EP4240668A1 - Flexible bag dispensing container with vents - Google Patents
Flexible bag dispensing container with ventsInfo
- Publication number
- EP4240668A1 EP4240668A1 EP21811205.0A EP21811205A EP4240668A1 EP 4240668 A1 EP4240668 A1 EP 4240668A1 EP 21811205 A EP21811205 A EP 21811205A EP 4240668 A1 EP4240668 A1 EP 4240668A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- flexible bag
- dispensing container
- vent
- bag dispensing
- seal
- 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.)
- Pending
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
- B65D33/00—Details of, or accessories for, sacks or bags
- B65D33/01—Ventilation or drainage of bags
-
- 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
- B65D77/00—Packages formed by enclosing articles or materials in preformed containers, e.g. boxes, cartons, sacks or bags
- B65D77/22—Details
- B65D77/225—Pressure relief-valves incorporated in a container wall, e.g. valves comprising at least one elastic element
-
- 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
- B65D35/00—Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor
- B65D35/02—Body construction
-
- 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
- B65D51/00—Closures not otherwise provided for
- B65D51/16—Closures not otherwise provided for with means for venting air or gas
- B65D51/1605—Closures not otherwise provided for with means for venting air or gas whereby the interior of the container is maintained in permanent gaseous communication with the exterior
-
- 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
- B65D83/00—Containers or packages with special means for dispensing contents
-
- 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
- B65D2205/00—Venting means
- B65D2205/02—Venting holes
Definitions
- the present disclosure relates to flexible bag dispensing containers, in particular, to flexible bag dispensing containers configured to store and discharge a liquid material therefrom.
- the flexible cartridges can be collapsed, filled, and closed for storage and/or transportation.
- gases can become entrapped therein.
- the entrapped gases may, in some circumstances, react negatively or undesirably with a product disposed in the flexible cartridge.
- the gases may be compressible such that when a product disposed in the flexible cartridge is dispensed under pressure, the gases compress, and when pressure is released, dispensing of the product may continue as the gases decompress. Therefore, entrapment of gases may be undesirable in certain applications.
- a vacuum may be utilized, though this may add unnecessary complexities.
- a flexible bag dispensing container includes a first end. The first end defines a port. The port is configured to transfer a liquid material. The port is configured to transfer the liquid material between an interior space of the flexible bag dispensing container and an exterior of the flexible bag dispensing container.
- the flexible bag dispensing container also includes a second end. The second end is spaced apart from the first end.
- the flexible bag dispensing container further includes a flexible wall. The flexible wall extends between the first end and the second end. The flexible wall defines the interior space of the flexible bag dispensing container.
- the flexible bag dispensing container further includes a seal. The seal is defined at the second end.
- the seal seals the second end so as to prevent the liquid material from discharging through the seal.
- the flexible bag dispensing container further includes at least one vent.
- the at least one vent is configured to permit gases entrapped in the interior space to discharge therethrough to the exterior of the flexible bag dispensing container.
- An inner surface that defines the at least one vent is tapered.
- the inner surface that defines the at least one vent is tapered as the at least one vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container.
- the flexible bag dispensing container in another example, includes a first end. The first end defines a port. The port is configured to transfer a liquid material. The port is configured to transfer the liquid material between an interior space of the flexible bag dispensing container and an exterior of the flexible bag dispensing container.
- the flexible bag dispensing container also includes a second end. The second end is spaced apart from the first end.
- the flexible bag dispensing container further includes a flexible wall. The flexible wall extends between the first end and the second end. The flexible wall defines the interior space of the flexible bag dispensing container.
- the flexible bag dispensing container further includes a seal. The seal is defined at the second end.
- the seal seals the second end so as to prevent the liquid material from discharging through the seal.
- the flexible bag dispensing container further comprises a malleable tube.
- the malleable tube is disposed in the seal.
- the malleable tube defines at least one vent.
- the at least one vent defined by the malleable tube is configured to permit gases entrapped in the interior space to discharge therethrough to the exterior of the flexible bag dispensing container.
- the flexible bag dispensing container includes a first end.
- the first end defines a port.
- the port is configured to transfer a liquid material.
- the port is configured to transfer the liquid material between an interior space of the flexible bag dispensing container and an exterior of the flexible bag dispensing container.
- the flexible bag dispensing container also includes a second end. The second end is spaced apart from the first end.
- the flexible bag dispensing container further includes a flexible wall.
- the flexible wall extends between the first end and the second end.
- the flexible wall defines the interior space of the flexible bag dispensing container.
- the flexible bag dispensing container further includes a seal. The seal is defined at the second end.
- the seal seals the second end so as to prevent the liquid material from discharging through the seal.
- the flexible bag dispensing container further comprises a bleeder valve.
- the bleeder valve defines at least one vent.
- the at least one vent defined by the bleeder valve is configured to permit gases entrapped in the interior space to discharge therethrough to the exterior of the flexible bag dispensing container.
- the flexible bag dispensing container includes a first end.
- the first end defines a port.
- the port is configured to transfer a liquid material.
- the port is configured to transfer the liquid material between an interior space of the flexible bag dispensing container and an exterior of the flexible bag dispensing container.
- the flexible bag dispensing container also includes a second end. The second end is spaced apart from the first end.
- the flexible bag dispensing container further includes a flexible wall.
- the flexible wall extends between the first end and the second end.
- the flexible wall defines the interior space of the flexible bag dispensing container.
- the flexible bag dispensing container further includes a seal. The seal is defined at the second end.
- the seal seals the second end so as to prevent the liquid material from discharging through the seal.
- the seal has an inner edge at the interior space.
- the flexible bag dispensing container further includes at least one vent.
- the at least one vent is configured to permit gases entrapped in the interior space to discharge therethrough to the exterior of the flexible bag dispensing container.
- At least a portion of the inner edge of the seal is tapered. The portion of the inner edge of the seal tapers toward the first end. The portion of the inner edge of the seal tapers toward the first end as the portion extend away from the at least one vent.
