WO2017069327A1 - Récipient de fluide de type poche et distributeur de fluide associé - Google Patents

Récipient de fluide de type poche et distributeur de fluide associé Download PDF

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Publication number
WO2017069327A1
WO2017069327A1 PCT/KR2015/012768 KR2015012768W WO2017069327A1 WO 2017069327 A1 WO2017069327 A1 WO 2017069327A1 KR 2015012768 W KR2015012768 W KR 2015012768W WO 2017069327 A1 WO2017069327 A1 WO 2017069327A1
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WO
WIPO (PCT)
Prior art keywords
cap
fluid
nozzle
pouch
mount member
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Application number
PCT/KR2015/012768
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English (en)
Korean (ko)
Inventor
이동헌
안톤 페르뮬렌마틴
Original Assignee
주식회사 태성트레이딩
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Publication of WO2017069327A1 publication Critical patent/WO2017069327A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS 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
    • B65D51/00Closures not otherwise provided for
    • B65D51/18Arrangements of closures with protective outer cap-like covers or of two or more co-operating closures
    • B65D51/20Caps, lids, or covers co-operating with an inner closure arranged to be opened by piercing, cutting, or tearing
    • B65D51/22Caps, lids, or covers co-operating with an inner closure arranged to be opened by piercing, cutting, or tearing having means for piercing, cutting, or tearing the inner closure
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS 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
    • B65D83/00Containers or packages with special means for dispensing contents

Definitions

  • the present invention relates to a pouch-type fluid container and a fluid ejection device, and more particularly, to perforated the cap of the flexible pouch-type fluid container for liquids, fruit juices, vegetables juice, dairy products, industrial use contained in the fluid container Pouch-type fluid container and fluid ejecting device of the fluid container, which can automatically discharge the liquid used, the fluid in the gel state to the outside, and provide the user with a mixture of the discharged beverage, such as cold or hot water or carbonated water It is about.
  • the fluid dispenser is a device for automatically supplying a constant amount of the fluid stored in the fluid container.
  • a fluid ejecting device includes a storage tank for storing a fluid, a pump for receiving a control signal from a controller and pumping a fluid in the storage tank to the outside when a fluid discharge input command is applied to the controller, and a fluid discharged by the pump externally or It consists of a nozzle etc. which discharge to a use place.
  • the conventional fluid ejection device can supply only the fluid previously stored in the storage tank, there is a limit to the kind of fluid that the fluid ejection device can provide.
  • the conventional fluid dispensing device is cumbersome to use because the fluid must be transferred from the separate container containing the fluid to the storage tank of the fluid dispensing device. have.
  • the present invention is to solve the above problems, an object of the present invention is to easily mount a pouch-type fluid container to the fluid ejection device, and to automatically puncture the cap (cap) of the mounted fluid container, the fluid contained in the pouch
  • the present invention provides a pouch-type fluid container and a fluid ejecting device of the fluid container, which can be supplied to a user or place of use directly from the pouch without transferring the fluid of the pouch into the storage tank of the fluid ejecting device by automatically extracting the liquid.
  • Another object of the present invention is to install a pouch-type fluid container to the fluid ejection device to add and mix different types of fluid when the fluid in the pouch is taken out to a variety of mixed fluids to suit the user's taste or purpose of use It is to provide a fluid extraction device to supply the.
  • Pouch-type fluid container for achieving the above object, the fluid is stored therein, a flexible resin pouch having an opening formed at one end; A base cap having a hollow tube shape having one end attached to the opening of the pouch; A sealing film made of a resin material which closes the other end of the base cap; One surface is formed in an open cylindrical shape is coupled to one end of the base cap, and is formed to protrude toward the sealing film and the nozzle hole through which the fluid is discharged up and down through the center portion is formed in the vertical direction by the external force Moving and puncturing the sealing film, characterized in that it comprises a nozzle cap having a punch nozzle for discharging to the outside through the nozzle hole.
