
- the filling and sealing steps it is preferable to simultaneously fill and seal a plurality of single containers transferred simultaneously from the spur attaching step.
- the film or sheet continuously supplied in the bag making step may be supplied intermittently. Further, in this bag making process, after the both sides of the film or sheet are adhered to each other to form a container continuously, before subdividing into a single container, the side edges of the film or sheet overlapped are formed. It is preferable to include a trimming step of cutting the edge along the longitudinal direction of the film or sheet. Further, in the bag making process, After the containers are continuously formed by bonding the sides, before being divided into single containers, both sides of the single package to be manufactured are cut according to the shape of the containers. I can do it.
- the continuously formed cylindrical containers are formed in the shape of the package to be manufactured. It is cut into the shape according to the size and divided into single containers.
- the present invention provides a web supply unit that continuously supplies a flexible film or sheet with a roll force, and a continuous film or a sheet that is supplied from the web supply unit.
- a packaging device was arranged between the film or the sheet and provided with a rod-shaped opening forming means for maintaining the film or the sheet in an open cylindrical shape over the web polymerization means, the side sealing means and the cutting means.
- the opening forming means is provided so as to be able to move back and forth along the supply direction of the film or sheet, and the tip thereof is provided so as to be able to advance and retreat before and after the cutting means.
- the opening forming means has a cross section orthogonal to the axial direction of the opening forming means (longitudinal direction from the web superposing means to the cutting means), and has a shape of a bonding part to the container in the spout attached to the container. It is preferable that the shape be similar to the cross-sectional shape.
- the opening forming means may be configured such that the cylindrical housing body formed continuously is After being held by the container holding means of the transfer means, it retracts, and the cylindrical container is cut between the opening forming means and the container holding means to be subdivided into a single container. It is preferable to configure a packaging device. Further, it is preferable that the transfer means includes a transfer device rotatably provided, and a plurality of container holding means protruding outward in a direction of a force outward from the center of rotation. Further, it is preferable that the transfer means can transfer a plurality of the single containers to the spur attaching means at the same time.
- the spurt attaching means includes a container holding means for holding the transferred container while maintaining the cylindrical shape of the container. Further, it is preferable that the spat attaching means can attach the spat to a plurality of single containers at the same time. Further, it is preferable that the filling means can also simultaneously fill a plurality of single containers. Further, it is preferable that the sealing means can be simultaneously sealed with respect to a plurality of single containers filled with a container such as an article or a material having fluidity.
- the web supply unit may be configured to intermittently supply a film or a sheet to the web polymerization unit. Further, in this packaging apparatus, after the both sides are adhered to form a container continuously, before dividing into a single container, the side edges of the stacked film or sheet are attached to the film or sheet. Trimming means for cutting along the longitudinal direction of the sheet may be provided. Furthermore, before subdividing the container formed continuously by bonding both sides by the side sealing means into a single container by the cutting means, the container in the single package manufactured is manufactured. Equipped with side cutting means to cut both sides according to the shape.
- the package according to the present invention is a container having fluidity in a container made of a flexible film or sheet and provided with a spat, manufactured by the above-described packaging method or packaging apparatus. Are filled. That is, the above-mentioned container in the package of the present invention is formed by folding a flexible film or sheet into two, overlapping them, and bonding their peripheral edges to each other, or has a flexible structure. It is constructed by laminating two films or sheets and bonding their peripheral edges.
- the package of the present invention is characterized in that the side of the outer peripheral shape of the container to which the spurt is attached is provided.
- the opening width of the container to which the spat is attached can be 50% or more of the length of the container.
- the length of the side of the outer peripheral shape of the container to which the spat is attached can be set to 50 mm or less.
- the ratio of the length of the side of the outer peripheral shape of the container to which the spat is attached and the length of the container in the direction orthogonal to the side to which the spat is attached is 2/5 or less.
- the opening width of the container to which the spurt is attached can be set to 50 mm or less.
- the container has a substantially rectangular shape, and the spat is attached to a short side of an outer peripheral shape thereof.
- the container is made of a flexible film or sheet whose inner surface is made of a thermoplastic material, a bag-shaped or tube-shaped container can be easily formed by heat sealing. It is preferred. More preferably, the container is made of a film or sheet on which a thermoplastic resin film is laminated. Further, the container is preferably composed of a composite laminated film or sheet composed of a thermoplastic resin film and a metal film such as an aluminum film, from the viewpoint of gas barrier properties.
- the spout attached to the container is formed integrally with the extraction port attached to the container so as to be divisible into the extraction port, and when the spout is divided from the extraction port. It is preferable to use a resealable one composed of a lid provided so that the upper end of the extraction hole formed in the extraction port is open.
- the spurt is formed at a lower portion of the extraction port attached to the container at least on both sides from the extraction port, and is formed between two flexible films or sheets constituting the container. If the adhesive portion is provided on the inner surface of the opening, and the adhesive portion is formed in a tapered shape that gradually becomes narrower from the extraction opening toward both sides thereof, a spout is formed on the container.
- the container can be securely attached and the container can be securely sealed.