- Another example is a method of forming a flexible bag dispensing container.
- the flexible bag dispensing container has a first end. The first end defines a port.
- the flexible bag dispensing container also has a second end. The second end is spaced apart from the first end.
- the flexible bag dispensing container further has a flexible wall.
- the flexible wall extends between the first end and the second end.
- the flexible wall defines an interior space of the flexible bag dispensing container.
- the interior space is configured to hold a liquid material therein.
- the method includes sealing the second end of the flexible bag dispensing container. The seal seals the second end so as to prevent the liquid material from discharging through the seal.
- the method further includes forming at least one vent.
- the at least one vent is configured to permit gases entrapped in the interior space to discharge therethrough to an exterior of the flexible bag dispensing container.
- the forming step includes at least one of the following substeps: (a) forming the at least one vent such that an inner surface that defines the at least one vent is tapered as the at least one vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container; (b) disposing a malleable tube in the seal such that the malleable tube defines the at least one vent; (c) forming the at least one vent in the form of a bleeder valve; (d) forming the at least one vent as first and second vents, the first vent defining a first centerline as the first vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container and the second vent defining a second centerline as the second vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container, the first and second centerlines being substantially parallel to one another
- the flexible bag dispensing container includes a first end.
- the first end defines a port.
- the port is configured to transfer a liquid material.
- the port is configured to transfer the liquid material between an interior space of the flexible bag dispensing container and an exterior of the flexible bag dispensing container.
- the flexible bag dispensing container also includes a second end. The second end is spaced apart from the first end.
- the flexible bag dispensing container further includes a flexible wall.
- the flexible wall extends between the first end and the second end.
- the flexible wall defines the interior space of the flexible bag dispensing container.
- the flexible bag dispensing container further includes a seal. The seal is defined at the second end.
- the flexible bag dispensing container further includes first and second vents. Each of the first and second vents are configured to permit gases entrapped in the interior space to discharge therethrough to the exterior of the flexible bag dispensing container.
- the first vent defines a first centerline as the first vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container.
- the second vent defines a second centerline as the second vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container.
- the first and second centerlines are substantially parallel to one another.
- FIG. 1 A shows a perspective view of a flexible bag dispensing container according to one example
- FIG. IB shows a perspective cross-sectional view of the flexible bag dispensing container of FIG. 1A
- FIG. 2 shows a perspective view of the flexible bag dispensing container of FIG. 1 A in a collapsed configuration (i.e., after liquid material and/or entrapped gases have been discharged therefrom);
- FIG. 3A shows a front view of a flexible bag dispensing container according to one example with three tapered vents
- FIG. 3B shows a front cross-sectional view of a second end of the flexible bag dispensing container of FIG. 3 A;
- FIG. 4A shows a front view of a flexible bag dispensing container according to one example with a pair of tapered vents
- FIG. 4B shows a front cross-sectional view of a second end of the flexible bag dispensing container of FIG. 4A;
- FIG. 5 A shows a front view of a flexible bag dispensing container according to one example with one tapered vent and a radial inner edge;
- FIG. 5B shows a front cross-sectional view of a second end of the flexible bag dispensing container of FIG. 5 A;
- FIG. 6A shows a front view of a flexible bag dispensing container according to one example with one tapered vent and a tapered or stepped inner edge;
- FIG. 6B shows a front cross-sectional view of a second end of the flexible bag dispensing container of FIG. 6A;
- FIG. 7A shows a front view of a flexible bag dispensing container according to one example with an extension
- FIG. 7B shows a front cross-sectional view of a second end of the flexible bag dispensing container of FIG. 7A;
- FIG. 8A shows a front cross-sectional view of a second end of a flexible bag dispensing container according to one example with three straight vents, with two of the straight vents positioned at the comers of the seal;
- FIG. 8B shows a front cross-sectional view of a second end of a flexible bag dispensing container according to one example with one straight vent and two tapered vents, with the tapered vents positioned at the comers of the seal;
- FIG. 9A shows a perspective view of a flexible bag dispensing container according to one example with two malleable tubes each defining a vent;
- FIG. 9B shows a perspective cross-sectional view of a second end of the flexible bag dispensing container of FIG. 9A;
- FIG. 10A shows a perspective view of a flexible bag dispensing container according to one example with a bleeder valve defining a vent;
- FIG. 10B shows a perspective cross-sectional view of a second end of the flexible bag dispensing container of FIG. 10A;
- FIG. 10C shows a shows a perspective view of the flexible bag dispensing container of FIG. 10A including a sleeve
- FIG. 11 A shows a perspective view of a second end of a flexible bag dispensing container according to one example
- FIG. 1 IB shows a front cross-sectional view of the second end of the flexible bag dispensing container of FIG. 11 A;
- FIG. 12 shows a front cross-sectional view of a first end of a flexible bag dispensing container according to one example.
- the flexible bag dispensing containers described herein may generally be configured to contain a liquid material, to be sealed so as to prevent the liquid material from being discharged (e.g., through a seal formed in the flexible bag dispensing container), and to discharge entrapped gases from the flexible bag dispensing container (e.g., via a vent formed in the flexible bag dispensing container).
- the flexible bag dispensing containers of the present disclosure can be used in a variety of applications as will be readily appreciated by those skilled in the art.
- the foregoing may be used to contain a liquid material, such as an adhesive or an epoxy.
- the flexible bag dispensing containers may be configured to contain and dispense the liquid material, such as when used in conjunction with a dispensing system (e.g., a cartridge system).
- gases entrapped within the flexible bag dispensing container may be discharged therefrom (e.g., via a port and/or a vent formed in the flexible bag dispensing container) as the flexible bag dispensing container is at least partially filled with the liquid material and/or after the flexible bag dispensing container is at least partially filled with the liquid material.
- gases entrapped within the flexible bag dispensing container may be discharged therefrom (e.g., via a port and/or a vent formed in the flexible bag dispensing container) as the flexible bag dispensing container is at least partially filled with the liquid material and/or after the flexible bag dispensing container is at least partially filled with the liquid material.