  • a pouch-type fluid container is mounted on the upper mount member and the lower mount member of the fluid ejection device, and the upper mount member and / or the lower mount member are moved relatively in the vertical direction (for example, the upper mount member is fixed). Move only the lower mount member in the up and down direction in the closed state) When the nozzle cap is moved relative to the base cap, the punch nozzle of the nozzle cap can perforate the sealing film to automatically take out the fluid.
  • the fluid contained in the pouch-type fluid container can be easily and easily taken out for drinking or use.
  • additional fluids of different types or properties may be additionally supplied through the additional fluid supply port and mixed to generate and supply a mixed fluid suitable for a user's desired taste or purpose of use.
  • the pouch-type fluid container of the present invention may be mounted and used in the fluid ejection device, the nozzle cap is manufactured in a state in which the nozzle cap is coupled to the base cap. Perforate the sealing film by moving relative to the fluid through the base cap and the sealing film may be taken out for drinking or use.
  • FIG. 1 is a longitudinal sectional view showing a pouch-type fluid container according to an embodiment of the present invention.
  • FIG. 2 is a cross-sectional view showing the base cap and the nozzle cap of the pouch-type fluid container of FIG. 1 separately.
  • FIG. 3 is a front view of the base cap and the nozzle cap of FIG.
  • FIG. 4 is a cross-sectional view illustrating an operation example of the base cap and the nozzle cap of FIG. 2.
  • FIG. 5 is a cross-sectional view illustrating main parts of another embodiment of the nozzle cap of the pouch-type fluid container according to the present invention.
  • 6A and 6B are cross-sectional and plan views showing another embodiment of the nozzle cap of the pouch-type fluid container according to the present invention.
  • FIGS. 7A to 7C are exploded cross sectional views, a bottom view, and a sectional view of an operating state, respectively, showing another embodiment of a nozzle cap of a pouch-type fluid container according to the present invention.
  • FIG. 8 is a cross-sectional view showing another embodiment of the nozzle cap of the pouch-type fluid container according to the present invention.
  • FIG. 9 is an exploded cross-sectional view showing another embodiment of the nozzle cap of the pouch-type fluid container according to the present invention.
  • FIG. 10 is a cross-sectional view illustrating an operation example of the nozzle cap of FIG. 9.
  • FIG. 11 is a cross-sectional view showing another embodiment of the nozzle cap of the pouch-type fluid container according to the present invention.
  • FIGS. 12 and 13 are cross-sectional views showing a fluid extraction device according to an embodiment of the present invention.
  • FIG. 14 is an enlarged cross-sectional view illustrating the base cap and the nozzle cap of the fluid ejection apparatus of FIG. 13.
  • FIG. 15 is a perspective view showing a fluid extraction device according to an embodiment of the present invention.
  • 16 is a perspective view showing a fluid extraction device according to another embodiment of the present invention.
  • FIG. 17 is a perspective view showing a fluid extraction device according to another embodiment of the present invention.
  • FIGS. 18 and 19 are cross-sectional views showing a fluid extraction device according to another embodiment of the present invention.
  • 20 is a cross-sectional view showing a fluid extraction device according to another embodiment of the present invention.
  • 21 is a cross-sectional view showing a fluid extraction device according to another embodiment of the present invention.
  • the present invention is a pouch type fluid that can be used for liquids, fruit juices, vegetable juices, dairy products, beverages such as gel fluids, as well as liquids or gel fluids used for industrial purposes, such as lubricants, greases and oils. It can be used to store and take out containers.
  • the upper and lower portions of the pouch type beverage container are defined and described based on the state of the pouch type beverage container shown in the drawings.
  • a pouch-type fluid container 100 includes a pouch 110 made of a flexible resin material in which a fluid is stored therein, and an upper end portion of the pouch 110.