- the lid is divided from the extraction opening and attached to the extraction opening, the lid is fitted into the extraction hole formed in the extraction opening and the extraction is performed. It is preferable to form a shaft portion that closes the hole because the sealing property in the resealed state is improved. Further, it is more preferable that the shaft portion is tapered toward the tip thereof in view of the sealing performance. Further, it is preferable that the spat has a knob formed laterally from an outer surface of the lid. It is more preferable that the knob protrudes to both sides of the lid along the direction in which the bonding portion protrudes. Further, the knob is preferably plate-shaped.
- the lid part is rolled and the surface area of the lid part that appears on the surface is large by the knob part, It also has the advantage of being easy to find. Further, it is preferable that the above-mentioned spatter used for the package of the present invention be made of a thermoplastic resin because heat sealing to the force container is possible.
- the front and back of the container are formed from the beginning, that is, from the time of bag making.
- the container is formed in a cylindrically opened state by interposing a rod-shaped opening forming means (mandrel) between the films or sheets to be formed, and the spurt is attached while maintaining the cylindrical shape. Therefore, since it is not necessary to open the container again for attaching the spurt when attaching the spurt, the package is a relatively small and small-sized package that is filled and hermetically sealed.
- FIG. 1 is an overall perspective view of an apparatus schematically showing a packaging apparatus.
- FIG. 2 (a)-(d) is a perspective view for explaining a bag making process.
- FIG. 3 (a) and (b) are cross-sectional views for explaining a bag making step and a subdivision step.
- FIG. 4 (a) One (c) is a perspective view for explaining a subdivision step.
- FIG. 5 is a perspective view of a transfer device.
- FIG. 6 (a)-(e) is a perspective view for explaining a transfer device-spurt attaching step.
- FIG. 7 (a)-(d) is a perspective view for explaining a filling / sealing step.
- FIG. 8 is a perspective view of a package.
- FIG. 9 is a front sectional view of a package.
- FIG. 10 is a side sectional view of a package.
- FIG. 11 is an enlarged plan sectional view of a package.
- FIG. 12 is a front view of a container before attaching a spat.
- FIG. 13 is a perspective view of a spat.
- FIG. 14 is a front view of the package in a state where the lid of the spat is divided from the extraction port.
- FIG. 15 is a front view of a package body in which a divided lid portion is fitted to an extraction port portion and resealed.
- FIG. 16 is an enlarged front sectional view of the spat in a state where the lid is fitted to the extraction port.
- FIG. 17 (a) is a front view of a package in various forms.
- FIG. 18 (a)-(e) is a process explanatory view showing a conventional package and its packaging method.
- Mounting device m: container, o: opening, S: spurt, S: adhesive, R: web roll,
- FIG. 1 schematically shows a packaging apparatus for producing a package by the packaging method according to the present invention.
- the packaging apparatus M includes a bag making process 100, a spout attaching process 200, a filling / sealing process 300, and a wrapper body discharging process 400 for discharging a package 1 which is a manufactured finished product in the packaging method according to the present invention. It has.
- the bag making process 100 the flexible film or sheet constituting the front and back of the container 2 in the package 1 to be manufactured is folded in two and overlapped, or the flexible container This is a step of superposing two films or sheets constituting the front and back of the above and forming a container by adhering both sides of the superposed film or sheet to each other.
- the bag making process 100 includes a web supply unit 101 that continuously supplies a web W such as a flexible film or sheet from a web roll R, and a continuous film or sheet ( Hereinafter, these are collectively referred to as “web W”.), And are folded in half in the longitudinal direction, that is, folded in half along the direction in which the web W is supplied (the left-right direction in FIG. 1) and overlapped.
- a web sealing means 102 and side sealing means 103 for bonding the overlapped web W to each other at both sides thereof along the longitudinal direction, that is, the direction in which the web W is supplied, to form the container 2a continuously,
- cutting means 104 for cutting the container 2a continuously formed by the side sealing means 103 and subdividing the container into lengths of a single container 2.
- the spurt attaching process 200 is a process of attaching the spart S to each single container 2 cut as described above, and attaching the spart S to each of the containers 2 subdivided by the cutting means 104. And a spat attachment 201 which is to be installed.
- the filling and sealing step 300 is performed by filling each container 2 to which the spurs S are attached by the spur attaching apparatus 201 of the spur attaching step 200 with a material m such as an article or material having fluidity.
- a filling device 301 that fills each of the containers 2 to which the spurs S are attached with a container m such as an article or a material having fluidity, and the container 2 that is filled with the container m. Sealing devices for sealing openings 30 2 is provided.
- the discharging step 400 includes a discharging conveyor 401 for discharging the package 1 which is a completed product manufactured by sealing the opening by the sealing device 302 from the filling and sealing step 300. Further, in the packaging apparatus M shown in the figure, each single cylindrical container 2 subdivided by the cutting means 104 in the bag making process 100 is attached to the spat while maintaining the cylindrical shape.
- the apparatus includes a transfer device 500 and a transfer conveyor 510 as transfer means for transferring to the device 201.
- the container 2a continuously supplied from the web roll R of the web supply means 101, folded by the web polymerization means 102, and formed continuously is provided.