- it may be desirable in certain applications to discharge gases entrapped within the flexible bag dispensing container e.g., via a port and/or a vent of the flexible bag dispensing container so as to at least partially collapse the flexible bag dispensing container, such as for storage and/or transportation.
- gases entrapped within the flexible bag dispensing container may be discharged before and/or after the flexible bag dispensing container receives a liquid material. Discharging the entrapped gases during filling or prior to use of the flexible bag dispensing container can limit, or prevent altogether, situations in which the liquid material disposed in the flexible bag dispensing container could react negatively or undesirably with entrapped gases. Further, discharging the entrapped gases during filling or prior to use of the flexible bag dispensing container can limit, or prevent altogether, situations in which entrapped gases within the flexible bag dispensing container can be compressed during filling of the flexible bag dispensing container.
- These compressed gases can then expand during a dispense operation of the flexible bag dispensing container (e.g., as the liquid material is dispensed from the flexible bag dispensing container) such that the expanding gases cause the liquid material to continue to dispense after the dispense operation is complete.
- the flexible bag dispensing container 100 may include a flexible wall 130.
- the flexible wall 130 may generally define an interior space 120 of the flexible bag dispensing container 100.
- the interior space 120 is configured to hold or otherwise contain a liquid material therein.
- the interior space 120 may be filled with the liquid material such that the interior space 120 holds or otherwise contains the liquid material therein.
- the flexible wall 130 may be formed from a film, such as a multilayer film.
- the flexible wall 130 may generally be made of any material suitable for containing the liquid material in the interior space 120 defined thereby.
- the flexible wall 130 may be made from monolayer film, coextruded film, laminated film, or combinations thereof.
- the flexible wall 130 may be made of a coextruded film made of the following layers: linear low-density polyethylene (LLDPE); Nylon- ethylene vinyl alcohol (EVOH)-Nylon-LLDPE.
- the flexible wall 130 may include a film (e.g., a coextruded film) laminated to ethylene acrylic acid copolymer (EAA), foil, an adhesive, medium-density polyethylene (MDPE), or combinations thereof.
- the flexible wall 130 may be made from a single or multi-layer material.
- the flexible wall 103 may be formed from a high-strength material.
- the flexible wall 130 may, in certain examples, provide barrier properties against oxygen and/or moisture permeation to preserve shelflife stability.
- the flexible wall 130 may be inert to the liquid material disposed in the interior space 120.
- the flexible wall 130 may extend between a first end 106 of the flexible bag dispensing container 100 and a second end 108 of the flexible bag dispensing container 100 that is spaced from the first end 106.
- the flexible wall 130 may define the second end 108 of the flexible bag dispensing container 100.
- the first end 106 of the flexible bag dispensing container 100 may define a port 110.
- the port 110 may generally be configured to transfer the liquid material between the interior space 120 of the flexible bag dispensing container 100 and an exterior 122 of the flexible bag dispensing container 100.
- the port 110 may, in certain examples, be configured to receive the liquid material therethrough (e.g., for storage of the liquid material) and/or to dispense the liquid material therethrough.
- the flexible bag dispensing container 100 can comprise a cap 110a that is configured to seal the port 110, such as for storage and/or transportation.
- the cap 110a may seal the first end 106 of the flexible bag dispensing container 100 so as to prevent the liquid material from discharging therethrough until it is desirable to dispense or other discharge the liquid material (e.g., via the port 110).
- the cap 110a may be threaded or otherwise releasably connected to the first end 106 of the flexible bag dispensing container 100 such that liquid material disposed in the flexible bag dispensing container 100 is prevented from being discharged through the port 110.
- the threads of the cap 110a may be external threads configured to engage internal threads defined by an interior surface of the port 110.
- the threads of the cap 110a may be internal threads configured to engage external threads of the port 110.
- the flexible bag dispensing container 100 can comprise a faceplate 110b that defines the port 110.
- the faceplate 110b can be more rigid than the flexible wall 130.
- the faceplate 110b may, in certain examples, be integrally molded to or formed with the flexible wall 130.
- the faceplate 110b can optionally include a nosepiece 1 lOd extending from a first face of the faceplate 110b in a direction that extends from the second end 108 toward the first end 106 of the flexible bag dispensing container 100.
- the nosepiece 1 lOd can define the port 110.
- the faceplate 110b can optionally include a flange 1 lOe extending from a second face of the faceplate 110b in a direction that extends from the first end 106 toward the second end 108 of the flexible bag dispensing container 100.
- the cap 110a can be releasably attachable to the nosepiece 1 lOd with corresponding threads to releasably seal the port 110.
- the faceplate 110b may be formed through injection molding around the flexible wall 130. A resin forming the faceplate 110b may be injected in a molten state and melt an outer surface of the flexible wall 130.
- the resin may be the same or substantially the same composition as the outer surface of the flexible wall 130, and the outer surface of the flexible wall 130 and the flange 1 lOe may intermix at an interface.
- the faceplate 110b and the outer layer of the flexible wall 130 may then solidify to form an integrated structure of essentially uniform composition having no distinct layers at the interface.
- the faceplate 110b may be molded to the circumference of the flexible wall 130. It will be understood that, in alternative examples, the flexible wall 130 and faceplate 110b can be affixed to one another in any other suitable manner, including manners that do not include injection molding.
- the flexible bag dispensing container 100 may include a seal 140.
- the seal 140 may be defined at the second end 108 of the flexible bag dispensing container 100.
- the seal 140 may seal the second end 108 of the flexible bag dispensing container 100 so as to prevent the liquid material from discharging through the seal 140.
- the seal 140 may be formed by any suitable technique as will be appreciated by those skilled in the art.
- the seal 140 may be formed by applying heat or pressure or both, such as to the second end 108 of the flexible bag dispensing container 100, so as to effectively flatten and attach the flexible wall 130 to itself at the second end 108.
- an adhesive e.g., a pressure-sensitive adhesive
- the seal 140 may be of any suitable size and/or shape to suit a particular application.