  • the base cap 120 in the form of a hollow tube attached to the opening formed in the lower end of the sealing film 130 of the resin material for closing the lower end of the base cap 120, and the upper surface is an open cylindrical shape
  • a nozzle cap having a punch nozzle 141 coupled to the lower end of the base cap 120 to be movable upward and downward and punching the sealing film 130 and discharging the beverage discharged from the sealing film 130 to the outside. 140.
  • the pouch 110 is made of a thin, easily deformable flexible resin film such as vinyl to store a fluid such as a beverage or an industrial fluid therein.
  • the lower end of the pouch 110 is fused and sealed except for an opening in the center of the lower end to which the base cap 120 is coupled.
  • the pouch 110 may be configured by applying the pouch applied to the existing pouch type beverage container as it is.
  • the base cap 120 is made of a hard resin material, the upper end and the lower end is in the form of an open tube is firmly fixed to the center of the lower end of the pouch 110.
  • the method of attaching the base cap 120 to the pouch 110 may be performed by attaching the cap of the conventional pouch type beverage container to the pouch.
  • An upper portion of the base cap 120 is formed such that an inlet 123 is opened to allow fluid to flow therein.
  • the base cap 120 has a cap fixing groove in a ring shape along the circumferential direction on the outer surface of the middle portion so that the base cap 120 can be fitted and coupled to the structure of the fluid ejection apparatus described later, that is, the upper mount member 210 (see FIG. 12). 121) is formed.
  • a plurality of position fixing grooves 122 having a ring shape in a circumferential direction along the length direction of the base cap 120 is disposed below the base cap 120 to engage with the nozzle cap 140. That is, they are arranged at regular intervals in the vertical direction.
  • the two position fixing grooves 122 are formed at predetermined intervals in the vertical direction.
  • the sealing film 130 is made of a thin resin film, the edge portion is bonded to the lower end of the base cap 120 to seal the lower passage of the base cap 120.
  • the sealing film 130 normally seals the base cap 120 to prevent the fluid in the pouch 110 from being discharged to the outside through the base cap 120, and when the fluid cap is to be taken out, the nozzle cap 140. It is easily punched by the punch nozzle 141 to act to allow the fluid to be discharged to the outside.
  • the nozzle cap 140 is made of a hard resin material, the upper surface is made of a cylindrical body open. In the center of the lower surface of the nozzle cap 140, a conical punch nozzle 141 for puncturing the sealing film 130 is formed to protrude. In the center of the punch nozzle 141, the nozzle hole 142 for discharging the fluid discharged through the perforated sealing film 130 to the outside is formed to penetrate in the vertical direction.
  • the nozzle cap 140 is moved upward and downward by a structure configured in the fluid ejection device, that is, the lower mounting member 220 (see FIG. 12).
  • the position fixing protrusion 144 is elastically inserted into the position fixing groove 122 of the base cap 120 is formed to protrude radially inward.
  • the upper end of the nozzle cap 140 is hung by the lower mounting member 220 (see FIG. 12) configured in the fluid ejection device so that the locking protrusion 143 may move upward and downward with respect to the base cap 120. It is formed so that it may protrude in a direction outward.
  • a plurality of incision grooves 145 cut in the longitudinal direction (up and down direction) are formed at regular intervals along the circumferential direction so that the upper portion of the nozzle cap 140 may be elastically opened and closed.
  • the punch nozzle 141 is made of a conical shape that decreases in diameter toward the sealing film 130, that is, toward the upper side of the drawing. 130 can be easily drilled. When the punch nozzle 141 punctures the sealing film 130, the sealing film 130 can be more easily punctured, and in order to prevent the fluid from being suddenly discharged by sudden pressure fluctuations during the puncturing. As shown in FIG. 2, the upper end of the punch nozzle 141 is preferably formed to be inclined at a predetermined angle ⁇ in one direction.