- a mandrel 106 which is a rod-shaped opening forming means 105 for maintaining the container 2 in a cylindrical shape with an opening between the superposed films or sheets of the web W, is provided between the webs W constituting the front and back sides, and a web superposing means. 102, side sealing means 103 and cutting means 104 (see FIGS. 2 to 4). Then, the mandrel 106 is installed between the webs W constituting the front and back of the container 2, and the overlapped webs W are opened in a cylindrical shape.
- a cylindrical container 2a having an opening between the webs W constituting the front and back surfaces of the container 2 is continuously formed, and further, the container formed continuously and having a cylindrical opening. 2a is cut by the cutting means 104 into the length of a single container 2 while maintaining the cylindrical shape, and divided into small pieces, and each divided container 2 is separated by the transfer device 500 and the transfer conveyor 510. While maintaining the cylindrical shape, it is transferred to the spurt attaching device 201 in the spurt attaching step 200, and the spurt S is attached to the opening of the container 2.
- packaging method and the packaging device of the present invention will be described in more detail based on the packaging device M in the illustrated example.
- a web W continuously and substantially horizontally pulled out from a web R is formed into a plurality of various rolls, for example, a pair of web pulling rolls 107, a web twisting roll 108, and an axial direction.
- a pair of web delivery rolls 109 which are substantially vertical and are opposed to each other, change the posture so that the surfaces thereof are substantially vertical, and supply the web W in the axial direction, which constitutes the web polymerization means 102.
- the web W has a width approximately perpendicular to the longitudinal direction (the direction in which the web is supplied), and has a width approximately twice that of the container 2.
- the web W overlaps to form the front and back of the container 2.
- the web W constituting the front and back of the container 2 is formed of a film or a sheet which has at least a folded inner surface which has a heat-sealing property and can be adhered to each other by heat-sealing. You.
- a film or sheet has flexibility for forming the front and back of the container 2 and at least the inner surface is formed of a heat-fusible material, for example, a thermoplastic resin film.
- thermoplastic resin of the thermoplastic film includes, for example, a force S including polyethylene (PE), low density polyethylene (LDPE), and the like, but is not limited thereto.
- a force S including polyethylene (PE), low density polyethylene (LDPE), and the like, but is not limited thereto.
- the film or sheet is not necessarily required to have a heat-sealing property as long as it has flexibility. You don't have to.
- a web having a gas barrier property such as a metal film, for example, an aluminum film laminated or a metal-deposited composite film or sheet is used as the web W, for example, cosmetics, toothpaste, etc.
- a package for a container containing volatile components such as fragrances is suitable as a package for a container containing volatile components such as fragrances.
- a print of a trademark or a product description is printed on the surface of the container 2 where the printability of the surface of the web W is improved. Suitable for application.
- marks 111 for position detection are printed at regular intervals corresponding to the length of a single container, and The position detection mark 111 is detected at an appropriate position in the bag making process 100 of the apparatus M, supplied from the web supply means 101, and folded into two by the web polymerization means 102 so as to constitute the front and back of the container 2.
- the web W () is overlapped, heat-sealed on both sides by side sealing means 103 to form a continuous bag-like container 2a, and further cut by the cutting means 104 into a single container 2 web ( And one or more mark sensors 112 for detecting the position of the container 2a) formed continuously therefrom are provided, and the web W (the container 2a formed continuously) at the time of processing in each step is provided. Positioning. Further, a mark feed roller 113 is provided before (upstream side) the cutting means 104. Although not shown, various types of product information such as product trademarks and product descriptions are printed on the surface (outer surface) of the web W between the position detection marks 110.
- the web W folded in half (half) to form the front and back of the container 2 has an opening formed between the films or sheets forming the front and back of the container 2.
- a mandrel 106 is arranged. As shown in FIGS. 1, 2, and 4, the mandrel 106 is supplied to the web supplied by being folded into two by the folding roll 110 of the web polymerization means 102 which continuously forms the container 2a.
- the mandrel 106 is disposed between the upper and lower films or sheets constituting the front and back of the container 2a, and the mandrel 106 is provided across the side sealing means 103 and further, the cutting means 104 for subdividing into the single container 2. It has been.
- the base end of the mandrel hole 106 is disposed between the folding roll 110 of the web stacking means 102 and the side seal means 103, and is folded to the side of the base force.
- An operating arm 106c protrudes from the open side edge 119 of the web W.
- the operating arm 106 is connected to a not-shown front-rear drive means (linear actuator), and the mandrel 106 is provided so as to be able to move back and forth along the direction in which the web W (film or sheet) is supplied by the drive means.
- the distal end 106b is provided so as to be able to advance and retreat before and after the cutting means 104.
- the mandrel 106 serving as the opening forming means 105 has a sectional shape perpendicular to the axial direction (the longitudinal direction of the force from the stacking means 102 to the cutting means 104).
- a bonding portion of the spur S attached to the body 2 to the container 2 for example, a bonding portion 13 of the spurt S shown in FIG. It is formed in a size and shape similar to the cross-sectional shape (transverse cross section) of the bonding portion 13 so as to be thin. Therefore, the container 2 can be formed into a shape that is opened in accordance with the shape of the bonding portion 13 of the spart S, and the spurt S can be easily attached to the opening of the container 2 in the spurt attaching process 200. become.