- the seal 140 may have a cross-sectional dimension (e.g. a thickness) of from about 1.5mm to about 3.5mm.
- the flexible bag dispensing container 100 is illustrated in a collapsed or partially collapsed configuration, such as for storage and/or transportation.
- the flexible bag dispensing container 100 may be at least partially, such as fully, collapsed before the flexible bag dispensing container 100 is filled with the liquid material. In such situations, any gases entrapped within the interior space 120 of the flexible bag dispensing container 100 may be discharged therefrom, as described in greater detail herein.
- the flexible bag dispensing container 100 may also be at least partially collapsed after the liquid material is dispensed or otherwise discharged from the flexible bag dispensing container 100.
- any gases entrapped within the interior space 120 of the flexible bag dispensing container 100 may be discharged therefrom, as described in greater detail herein.
- the flexible bag dispensing container 100 When the flexible bag dispensing container 100 is in the collapsed or partially collapsed configuration, at least a portion of the flexible wall 130 may be received into the faceplate 110b, such as in the flange 1 lOe of the faceplate 110b as illustrated in FIG. 2. In this way, the flexible bag dispensing container 100 may generally have a smaller footprint when in the collapsed or partially collapsed configuration, which may be useful for more efficient storage, transportation, and/or disposal of the flexible bag dispensing container 100.
- the flexible bag dispensing container 100 may include one or more vents 150.
- the vent(s) 150 may be configured to permit gases entrapped in the interior space 120 to discharge therethrough to the exterior 122 of the flexible bag dispensing container 100.
- the vent(s) 150 may be configured to permit the entrapped gases to discharge therethrough without permitting the liquid material to discharge therethrough.
- the vent(s) 150 may be configured to be sealed closed after permitting the entrapped gases to discharge therethrough to the exterior 122 of the flexible bag dispensing container 100.
- the vent(s) 150 may be sealed closed by any suitable technique, such as by applying heat or pressure or both, by crimping, and/or by applying ultrasonic vibration to sealingly close the vent(s) 150.
- the vent(s) 150 may remain open after the flexible bag dispensing container 100 is at least partially filled with the liquid material.
- the vent(s) 150 may be of a size and shape that permits gases to pass through the vents without permitting the liquid material to pass therethrough.
- the size and/or the shape of the vent(s) 150 may be determined based on a viscosity of the liquid material. For example, higher viscosity materials are generally thicker than lower viscosity materials and hence flow more slowly than lower viscosity materials.
- the vent(s) 150 may have a larger cross-sectional dimension for liquid materials having higher viscosities than for liquid materials having lower viscosities.
- the vent(s) 150 may be open or closed after the flexible bag dispensing container 100 is at least partially filled with the liquid material, such as depending on the chemistry and/or rheology of the liquid material. Some liquid materials may effectively selfseal when exposed to air and/or some liquid materials may have a viscosity that is so high that such liquid materials are incapable of discharging through the vent(s) 150 to the exterior 122 of the flexible bag dispensing container 100.
- the vent(s) 150 may generally be formed by any suitable technique.
- vent(s) 150 when one or more of the vents 150 is defined by and/or in the seal 140, such vent(s) 150 may be formed by selectively preventing the application of heat and/or pressure in one or more discrete areas of the seal 140, thereby defining the one or more vents 150.
- each of the multiple vents 150 may be similarly structured, such as is illustrated and will be described with respect to FIGS. 3A-4B and FIGS. 8A-9B.
- the vents 150 need not be structurally similar to one another.
- the flexible bag dispensing container 100 may, in certain examples, include multiple vents 150, any one or more of which may be structured as illustrated and described herein, including combinations thereof.
- the vent(s) 150 may be of any suitable size, shape, and/or number to suit a particular application.
- the flexible bag dispensing container 100 may include one, two, three, or four or more vents 150.
- the vent(s) 150 may have a length of about 9mm, as measured from an inlet 156 to an outlet 158 of the vent(s) 150.
- the vent(s) 150 may have a cross-sectional dimension (e.g., a width) of from about 1mm to about 2.5mm.
- the vent(s) 150 may have a cross-sectional dimension (e.g., a height) of about 0.13mm.
- FIG. 3 A and FIG. 3B show the flexible bag dispensing container 100 according to one example in which the flexible bag dispensing container 100 includes three vents 150a, 150b, and 150c.
- the vents 150a-150c extend through the seal 140 and are defined by (i. e. , formed in) the seal 140, although other examples are not so limited.
- vents 150a are defined by an inner surface 152. Vent 150a also includes an inlet 156 at the interior space 120 of the flexible bag dispensing container 100.
- Vent 150a further includes an outlet 158 at the exterior 122 of the flexible bag dispensing container 100.
- the inner surface 152 of vent 150a is tapered as vent 150a extends in a direction from the interior space 120 of the flexible bag dispensing container 100 to the exterior 122 of the flexible bag dispensing container 100, although other examples are not so limited.
- the inner surface 152 of vent 150a is tapered as vent 150a extends from the inlet 156 to the outlet 158 thereof, although other examples are not so limited.
- the inner surface 152 of vent 150a is tapered outwardly, such that the inlet 156 of vent 150a has a cross-sectional dimension that is less than a cross-sectional dimension of the outlet 158 of vent 150a.
- vent 150a illustrated in FIG. 3A and FIG. 3B is defined by an inner surface 152 that tapers outwardly
- the vent(s) 150 of the flexible bag dispensing containers 100 described herein may be defined by inner surface(s) 152 that taper inwardly (i.e., such that the inlet 156 has a smaller cross-sectional dimension than the outlet 158), that taper outwardly (i.e., such that the inlet 156 has a larger cross-sectional dimension than the outlet 158), or that are not tapered (i.e., such that the inlet 156 has a cross-sectional dimension substantially equal to that of the outlet 158).