  • the nozzle cap 140 of this embodiment discharges the fluid from the pouch 110 by drilling the sealing film 130 while moving up and down with respect to the base cap 120. At this time, the bottom inner surface (upper surface) of the nozzle cap 140 is in close contact with the lower end of the base cap 120 and the fluid does not leak to the outside.
  • the outer side of the nozzle 141 may be additionally provided with a sealing pad 146 of a flexible resin material in close contact with the outer surface of the sealing film 130 to prevent the leakage of fluid.
  • the nozzle hole 142 formed in the punch nozzle 141 may have a smooth inner circumferential surface, but as shown in FIGS. 6A and 6B, the fluid is helically discharged to the inner circumferential surface of the nozzle hole 142.
  • the fluid guide protrusion 147 may be formed spirally. As such, when the helical fluid guide protrusion 147 is formed on the inner circumferential surface of the nozzle hole 142, the fluid discharged through the nozzle hole 142 is discharged while being rotated to prevent the scattering of the fluid, and the fluid ejection device is separated from the There is an advantage that the mixing performance is also improved when mixing.
  • nozzle cap 140 of the above-described embodiment is configured to perforate the sealing film 130 while sliding in the vertical direction with respect to the base cap 120, as shown in other embodiments of Figures 7a to 7c. Only the bottom of the nozzle cap 140 in which the punch nozzle 141 is formed may be moved up and down to perforate the sealing film 130.
  • the nozzle cap 140 of this embodiment is coupled to the outer surface of the base cap 120 and the upper and lower surfaces of the cylindrical cap housing 140a and the cap housing 140 at the lower end of the cap housing 140a.
  • the nozzle plate 140b is installed to be slidable inwardly of the 140a, and the punch nozzle 141 is formed to protrude upward and downward in a central portion, the outer circumferential surface of the nozzle plate 140b and the inner circumferential surface of the cap housing 140a. It includes a plurality of connecting ribs (140c) for connecting.
  • a position fixing protrusion 144 is formed at the upper end of the cap housing 140a to be elastically inserted into and fixed to the position fixing groove 122 of the outer surface of the base cap 120 so that the position thereof does not move relative to the base cap 120. It is fixed.
  • the nozzle plate 140b is movably connected to the cap housing 140a by the packing material 140c, and when a force pushing the nozzle plate 140b upward from the outside is applied to the cap housing 140a, By sliding to puncture the sealing film 130.
  • the connecting rib 140c is arranged between the outer circumferential surface of the nozzle plate 140b and the inner circumferential surface of the cap housing 140a (four in this embodiment) at regular intervals along the circumferential direction, thereby forming the nozzle plate 140b and the cap.
  • the housing 140a is connected.
  • the connection rib 140c is broken when a force pushing the nozzle plate 140b upward from the outside is broken and the restrained state of the nozzle plate 140b is released.
  • the nozzle plate 140b is not connected by the plurality of connecting ribs 140c, and the packing material 140d is disposed between the outer circumferential surface of the nozzle plate 140b and the inner circumferential surface of the cap housing 140a. Is disposed and no external force is applied, the nozzle plate 140b is kept fixed to the cap housing 140a by the packing material 140d, and when the external force is applied to the nozzle plate 140b, the nozzle plate 140b is applied. And the packing material 140d may be configured to be able to move together inside the cap housing 140a. At this time, the packing material 140d is in close contact with the inner surface of the cap housing 140a to prevent the fluid from leaking between the nozzle plate 140b and the cap housing 140a.
  • FIGS. 9 and 10 show another embodiment of the nozzle cap 140, a cylindrical cap housing 140a to which the nozzle cap 140 is coupled to the outer surface of the base cap 120, and the cap housing (
  • the nozzle plate 140b is installed to be movable in the vertical direction at the lower end of the 140a, and the punch nozzle 141 is formed to protrude in the vertical direction at the center, and one end and the nozzle plate of the cap housing 140a.
  • 140b) is connected to each other and consists of a configuration including a deformation portion 148 buckling deformation by an external force applied to the nozzle plate.