- the web W folded in half by the folding roll 110 so as to constitute the front and back of the container 2 is heat-sealed on both sides of the mandrel 106 by the side see-through means 103.
- the position of the folded web W is detected by the mark sensor 112, the web W is moved by a length corresponding to the length of the single container 2, and the side seal is intermittently stopped so as to stop. It is provided to means 103.
- the supplied web W is thermocompression-bonded between a pair of upper and lower (two pairs on both sides) heat sealing dies 114 and 115 disposed on both sides of the mandrel 106, and at least the superposed inner surface force S of the web W,
- the inside of the container 2 is heated up to a temperature above the softening point of the thermoplastic material (film) constituting the inner surface, generally to 140 ° C. to 220 ° C. (about 1 second).
- the force S between the inner surfaces of the constituent films or sheets is adhered on both sides in the longitudinal direction to form the container 2a continuously.
- the container 2a continuously formed by bonding (heat sealing) on both sides in this manner is disposed on the downstream side (post-process side) of the heat seal dies 114 and 115 and also on both sides of the mandrel 106.
- the heat-sealed portion is cooled and bonded by pressure bonding between a pair of upper and lower (two pairs on both sides) cooling dies 116, 117.
- the container 2a is continuously formed by bonding both sides of the film or sheet of the web W as described above, and then divided into the single container 2 by the cutting means 104. If the web W is folded in two before the side edge of the superimposed film or sheet, as shown in the figure, the folded web W (continuous It is preferable to provide a trimming step of cutting the side edge 119 of the storage body 2a) opposite to the fold line 118 along the longitudinal direction of the film or sheet. In this trimming step, the side edges (open side edges) of the folded web W may not always completely coincide with each other in the EB polymerization means 102 and the side sealing means 103. This is done to adjust the shape. In the case where two films or sheets supplied from two rolls are overlapped to form the front and back of the container 2, it is preferable to perform the trimming on both side ends of the container 2.
- a trimming process is performed between the side sealing means 103 and the cutting means 104 and further after the side sealing means 103 (downstream side) as described above.
- the storage body 2a formed continuously by bonding both sides by the side seal means 103 and further trimmed at the side end is divided into a single storage body by the cutting means 104 after the trimming.
- the shape of the container 2 in a single package 1 to be manufactured Side cutting means 120 for cutting both sides according to the shape is provided.
- the side cut means 120 forms R portions at four corners of the container 2.
- a cut 121 is made, and as shown in Fig. 17 (b) (1), both sides of the container 2 (Fig. Even when the container 2 is formed into various shapes on both the left and right sides, the side cut means 120 cuts both sides along the longitudinal direction of the container 2a formed continuously. Thus, the container 2 having a desired shape is obtained.
- the heat seal portions h on both sides by the side seal means 103 are heat-sealed in a shape corresponding to the side cut shape. The same applies to the shape of the bonding portion when bonding with an adhesive.
- the container 2a formed continuously as described above is cut by the cutting means 104 and is subdivided into a single container 2. That is, the cylindrical container 2a formed continuously is cut into a single container 2 by the cutting means 104 into a shape and size corresponding to the package 1 to be manufactured. .
- the cutting means 104 is composed of a pair of blade means including a cutting blade 122 and a receiving blade 123 which receives the cutting blade 122.
- the cutting means 104 cuts the continuously formed container 2a into a single container 2, as shown in FIGS. 1 and 4 (a)-(c).
- Tip force of the mandrel 106 as a member The container 2a is held by the mandrel 106 in front (downstream) of the cutting blade 122 of the cutting means 104 together with the cylindrical container 2a formed continuously as described above. While holding it, the tip of the container 2a protrudes from the blade means 122 by the length of the single container 2 and is positioned at the tip of the container 2a in the container holding means 501 of the transfer device 500. After the two pieces of the single container 2 are held, the tip 106b of the mandrel 106 is retracted backward from the position of the cutting blade 122 of the cutting means 104 (see FIG. 4 (b)).
- the cutting means 104 Is the cross-sectional (see FIG. 3 (b).). Thereafter, the mandrel 106 advances again, and as shown in FIG. 4 (c), its tip 106b guides forward from the cutting blade 122 of the cutting means 104 while holding the continuous container 2a (see FIG. 4C). 4 (c).), The container 2 positioned at the tip of the container 2a is held by the container holding means 501 of the transfer device 500, and then retracted. By repeating such an operation, the cylindrical container 2a formed continuously is cut and subdivided into a single container 2.
- the transfer device 500 shown in FIG. 5 has a plurality of rod-shaped container holding means 501 (see FIG. 5) which are applied to a base 502 which is rotated by a rotation driving means (not shown). In the example, 10 are protruding.
- the transfer device 500 is held by the container holding means 501 at the time of cutting by the cutting means 104, and a single container 2 obtained by cutting the continuous container 2a is cylindrically transferred by the container holding means 501.
- the transfer device 500 changes the posture of the container 2 together with the container holding means 501 so that the container 2 rotates 90 ° around the axis thereof with the rotation of the base 502, and transfers the container 2 to the transfer conveyor 510. send.