- the extent to which the inner surface(s) 152 taper may be selected to suit a particular application. For example, it has been found that an outwardly -tapering inner surface 152 (i.e., such that the inlet 156 has a smaller cross-sectional dimension than the outlet 158) may assist in configuring the vent 150 to permit entrapped gases to discharge therethrough without permitting liquid material to discharge therethrough. Put another way, the tapering and/or the shape of the vent(s) 150 may be selected so as to inhibit the liquid material from being discharged through the vent(s).
- the vents 150a, 150b, and 150c in this example may be tapered outwardly such that the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 2.5mm, although other examples are not so limited.
- the inner surface 152 of the vent 150 may at least partially define anon-linear passageway, such as a serpentine passageway, between the inlet 156 and outlet 158 of the vent 150.
- the seal 140 may include a first comer 142 at a first side 102 of the flexible bag dispensing container 100.
- the seal 140 may further include a second comer 144 at a second side 104 of the flexible bag dispensing container 100.
- the second side 104 of the flexible bag dispensing container 100 may generally be spaced from the first side 102 of the flexible bag dispensing container 100, such that the first and second comers 142, 144 of the seal 140 are spaced from one another.
- the seal 140 may include a midpoint 141.
- the midpoint 141 of the seal 140 is generally positioned midway between the first and second comers 142, 144 of the seal 140.
- vent(s) 150 may be positioned between the first and second comers 142, 144 of the seal 140.
- each of vents 150a-150c are positioned between the first and second comers 142, 144 of the seal 140.
- vent 150a is positioned closer to the second comer 144 of the seal 140 than the midpoint 141
- vent 150b is positioned substantially centrally between the first and second comers 142, 144 of the seal 140 (e.g., at the midpoint 141 of the seal 140)
- vent 150c is positioned closer to the first comer 142 of the seal 140 than the midpoint 141.
- the seal 140 may include an inner edge 148 at the interior space 120 of the flexible bag dispensing container 100.
- the inner edge 148 of the seal 140 may be substantially linear as the inner edge 148 extends toward the first and second comers 142, 144 of the seal 140 and/or as the inner edge 148 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the inlet 156 of the vent 150 may be defined in the inner edge 148 of the seal 140, although other examples are not so limited.
- the seal 140 may include an outer edge 146 at the exterior 122 of the flexible bag dispensing container 100.
- the outer edge 146 of the seal 140 may be substantially linear as the outer edge 146 extends between the first and second comers 142, 144 of the seal 140 and/or as the outer edge 146 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the seal 140 may be in the form of a flat seal.
- the outlet 158 of the vent 150 may be defined in the outer edge 146 of the seal 140, although other examples are not so limited.
- the outer edge 146 of the seal 140 may be shaped the same as or generally complementary to the inner edge 148 of the seal 140, although other examples are not so limited.
- the flexible bag dispensing container 100 may include a side seal 160.
- the flexible bag dispensing container 100 can include first and second side seals 160 that are spaced from one another.
- Each side seal 160 may extend along a direction that extends from the second end 108 toward the first end 106 of the flexible bag dispensing container 100.
- each side seal 160 can extend from the inner edge 148 and/or the outer edge 146 toward the first end 106.
- one or more vents 150 may be defined by and/or in the side seal 160. The vent(s) 150 may extend through one or both of the side seals 160.
- each side seal 160 may be formed by any suitable technique as will be appreciated by those skilled in the art.
- each side seal 160 may be formed by applying heat or pressure or both, such as along the first side 102 and/or the second side 104 of the flexible bag dispensing container 100 so as to effectively flatten and attach the flexible wall 130 to itself therealong.
- an adhesive e.g., a pressuresensitive adhesive
- the one or more vents(s) 150 may define a centerline as the vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container.
- the first vent 150a may include a first centerline 151a
- the second vent 150b may include a second centerline 151b
- the third vent 150c may include a third centerline 151c.
- the first centerline 151a may be substantially parallel to the second centerline 151b and/or the third centerline 151c.
- each of the vents 150 may taper as the vent extends in a direction from the interior space to the exterior of the flexible bag dispensing container and may also define a centerline that is substantially parallel to a centerline of one or more of the other tapered or non-tapered vents, although other examples are not so limited.
- FIG. 4A and FIG. 4B the flexible bag dispensing container 100 according to one example in which the flexible bag dispensing container 100 includes two vents 150a and 150b is shown.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIG. 4A and FIG. 4B, except as described below.
- vent 150a For the sake of clarity and brevity, in this example, only the particulars of vent 150a are labeled and described, though it is to be understood that vent 150b may have a similar structure and/or function.
- the inner surface 152 of vent 150a is tapered as vent 150a extends in a direction from the interior space 120 of the flexible bag dispensing container 100 to the exterior 122 of the flexible bag dispensing container 100, although other examples are not so limited. Put another way, the inner surface 152 of vent 150a is tapered as vent 150a extends from the inlet 156 to the outlet 158 thereof, although other examples are not so limited.
- vent 150a is initially tapered inwardly proximate the inlet 156 thereof and then tapers outwardly.
- the inlet 156 of vent 150a has a cross-sectional dimension that is less than a cross-sectional dimension of the outlet 158 of vent 150a
- the vent 150a has a cross-sectional dimension between the inlet 156 and outlet 158 thereof that is less than each of the cross-sectional dimension of the inlet 156 and the cross- sectional dimension of the outlet 158.
- At least a portion of the inner edge 148 may be tapered so as to direct gases towards the vent(s) 150.
- a portion of and/or the inner edge 148 of the seal 140 may taper away from the first end 106 of the flexible bag dispensing container 100 as the inner edge 148 extends toward the first and second comers 142, 144 of the seal 140 and/or as the inner edge 148 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100, although other examples are not so limited.
- such a structure for the inner edge 148 may assist in urging gases entrapped in the interior space 120 of the flexible bag dispensing container 100 toward the first and second comers 142, 144 of the seal 140 and/or away from the midpoint
- vent 150a is positioned closer to the second comer 144 of the seal 140 than the midpoint 141, and vent 150b is positioned closer to the first comer
- vents are provided substantially centrally between the first and second comers 142, 144 of the seal 140 (i.e., at the midpoint 141 of the seal 140) because the entrapped gases are urged toward the first and second comers 142, 144 of the seal 140 as previously described, though one or more such vents could be provided as desired.