  • the deformable portion 148 is formed to be much smaller in thickness than the cap housing 140a and the nozzle plate 140b, and when an external force is applied to the nozzle plate 140b as shown in FIG. 10, the deformable portion 148. ) Can be easily buckled and deformed so that the nozzle plate 140b can rise. At this time, the deformable portion 148 is preferably inclined at a predetermined angle with respect to the axis perpendicular to the ground (ground) can be easily buckling deformation.
  • Figure 11 shows another embodiment of the nozzle cap 140 of the present invention, the outer surface of the bottom of the nozzle cap 140 when the fluid is discharged to the outside through the nozzle hole 142 of the punch nozzle 141
  • the fluid retaining prevention protrusion 149 in a ring shape may be formed to protrude downward along the outer circumference of the nozzle hole 142 of the punch nozzle 141 so that no fluid remains.
  • the base cap 120 and the nozzle in a state in which the pouch 110 is located above and the base cap 120 and the nozzle cap 140 are located below.
  • the upper mount member 210 and the lower mount member 220 coupled to each other while the cap 140 is inserted, and the upper mount member 210 and the lower mount so that the punch nozzle 141 punctures the sealing film 130.
  • Lifting means for relatively moving at least one or more of the members 220 in the vertical direction.
  • the upper mount member 210 will be kept in a fixed state at all times, and only the lower mount member 220 will be described as moving in the vertical direction by the lifting means.
  • the lifting means for moving the lower mount member 220 up and down may be configured using a known linear motion device, for example, a pneumatic cylinder or a hydraulic cylinder, or a linear motor, a motor and a ball screw. And a motor, a plurality of pulleys, a power transmission belt, a motor, a plurality of gears, and the like.
  • a known linear motion device for example, a pneumatic cylinder or a hydraulic cylinder, or a linear motor, a motor and a ball screw.
  • the upper mount member 210 is installed to be fixed to the main body of the fluid ejection device, and has a U-shaped coupling groove 211 whose one side is opened to be coupled by relatively moving horizontally from the side of the base cap 120. do.
  • the lower mount member 220 includes a U-shaped coupling groove 221 having one side open to be coupled by horizontally moving relative to the side of the nozzle cap 140.
  • a user may use the base cap 120 and the nozzle cap 140 of the pouch-type fluid container 100 to engage the coupling groove 221 of the upper mounting member 210 and the coupling groove 221 of the lower mounting member 220.
  • the base cap 120 is fitted into the coupling groove 211 of the upper mount member 210 and the nozzle is coupled to the coupling groove 221 of the lower mount member 220.
  • Cap 140 is fitted and coupled.
  • the edge of the coupling groove 211 of the upper mount member 210 is inserted into the cap fixing groove 121 of the base cap 120, the base cap 120 is coupled, the lower mount member ( The edge of the coupling groove 221 of the 220 is coupled while being fitted directly under the locking projection 143 of the top of the nozzle cap 140. Therefore, in this state, when the lower mount member 220 is raised, the nozzle cap 140 is raised while the edge of the coupling groove 221 is caught by the locking protrusion 143, and the punch nozzle of the nozzle cap 140 is formed. The 141 may puncture the sealing film 130 to extract the fluid in the pouch 110 to the outside.
  • both the upper mount member 210 and the lower mount member 220 are formed with U-shaped coupling grooves 211 and 221 so that the base cap 120 and the nozzle cap 140 are the upper mount member 210. And relative to the side mounting horizontally relative to the lower mounting member 220.
  • the upper mount member 210 has a structure having a U-shaped coupling groove 211 having one side open as in the previous embodiment, and the lower mount member. 220 may be made of a structure having a coupling groove 221 is formed from the lower side of the nozzle cap 140 is made of an open cylindrical upper surface.
  • the upper mount member 210 may be configured to horizontally move laterally with respect to the lower mount member 220 by a separate linear movement device (for example, pneumatic cylinder, etc.).