- the container holding means 501 provided around the base 502 at the transfer position to the transfer conveyor 510 (the uppermost part in the drawing). Are arranged close to each other and parallel to each other, so that two of the single containers 2 are simultaneously transferred to the transfer comparator 510.
- the container holding means 501 has a circular or elliptical cross-section orthogonal to the axial direction or approximates the cross-sectional shape of the bonding portion 13 of the spur S similarly to the mandrel 106 as the opening forming means 105 in the bag making process 100.
- the container 2 can be transported with the bonding portion 13 of the spurt S open in a shape that allows easy insertion.
- the transfer of the container 2 from the transfer device 500 to the transfer conveyor 510 is performed by holding both sides of the two aligned containers 2 by gripping means such as chucks 503 and pulling the container 2 upward from the container holding means 501.
- the container 2 is configured to be inserted into the container holding bar 512 provided on the transfer conveyor 510, and to hold the container 2 between the clip 513 provided on the container holding bar 512.
- the transfer conveyor 510 has a plurality of movable base units 511 provided so as to be movable from the transfer device 500 toward the spur attachment device 201, and a container holding bar and a clip 513 are provided. Container 2 from the transfer device 500 to the spat attachment device 201 Transfer.
- the spurt attaching device 201 of the spurt attaching process 200 inserts and arranges the spurt S into the opening at the lower end of the single container 2 transferred from the bag making process 100 through the transfer device 500 and the transfer conveyor 510, and S is bonded to the container 2.
- the spur attachment device 201 includes a plurality of pairs of chucks 202 as container holding means that hold both sides of the container 2 transferred from the transfer conveyor 510 and move together with the moving base unit 511 of the transfer conveyor 510;
- the container 2 is held by the container holding bar 512 and the clip 513 of the transfer conveyor 510, and is transferred to the spart insertion position by the transfer conveyor 510 in a state where both sides thereof are gripped by the chuck 202.
- the adhesive portion 13 of the spur S is inserted from the lower end opening by the sput insertion / temporary fixing device 205 (see FIG. 6 (b)).
- the insertion of the spat S into the container 2 is performed simultaneously on a plurality of (two in the illustrated example) containers 2 transferred by the transfer conveyor 510. Further, as shown in FIG. 6 (c), the container 2 into which the spurs S have been inserted is bonded to the spurs S by the pin-shaped heat seal die 209 of the spur mounting and temporary fixing device 205. The positions on both sides of the part 13 are heat-sealed in a dot shape and temporarily fixed.
- the position of the point seal of the temporary fixing is not particularly limited as long as the spur S can be reliably positioned with respect to the container 2. In addition, the step of temporarily fixing the spurt S by the point seal can be omitted.
- the temporary fixing (point seal) is required. ) Is preferable.
- the container 2 to which the spurs S are temporarily fixed is further moved forward by the transfer conveyor 510, whereby the two single containers 2 to which the spurs S are temporarily fixed at the same time are similar to the above.
- the sealing device 207 is simultaneously provided. Then, the lower end opening of the container 2 is completely closed by the heat seal together with the spat S between the pair of heat seal dies 210 of the sealing device 207. As shown in FIG.
- the heat sealing die 210 of the present sealing device 207 has a sealing surface 210a formed in a shape similar to the outer shape of the bonding portion 13 of the spur S.
- a sufficient heat sealing time can be secured by simultaneously heat-sealing the spat S to a plurality of containers 2 (two in the illustrated example).
- the spat S can be securely bonded to the opening of the container 2 and the force S for securely closing the lower end opening of the container 2 can be obtained.
- the container 2 to which the spurs S are bonded is sent to the cooling device 208, and is sandwiched between a pair of cooling dies 211 of the cooling device 208, and the container 2 to which the spurs S are bonded by the heat seal as described above.
- the lower edge is cooled (see Fig. 6 (e)).
- the container 2 is held in a state of being held by the chucks 202 on both sides thereof while maintaining the cylindrically opened state by the container holding bar 512 of the transfer conveyor 510, and the posture is fixed. In this state, the workpiece is processed in each process while being transferred along with the movement of the moving base unit 511 of the transfer conveyor 510.
- a feeder 304 fills a container such as an article or a material having fluidity from the upper end opening of each container 2 sent as described above (see FIG. a)).
- a container such as an article or a material having fluidity from the upper end opening of each container 2 sent as described above (see FIG. a)).
- the container 2 is sent to the filling device 301 with the upper end opening kept open by the chucks 202 on both sides, the storage from the upper end opening of the container 2 is performed. Easy to fill.
- a plurality of feeders 304 are provided in parallel, and the container 2 is filled with the container at the same time, so that the filling time is reduced. Can be secured.
- the contents were filled in this way
- the container 2 is sent to the sealing device 302, which is the next step, and the open upper end is sandwiched between the pair of heat seal dies 305 of the sealing device 302, and the upper end is flattened by heat sealing.
- the package 2 is bonded (see FIG. 7 (b)), and the upper end of the heat-sealed container 2 is cooled between a pair of cooling dies 306 (see FIG. 7 (c)).
- the finished product is obtained (see Fig. 7 (d)).