- the flexible bag dispensing container 100 may include a vent 150 positioned at the first comer 142 of the seal 140, and the inner edge 148 (or a portion thereol) may be tapered toward the vent 150 (e.g., toward the first comer 142 of the seal 140) such that the inner edge 148 assists in urging gases entrapped in the interior space 120 of the flexible bag dispensing container 100 toward the vent 150 (e.g., toward the first comer 142 of the seal 140), namely as the interior space 120 is filled with the liquid material.
- the outer edge 146 of the seal 140 may taper away from the first end 106 of the flexible bag dispensing container 100 as the outer edge 146 extends between the first and second comers 142, 144 of the seal 140 and/or as the outer edge 146 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the outer edge 146 of the seal 140 may be shaped the same as or generally complementary to the inner edge 148 of the seal 140, although other examples are not so limited.
- the inner edge 148 (or a portion thereof) of the seal 140 may taper toward the first end 106 of the flexible bag dispensing container 100.
- the inner edge 148 (or a portion thereof) may taper toward the first end 106 of the flexible bag dispensing container 100 as the inner edge 148 extends away from the vent(s) 150, although other examples are not so limited.
- the inner edge 148 (or the portion thereol) may taper toward the first end 106 as the inner edge 148 (or the portion thereof) extends in opposite directions (e.g., toward the first and second sides 102, 104 of the flexible bag dispensing container 100) away from the vent(s) 150.
- the inner edge 148 (or a portion thereol) may taper toward the first end 106 of the flexible bag dispensing container 100 as the inner edge 148 (or the portion thereof) extends toward the first and second comers 142, 144 of the seal 140 and/or as the inner edge 148 (or the portion thereof) extends between the first and second sides 102, 104 of the flexible bag dispensing container 100, although other examples are not so limited.
- FIG. 5 A and FIG. 5B show the flexible bag dispensing container 100 according to one example in which the flexible bag dispensing container 100 includes a single vent 150.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIG. 5A and FIG. 5B, except as described below.
- vent 150 is tapered as vent 150 extends in a direction from the interior space 120 of the flexible bag dispensing container 100 to the exterior 122 of the flexible bag dispensing container 100, although other examples are not so limited.
- the inner surface 152 of vent 150 is tapered as vent 150 extends from the inlet 156 to the outlet 158 thereof, although other examples are not so limited.
- the inner surface 152 of vent 150 is tapered outwardly, such that the inlet 156 of vent 150 has a cross-sectional dimension that is less than a cross-sectional dimension of the outlet 158 of vent 150.
- the vent 150 in this example may be tapered outwardly such that the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 2.5mm, although other examples are not so limited.
- the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 2.5mm, although other examples are not so limited.
- the inner edge 148 of the seal 140 may be tapered such that it is curved toward the first end 106 of the flexible bag dispensing container 100 as the inner edge 148 extends toward the first and second comers 142, 144 of the seal 140 and/or as the inner edge 148 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the inner edge 148 of the seal 140 may be a radial inner edge.
- vent 150 is positioned substantially centrally between the first and second comers 142, 144 of the seal 140 (i.e., at the midpoint 141 of the seal 140). In this example, no vents are provided adjacent the first and second comers 142, 144 of the seal 140 because the entrapped gases are urged toward the midpoint 141 of the seal 140 as previously described, though one or more such vents could be provided as desired.
- the outer edge 146 of the seal 140 may be curved toward the first end 106 of the flexible bag dispensing container 100 as the outer edge 146 extends between the first and second comers 142, 144 of the seal 140 and/or as the outer edge 146 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the outer edge 146 of the seal 140 may be a radial outer edge.
- the outer edge 146 of the seal 140 may be shaped the same as or generally complementary to the inner edge 148 of the seal 140, although other examples are not so limited.
- the flexible bag dispensing container 100 according to one example in which the flexible bag dispensing container 100 includes a single vent 150 may be seen.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIG. 6A and FIG. 6B, except as described below.
- the inner surface 152 of vent 150 is tapered as vent 150 extends in a direction from the interior space 120 of the flexible bag dispensing container 100 to the exterior 122 of the flexible bag dispensing container 100, although other examples are not so limited.
- the inner surface 152 of vent 150 is tapered as vent 150 extends from the inlet 156 to the outlet 158 thereof, although other examples are not so limited.
- the inner surface 152 of vent 150 is tapered outwardly, such that the inlet 156 of vent 150 has a cross-sectional dimension that is less than a cross-sectional dimension of the outlet 158 of vent 150.
- the vent 150 in this example may be tapered outwardly such that the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 2.5mm, although other examples are not so limited.
- the inner edge 148 of the seal 140 may be tapered toward the first end 106 of the flexible bag dispensing container 100 as the inner edge 148 extends toward the first and second comers 142, 144 of the seal 140 and/or as the inner edge 148 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the inner edge 148 of the seal 140 may be a stepped or angled inner edge.
- vent 150 is positioned substantially centrally between the first and second comers 142, 144 of the seal 140 (i.e., at the midpoint 141 of the seal 140). In this example, no vents are provided adjacent the first and second comers 142, 144 of the seal 140 because the entrapped gases are urged toward the midpoint 141 of the seal 140 as previously described, though one or more such vents could be provided as desired.
- the outer edge 146 of the seal 140 may be curved toward the first end 106 of the flexible bag dispensing container 100 as the outer edge 146 extends between the first and second comers 142, 144 of the seal 140 and/or as the outer edge 146 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the outer edge 146 of the seal 140 may be a radial outer edge.
- the outer edge 146 of the seal 140 may be shaped differently from the inner edge 148 of the seal 140, although other examples are not so limited.
- the flexible bag dispensing container 100 according to one example in which the flexible bag dispensing container 100 includes a single vent 150 is shown.
- the seal 140 includes an extension 147.