  • a separate linear movement device for example, pneumatic cylinder, etc.
  • the lower mount member 220 has the same structure as the lower mount member 220 of FIG. 16, and the upper mount member 210 is installed to face each other and is symmetrical in shape. It consists of two pairs having two, two upper mount member 210 is configured to be horizontally moved by a linear movement device is coupled to both sides of the base cap 120 by moving horizontally on both sides of the base cap 120 It may be possible.
  • the other fluid is mixed with the fluid to improve the user's satisfaction or double the performance of the industrial product.
  • a beverage when a beverage is stored in a pouch-type fluid container and the beverage in the pouch 110 is taken out, carbonated water, cold water, hot water, and purified water are mixed with the beverage taken out of the pouch 110 to the user's taste. It can provide a mixed drink according to.
  • the lower mount member 220 At least one additional fluid supply ports (223a, 223b, 223c) is formed in communication with the lower portion of the portion where the nozzle cap 140 is installed, the additional fluid supply ports (223a, 223b, 223c) is carbonated water, It is connected to the fluid supply means for supplying a fluid having a different or different properties from the fluid stored in the pouch 110, such as hot water, cold water, purified water, oil, grease, carbonated water, the lower side of the nozzle cap 140, Alternatively, additional fluids such as hot water, cold water, purified water, oil, grease, and the like may be supplied and mixed with the fluid discharged through the punch nozzle 141 of the nozzle cap 140.
  • the lower mount member 220 may be mixed with the fluid taken out of the pouch-type fluid container 100 and the additional fluid supplied through the additional fluid supply ports 223a, 223b, and 223c.
  • An inclined surface that is inclined toward the lower portion of the nozzle cap 140 is formed, and outer ends of the plurality of additional fluid supply ports 223a, 223b, and 223c are preferably communicated with the outside through the inclined surface.
  • the type of fluid added when the fluid is added through the additional fluid supply ports 223a, 223b, and 223c may be determined by a user
  • the fluid stored in the pouch-type fluid container 100 mounted on the fluid ejection device The type of fluid to be added may be determined by automatically recognizing the type of.
  • the lower mount member 220 may be provided with an optical sensor (224) for detecting the color of the nozzle cap 140 of the pouch-type fluid container 100.
  • the optical sensor 224 is installed in the vicinity of the coupling groove 221 to which the nozzle cap 140 is fitted to the controller (not shown) to detect the color of the nozzle cap 140 to control the operation of the fluid supply means. Send a sense signal.
  • the controller determines the fluid to be added according to the color of the nozzle cap 140 sensed by the optical sensor 224 and controls the operation of the fluid supply means to control the fluid through the additional fluid supply ports 223a, 223b, and 223c. Supply.
  • the fluid dispensing apparatus of the present invention when the fluid dispensing apparatus of the present invention is applied as a beverage dispenser, hot drink is supplied when the nozzle cap 140 of the pouch-type fluid container 100 is red, and the nozzle cap 140 is If Blue, Cold Drink, If Nozzle Cap 140 is Green, Ambient Temperaure Drink is supplied. If Nozzle Cap 140 is Silver, Sparkling is added. Feed as.
  • the fluid ejection device of the present invention is applied to an industrial oil supply device, the oil is oil when the color of the nozzle cap 140 is brown, and the grease is yellow when the color of the nozzle cap 140 is yellow. grease can be supplied as an additive fluid.
  • FIGS. 18 and 19 When the fluid ejection apparatus of the present invention is applied to industrial equipment, a supply port for supplying additional additional fluid to the lower mount member 220 on which the nozzle cap 140 is mounted is illustrated as shown in FIGS. 18 and 19. It may not be.
  • the fluid ejection device of the present invention by pressing the pouch 110 on both sides of the pouch 110 of the pouch-type fluid container 100, the fluid in the pouch 110 is further It may be configured to further include a pressing unit to be taken out smoothly.