- the transfer from the bag making process 100 to the spurt attaching process 200, the spurt attaching in the spurt attaching process 200, the filling and the filling of the contents in the filling / sealing process 300, and the heat of the opening are performed.
- the packaging device M so that a plurality of single containers 2 are simultaneously processed in each step of the sealing process, the heat sealing time, the cooling time of the heat sinker, and the storage time in each process are reduced. It is possible to secure a sufficient time for filling the material, and the productivity is improved.
- the package 1 obtained as described above is sent to the discharge position in the filling / sealing step, the chuck 202 holding and fixing both sides thereof is opened, falls naturally, and drops naturally. It is sent to the next process by about 400 discharge conveyors 401, packed in boxes, and stored or shipped.
- Figs. 8-11 show a package in which a fluid container m manufactured by the packaging method or the packaging device of the present invention is filled and sealed in a flexible container 2.
- 1 shows a typical embodiment.
- the container 2 has a substantially rectangular shape, and a spat S is attached to a short side (upper side) of the outer peripheral shape.
- the container 2 is formed by folding a flexible film or sheet (web W) in two and overlapping them, and bonding their peripheral edges to each other by heat sealing. Have been.
- the container 2 may be formed by laminating the two flexible films or sheets and bonding the peripheral portions thereof.
- the container 2 When the container 2 is formed by fusing the peripheral portion by heat sealing, the container 2 is formed from a flexible film or sheet having at least an inner surface made of a thermoplastic material. Therefore, The container 2 is preferably made of a film or sheet obtained by laminating a thermoplastic resin film. Further, as described above, the container 2 may be composed of a composite laminated film or sheet formed of a thermoplastic resin film and a metal film, or a synthetic resin film or sheet formed by depositing metal, from the viewpoint of gas barrier properties. Is more preferable. As the metal film, an aluminum film is generally used. It is preferable to use a composite laminated film or sheet in which the outermost layer of the resin film is made of a polyethylene terephthalate-based resin in terms of printability on the surface of the container 2.
- the spout S attached to the container 2 has an extraction hole 14 formed therein as shown in FIG. 9 and can be divided into an extraction port 11 attached to the container 2 and an extraction port 11.
- it is composed of a lid 12 provided so that the upper end of the extraction hole 14 is open when divided from the extraction port 11, as shown in FIG.
- a division groove 15 is formed between the part 11 and the lid part 12.
- the lid 12 is divided from the extraction port 11, and the lid 12 is turned upside down by 180 ° and fitted into the extraction port 11 as shown in FIGS. It is resealable.
- the outer surface 16 of the extraction port 11 is tapered toward the tip, and the inner surface 17 of the lid 12 is tapered according to the shape of the outer surface 16 of the extraction port 11.
- the spurt S has a lower portion of the extraction port 11 attached to the container 2, which projects from the extraction port 11 on at least both sides thereof, between two flexible films constituting the container 2.
- a bonding portion 13 is provided to be bonded to the inner surface of the opening 23 (see FIG. 12).
- the bonding portion 13 includes a flange portion 18 protruding at least on both sides from a lower portion of the extraction port portion 11 attached to the container 2 and a peripheral wall portion 19 provided over the entire outer periphery of the lower surface of the flange portion 18.
- the adhesive portion 13 is formed in a tapered shape that gradually becomes narrower from the extraction port portion 11 toward both sides thereof.
- a ridge 20 is formed on the outer surface of the bonding portion 13 along the width direction of the bonding portion 13.
- the ridge 20 is heated and melted when the spur S is bonded to the opening 23 of the container 2 by heat sealing, so that the opening 23 of the container 2 is securely closed.
- the shaft is fitted into the extraction hole 14 formed in the extraction opening 11 to close the extraction hole.
- the part 21 is formed, whereby the extraction hole 14 can be reliably sealed.
- This shaft 21 is The tapered shape toward the end is preferable because the extraction hole 14 has a high sealing effect.
- a knob 22 is provided from the outer surface of the lid 12 to facilitate twisting the lid 12 from the extraction port 11 with a finger or the like when separating the lid 12 from the extraction port 11. It is formed.
- the knobs 22 protrude to both sides of the lid 12 along the direction in which the adhesive portion 13 protrudes (the width direction of the container 2) so as not to protrude from the package 1.
- the knob 22 is preferably plate-shaped as shown in the figure, but is not limited to this.
- the spurt S is preferably made of a thermoplastic resin that can be bonded to the container 2 by heat sealing.
- the spurt S is formed of a polyolefin resin such as polyethylene (PE) or polypropylene (PP). It is preferable to
- the shape of the container 2 in the package 1 is substantially rectangular, but is not limited to this.
- various shapes as shown in FIG. 17 (b) (1) It can also be a container.
- the outer shape on both the left and right sides of the container 2 can be formed by the side cut means 120 in the packaging device M shown in FIG. 1, and the shape of the lower side of the container 2 is the shape shown in FIG.
- the container 2a formed continuously can be formed by the cutting means 104 which cuts the container 2a into a single container 2 and subdivides it.
- the web W composed of the film and the sheet constituting the front and back of the container 2 is folded in two, and an opening is formed between the film and the sheet.