- the extension 147 extends beyond the outer edge 146 of the seal 140 along a direction that extends from the interior space 120 to the exterior 122 of the flexible bag dispensing container 100.
- the vent 150 extends through the extension 147, although other examples are not so limited.
- the length of the vent 150 may generally be maintained while reducing the width of the seal 140.
- vent 150 is tapered as vent 150 extends in a direction from the interior space 120 of the flexible bag dispensing container 100 to the exterior 122 of the flexible bag dispensing container 100, although other examples are not so limited.
- the inner surface 152 of vent 150 is tapered as vent 150 extends from the inlet 156 to the outlet 158 thereof, although other examples are not so limited.
- the inner surface 152 of vent 150 is tapered outwardly, such that the inlet 156 of vent 150 has a cross-sectional dimension that is less than a cross-sectional dimension of the outlet 158 of vent 150.
- the vent 150 in this example may be tapered outwardly such that the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 2.5mm, although other examples are not so limited.
- the inner edge 148 of the seal 140 may be curved or otherwise tapered toward the first end 106 of the flexible bag dispensing container 100 as the inner edge 148 extends toward the first and second comers 142, 144 of the seal 140 and/or as the inner edge 148 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the inner edge 148 of the seal 140 may be a radial inner edge.
- vent 150 is positioned substantially centrally between the first and second comers 142, 144 of the seal 140 (i.e., at the midpoint 141 of the seal 140). In this example, no vents are provided adjacent the first and second comers 142, 144 of the seal 140 because the entrapped gases are urged toward the midpoint 141 of the seal 140 as previously described, though one or more such vents could be provided as desired.
- the 146 of the seal 140 may be curved toward the first end 106 of the flexible bag dispensing container 100 as the outer edge 146 extends between the first and second comers 142, 144 of the seal 140 and/or as the outer edge 146 extends between the first and second sides 102, 104 of the flexible bag dispensing container 100.
- the outer edge 146 of the seal 140 may be a radial outer edge.
- the outer edge 146 of the seal 140 may be shaped the same as or generally complementary to the inner edge 148 of the seal 140, although other examples are not so limited.
- FIG. 8A the flexible bag dispensing container according to one example in which the flexible bag dispensing container 100 includes three vents 150a, 150b, and 150c is shown.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIG. 8A, except as described below.
- each of the three vents 150a, 150b, and 150c may be straight vents. Put another way, the vents of this example may not taper as the vents extend in a direction from the interior space to the exterior of the flexible bag dispensing container.
- one of the vents e.g., vent 150b
- Another of the vents (e.g., vent 150c) may be positioned at the first comer 142 of the seal.
- vent 150a another of the vents (e.g., vent 150a) may be positioned at the second comer 144 of the seal 140.
- vent 150a Providing a straight vent at the first and/or the second comer of the seal has been found to resolve significant manufacturing challenges in certain applications. As will be understood with reference to FIG.
- a first vent (e.g., vent 150c) of the vents may be positioned at the first comer 142 of the seal 140 and a second vent (e.g., vent 150a) of the vents may be positioned at the second comer 144 of the seal 140, and the first and second vents (e.g., vents 150c and 150a) may be straight, non-tapered vents, although other examples are not so limited.
- the inner surface 152 of vent 150a may be straight (non-tapered) as vent 150a extends from the inlet 156 to the outlet 158 thereof, although other examples are not so limited.
- vent 150a is generally straight (non-tapered), such that the inlet 156 of vent 150a has a cross- sectional dimension that is substantially equal to a cross-sectional dimension of the outlet 158 of vent 150a.
- the vents 150a, 150b, and 150c in this example may be straight (non-tapered) such that the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 1.0mm, although other examples are not so limited.
- the flexible bag dispensing container according to another example in which the flexible bag dispensing container 100 includes three vents 150a, 150b, and 150c is shown.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIG. 8B, except as described below.
- a central vent 150b of the three vents may be a straight vent and the other two 150a and 150c of the vents may be tapered vents. That is, some of the vents of this example may taper as the vents extend in a direction from the interior space to the exterior of the flexible bag dispensing container, while others of the vents do not taper. Put another way, the inner surface 152 of vent 150a may be tapered as vent 150a extends from the inlet 156 to the outlet 158 thereof, although other examples are not so limited.
- vents 150a and 150c are tapered outwardly, such that the inlets of vent 150a and 150c have a cross-sectional dimension that is less than a cross-sectional dimension of the respective outlets of vents 150a and 150c.
- the vents 150a and 150c in this example may be tapered such that the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 6.0mm, although other examples are not so limited.
- Another of the vents of this example may be a straight, non-tapered vent.
- vent 150b may be straight (non-tapered) as vent 150b extends from the inlet to the outlet thereof, although other examples are not so limited.
- the inner surface of vent 150b is generally straight (non-tapered), such that the inlet of vent 150b has a cross-sectional dimension that is substantially equal to a cross-sectional dimension of the outlet of vent 150b.
- the vent 150b in this example may be straight (non-tapered) such that the inlet 156 has a cross-sectional dimension (e.g., a width) of about 1.0mm and the outlet 158 has a cross-sectional dimension (e.g., a width) of about 1.0mm, although other examples are not so limited.
- one of the vents may be positioned substantially centrally between the first and second comers 142, 144 of the seal 140 (e.g., at the midpoint 141 of the seal 140).
- Another of the vents e.g., vent 150c
- another of the vents may be positioned at the second comer 144 of the seal 140.
- vents positioned at the comers of the seal may be constructed such that one inner edge defining the comer vent extends in a direction substantially parallel to the inner edges defining the vent positioned at the midpoint of the seal (“central vent”), while an opposing inner edge further defining the comer vent extends at an angle that is non-parallel (e.g., oblique) tot eh inner edges defining the central vent.
- Providing such a comer vent at the first and/or the second comer of the seal has been found to resolve significant manufacturing challenges in certain applications by avoiding a negative taper for the comer vent(s). As will be understood with reference to FIG.