  • the pressing unit is composed of a pair of pressing rollers 231 for pressing the contents of the pouch 110 while rolling along the pouch 110 at both sides of the pouch 110 as shown in FIG. As shown, it may be made of a pair of pressing plate 232 made of a curved surface to press the pouch 110 while turning on both sides of the pouch 110.
  • the pouch-type fluid container 100 is mounted on the upper mount member 210 and the lower mount member 220, and the upper mount member 210 and / or the lower mount member 220 are mounted.
  • the upper mount member 210 is moved only in the up and down direction in the fixed state in the fixed state
  • the nozzle cap 140 to the base cap 120 Raising relative to the perforated sealing film 130 may take out the fluid.
  • the fluid contained in the pouch-type fluid container 100 can be easily taken out to drink or use.
  • the pouch-type fluid container 100 When all the fluid in the pouch 110 is removed, the pouch-type fluid container 100 is separated from the upper mount member 210 and the lower mount member 220, and the lower mount member 220 is returned to its original position.
  • the new pouch-type fluid container 100 may be attached to the upper mount member 210 and the lower mount member 220 to extract the fluid.
  • the nozzle cap 140 is manufactured while being coupled to the base cap 120, so that a person hands the pouch-type fluid container 100. And press the nozzle cap 140 to allow the nozzle cap 140 to move relative to the base cap 120 to perforate the sealing film 130, and the fluid to the outside through the base cap 120 and the sealing film 130. It can be taken out and drink or used.
  • the present invention can be applied to an apparatus for preparing a beverage or a beverage dispenser.

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  • Mechanical Engineering (AREA)
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Abstract

La présente invention concerne un récipient de fluide de type poche et un distributeur de fluide associé qui peut perforer un bouchon du récipient de fluide de type poche souple pour distribuer automatiquement le fluide (comme une boisson, une huile industrielle et autres), du récipient de fluide vers l'extérieur et qui peut mélanger le fluide distribué avec un autre fluide (tel que de l'eau chaude/froide, de l'eau gazeuse, et autres) pour fournir le mélange à un utilisateur. Selon la présente invention, le récipient de fluide de type poche comprend : une poche (110) faite d'un matériau de résine souple dans laquelle est stocké un fluide; un bouchon de base (120) ayant une forme tubulaire creuse et fixé, au niveau de la portion d'extrémité supérieure de celui-ci, à une ouverture formée à travers la portion d'extrémité inférieure de la poche (110); un film d'étanchéité (130) fait d'un matériau de résine qui ferme la portion d'extrémité inférieure du bouchon de base (120); et un bouchon de buse (140) ayant une forme cylindrique ouverte sur le dessus et couplé à la portion d'extrémité inférieure du bouchon de base (120) de manière à être mobile vers le haut et vers le bas, le bouchon de buse (140) ayant une buse à poinçon (141) pour perforer le film d'étanchéité (130) et distribuer, vers l'extérieur, une boisson s'écoulant à travers le film d'étanchéité (130).
PCT/KR2015/012768 2015-10-21 2015-11-26 Récipient de fluide de type poche et distributeur de fluide associé WO2017069327A1 (fr)

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KR1020150146747A KR101608014B1 (ko) 2015-10-21 2015-10-21 파우치형 유체 용기 및 그 유체 용기의 유체 취출장치
KR10-2015-0146747 2015-10-21

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CA3057083A1 (fr) * 2017-03-20 2018-09-27 Liqui-Box Corporation Mecanisme de distribution de type pompe destine a un emballage de produit fluide

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KR20120085279A (ko) * 2009-10-16 2012-07-31 가부시끼가이샤 제이엠에스 캡, 및 그것을 이용한 영양제용 용기 및 영양제 공급 세트
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JP2013136176A (ja) * 2011-12-28 2013-07-11 Yokohama Rubber Co Ltd:The パンク修理キット

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