- the both sides are adhered to each other to continuously form the cylindrical container 2a, and the cutting method is performed while maintaining the open state of the cylindrical container 2.
- the container was subdivided into a single container 2, and further transferred to the spart attaching process 200 while maintaining the above-mentioned open state by the transfer device 500 and the transfer conveyor 510, and the spurt S was attached to the opening at the lower end of the container 2.
- the filling material 301 in the filling / sealing step 300 is used to fill the liquid container from the upper end opening of the container 2, and the upper end opening of the container 2 is sealed with the sealing device 302 to obtain the package 1.
- the film forming the front and back of the container 2 Alternatively, a mandrel 106 as an opening forming means 105 is provided between the sheets, and the container 2 is formed continuously in a state of being opened in a cylindrical shape.
- a container 2 made of a flexible film or sheet and provided with a spurt S which is manufactured by the above-described packaging method or packaging apparatus, is filled with a container having fluidity.
- the package 1 has an opening width of the container 2 to which the spurt S is attached, with respect to the length of the side of the outer shape of the container 2 to which the spurt S is attached (length indicated by D in FIG. 12).
- the length indicated by d in Fig. 12 can be 50% or more.
- the length D of the side of the outer peripheral shape of the container 2 to which the spat S is attached may be 50 mm or less.
- Length (DZL) can be reduced to 2/5 or less.
- the opening width d of the container 2 to which the spat S is attached can be set to 50 mm or less.
- the length D of the side to which the spat S is attached is 30 mm
- the width of the seals h on both sides is 3 mm
- the spat S is The opening width d of the container 2 to be attached. Therefore, the ratio of the opening width d to the length D of the side to which the spat S is attached is 80%.
- the entire outer circumference of the peripheral wall 19 of the bonding portion 13 of the spur S is about 41 mm
- the outer peripheral length of one side of the peripheral wall 19 is about 20.5 mm.
- the packaging method or the packaging apparatus according to the present invention fills a package (container) with a small amount of a contained material such as a liquid, a paste, a jell, a sol, or other fluid article or material. It can be suitably applied to the production of products filled and sealed at a low rate.
- the package according to the present invention is suitable for, for example, oral care products, toiletry products, cosmetics, foods, pharmaceuticals, industrial products, and other products in which a relatively small amount of a fluid container is filled and sealed.
- oral care product include toothpaste, dental rinse, mouth spray, toothpaste, plaque check solution, and the like.
- toiletry products include shampoos, rinses, treatments, shaving agents, hand soaps, hand creams, body shampoos, face cleansers, hair styling agents, hair restorers, bath additives, fragrances, liquid detergents, and the like.
- cosmetics include lotion, whitening cosmetics, nail polish, liquid foundation, lip balm and the like.
- Foods include, for example, seasonings, dressings, mayonnaise, butter, jam, liquid supplements, jellies, coffee creams, and the like.
- Pharmaceuticals include, for example, ointment creams, eye drops, anti-itch agents and the like.
- Industrial products include, for example, glues, adhesives, sealing agents and the like. Further, it is also suitably used as a refill container for various products as described above, a sample container, and the like.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Ceramic Engineering (AREA)
- Making Paper Articles (AREA)
- Bag Frames (AREA)
- Supplying Of Containers To The Packaging Station (AREA)
- Packages (AREA)
- Containers And Plastic Fillers For Packaging (AREA)
Abstract
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2003-291571 | 2003-08-11 | ||
| JP2003291571A JP4360150B2 (ja) | 2003-08-11 | 2003-08-11 | 包装方法および包装装置並びに包装体 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2005014399A1 true WO2005014399A1 (fr) | 2005-02-17 |
Family
ID=34131658
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2004/011436 Ceased WO2005014399A1 (fr) | 2003-08-11 | 2004-08-09 | Procede et dispositif de conditionnement et element conditionne |
Country Status (3)
| Country | Link |
|---|---|
| JP (1) | JP4360150B2 (fr) |
| TW (1) | TW200523174A (fr) |
| WO (1) | WO2005014399A1 (fr) |
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2007105079A1 (fr) * | 2006-03-14 | 2007-09-20 | Unifill S.R.L. | Installation de thermoformage amelioree pour le moulage par soufflage et la thermosoudure de contenants |
| WO2010006943A1 (fr) * | 2008-07-18 | 2010-01-21 | Volpak, S.A.U. | Goulotte de décharge pour sacs souples |
| US8105226B2 (en) | 2006-07-31 | 2012-01-31 | Fuji Seal International, Inc. | Spout mounting method and spout |
| CN104386318A (zh) * | 2014-09-30 | 2015-03-04 | 楚天科技股份有限公司 | 一种软袋生产线 |
| CN104925281A (zh) * | 2015-06-19 | 2015-09-23 | 上海东富龙科技股份有限公司 | 一种软袋生产线 |
| CN105270659A (zh) * | 2015-10-13 | 2016-01-27 | 上海东富龙科技股份有限公司 | 一种尾灌双硬管非pvc软袋大输液自动生产线 |
| CN105480485A (zh) * | 2015-11-23 | 2016-04-13 | 长春恒驰科技有限公司 | 软袋袋型自适应生产系统、生产线和方法 |
| EP3611101A1 (fr) * | 2018-08-17 | 2020-02-19 | Volpak, S.A.U. | Machine d'emballage pour réaliser un emballage comprenant un sac en matériau souple rempli d'une dose de produit liquide ou semi-liquide |
| CN111409923A (zh) * | 2020-04-13 | 2020-07-14 | 深圳市永创自动化设备有限公司 | 导辊制膜移动扩袋包装机构及其制袋包装工艺 |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP4962885B2 (ja) * | 2006-08-08 | 2012-06-27 | 独立行政法人 宇宙航空研究開発機構 | 包装容器 |
| TW201111231A (en) | 2009-09-15 | 2011-04-01 | Gunze Kk | Flexible object insertion apparatus, and flexible object bagging apparatus |
| CN106346835B (zh) * | 2016-09-21 | 2017-05-24 | 青岛大学 | 一种用于套装大型液袋的全自动生产线 |
| WO2020219101A1 (fr) * | 2019-04-23 | 2020-10-29 | Smart Bottle, Inc. | Récipient souple et procédé pour l'installation d'un accessoire dans celui-ci |
| IT202200008192A1 (it) * | 2022-04-26 | 2023-10-26 | Poggi Pack S R L | Macchina e procedimento perfezionato per la realizzazione di un dispenser monouso con cannuccia integrata. |
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| JPS58112919A (ja) * | 1981-12-11 | 1983-07-05 | 大日本印刷株式会社 | 直方体類似容器の製造方法 |
| JP2001315718A (ja) * | 2000-02-23 | 2001-11-13 | Toyo Jidoki Co Ltd | 包装容器のシール部のシール方法、該シール方法に使用する熱処理板及びシール部の検査方法 |
| JP2001344592A (ja) * | 2000-05-31 | 2001-12-14 | Toyo Jidoki Co Ltd | キャップ取付け状態検査方法 |
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2003
- 2003-08-11 JP JP2003291571A patent/JP4360150B2/ja not_active Expired - Fee Related
-
2004
- 2004-08-09 WO PCT/JP2004/011436 patent/WO2005014399A1/fr not_active Ceased
- 2004-08-11 TW TW093124072A patent/TW200523174A/zh unknown
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS58112919A (ja) * | 1981-12-11 | 1983-07-05 | 大日本印刷株式会社 | 直方体類似容器の製造方法 |
| JP2001315718A (ja) * | 2000-02-23 | 2001-11-13 | Toyo Jidoki Co Ltd | 包装容器のシール部のシール方法、該シール方法に使用する熱処理板及びシール部の検査方法 |
| JP2001344592A (ja) * | 2000-05-31 | 2001-12-14 | Toyo Jidoki Co Ltd | キャップ取付け状態検査方法 |
Cited By (13)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2007105079A1 (fr) * | 2006-03-14 | 2007-09-20 | Unifill S.R.L. | Installation de thermoformage amelioree pour le moulage par soufflage et la thermosoudure de contenants |
| US8105226B2 (en) | 2006-07-31 | 2012-01-31 | Fuji Seal International, Inc. | Spout mounting method and spout |
| WO2010006943A1 (fr) * | 2008-07-18 | 2010-01-21 | Volpak, S.A.U. | Goulotte de décharge pour sacs souples |
| US8672182B2 (en) | 2008-07-18 | 2014-03-18 | Volpak, S.A.U. | Discharge spout for flexible bags |
| AU2009272898B2 (en) * | 2008-07-18 | 2014-05-01 | Volpak, S.A.U. | Discharge spout for flexible bags |
| CN104386318B (zh) * | 2014-09-30 | 2016-09-07 | 楚天科技股份有限公司 | 一种软袋生产线 |
| CN104386318A (zh) * | 2014-09-30 | 2015-03-04 | 楚天科技股份有限公司 | 一种软袋生产线 |
| CN104925281A (zh) * | 2015-06-19 | 2015-09-23 | 上海东富龙科技股份有限公司 | 一种软袋生产线 |
| CN105270659A (zh) * | 2015-10-13 | 2016-01-27 | 上海东富龙科技股份有限公司 | 一种尾灌双硬管非pvc软袋大输液自动生产线 |
| CN105480485A (zh) * | 2015-11-23 | 2016-04-13 | 长春恒驰科技有限公司 | 软袋袋型自适应生产系统、生产线和方法 |
| CN105480485B (zh) * | 2015-11-23 | 2018-02-06 | 长春恒驰科技有限公司 | 软袋袋型自适应生产系统、生产线和方法 |
| EP3611101A1 (fr) * | 2018-08-17 | 2020-02-19 | Volpak, S.A.U. | Machine d'emballage pour réaliser un emballage comprenant un sac en matériau souple rempli d'une dose de produit liquide ou semi-liquide |
| CN111409923A (zh) * | 2020-04-13 | 2020-07-14 | 深圳市永创自动化设备有限公司 | 导辊制膜移动扩袋包装机构及其制袋包装工艺 |
Also Published As
| Publication number | Publication date |
|---|---|
| TW200523174A (en) | 2005-07-16 |
| JP4360150B2 (ja) | 2009-11-11 |
| JP2005059880A (ja) | 2005-03-10 |
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