- a first vent (e.g., vent 150c) of the vents may be positioned at the first comer 142 of the seal 140 and a second vent (e.g., vent 150a) of the vents may be positioned at the second comer 144 of the seal 140, and the first and second vents (e.g., vents 150c and 150a) may be tapered vents, although other examples are not so limited.
- FIG. 9A and FIG. 9B show the flexible bag dispensing container 100 according to one example in which the flexible bag dispensing container 100 includes two vents 150 defined by malleable tubes 170 disposed in the seal 140.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIG. 9A and FIG. 9B, except as described below.
- the flexible bag dispensing container 100 includes a pair of tubes 170 disposed in the seal 140. While the example of FIG. 9A and FIG. 9B is illustrated with a pair of tubes 170, it is to be understood that the flexible bag dispensing container 100 could be provided with any desired number of tubes 170.
- the flexible bag dispensing container 100 may include one, two, three, or four or more tubes 170.
- Each tube 170 generally defines a vent 150.
- each of the tubes 170 is a malleable tube that may be sealingly closed as desired.
- the tube(s) 170 may be sealed closed by any suitable technique, such as by crimping to sealingly close the tube(s) 170, thereby sealingly closing the vent defined thereby.
- the tube(s) 170 may be of any suitable size, shape, and/or material to suit a particular application.
- the tube(s) 170 may be made of a malleable material such as aluminum, stainless steel, or brass.
- a malleable material may be laminated to the flexible wall 130 about the vent 150 so as to provide a crimpable closure.
- the tube(s) 170 may have a cross-sectional dimension (e.g., an internal diameter) of about 0.15mm.
- FIGS. 10A-C show the flexible bag dispensing container 100 according to examples in which the flexible bag dispensing container 100 includes a bleeder valve 180 that defines one or more vents 150.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIGS. 10A-C, except as described below.
- the bleeder valve 180 may be a check valve or a duck bill valve.
- the bleeder valve 180 may be configured to permit entrapped gases to be discharged therethrough while the liquid material is prevented from being discharged therethrough.
- the bleeder valve 180 may be open during filling of the flexible bag dispensing container 100 with the liquid material and/or during dispensing of the liquid material from the flexible bag dispensing container 100 in such a way that entrapped gases may be discharged therethrough while the liquid material is prevented from being discharged therethrough.
- the bleeder valve 180 may form a seal with the flexible bag dispensing container 100 (e.g., the flexible wall 130 thereol) at the second end 108 thereof, such that entrapped gases may be discharged through the bleeder valve 130 in an area separate and distinct from the seal interface between the bleeder valve 130 and the flexible bag dispensing container 100.
- the bleeder valve 180 may, in certain examples, be configured such that when a predetermined pressure point is reached (e.g., due to the interior space 120 filling with the liquid material and urging entrapped gases toward the second end 108 of the flexible bag dispensing container 100), at least a portion of the bleeder valve (e.g., a piston seal portion) may move into sealing engagement with another portion of the bleeder valve and/or the second end 108 of the flexible bag dispensing container 100 to prevent entrapped gases from discharging therethrough.
- the bleeder valve 180 may be configured to at least partially facilitate dispensing of the liquid material from the flexible bag dispensing container 100, such as when the flexible bag dispensing container 100 is a rigid dispensing tube.
- the flexible bag dispensing container 100 may collapse and/or return to the non-expanded configuration (e.g., such that the second end 108 of the flexible bag dispensing container 100 moves closer to the first end 106 thereol).
- the bleeder valve 180 may likewise move toward the first end 106 of the flexible bag dispensing container 100 as the liquid material is dispensed therefrom.
- the bleeder valve 180 may be sized and/or shaped to facilitate evacuation (e.g., full evacuation) of the liquid material from the flexible bag dispensing container 100 as the bleeder valve approaches and/or reaches the first end 106 of the flexible bag dispensing container 100 (e.g., at the end of the dispensing operation).
- FIG. 10C show the flexible bag dispensing container 100 including the bleeder valve 180 defining a vent 150 according to one example in which the flexible bag dispensing container 100 includes a sleeve 190, although other examples of the disclosure are not so limited.
- the sleeve 190 is illustrated as partially transparent so as to enable the viewing of the flexible bag dispensing container 100 within the sleeve 190.
- the sleeve 190 may, in examples, at least partially surround the flexible bag dispensing container 100.
- the sleeve 190 may at least partially surround the flexible wall 130 of the flexible bag dispensing container 100. In certain examples, such as is illustrated in the example of FIG.
- the sleeve 190 may surround and/or encompass the flexible wall 130 and the bleeder valve 180 of the flexible bag dispensing container 100.
- the sleeve 190 may extend from a first end 196 to a second end 198 thereof, with the first and second ends 196, 198 being spaced from one another.
- the first end 192 of the sleeve 190 may be positioned adjacent to the first end 106 of the flexible bag dispensing container 100 and the second end 198 of the sleeve 190 may be positioned adjacent the second end 108 of the flexible bag dispensing container 100.
- the first end 196 of the sleeve 190 may be attached to and/or formed integrally with the first end 106 of the flexible bag dispensing container 100 (e.g., the faceplate 110b) thereof.
- the second end 198 of the sleeve 190 may define an opening 192 (e.g., the second end 198 of the sleeve 190 may be open), such as to permit gases discharged through the vent 150 (e.g., in the bleeder valve 180) to be discharged to the exterior 122 of the flexible bag dispensing container 100.
- FIG. 11 A and FIG. 1 IB the flexible bag dispensing container 100 according to one example in which the seal 140 is a gusseted seal is shown.
- the vent 150 may extend through the seal 140, which is in the form of a gusset seal.
- the foregoing disclosure with respect to the general structure and function of the flexible bag dispensing container 100 may generally be equally applicable to the flexible bag dispensing container illustrated in FIG. 11 A and FIG. 1 IB, except as described below.
- the gusseted seal 140 may permit the flexible bag dispensing container to be stood upright upon its second end 108.
- the seal 140 may be in the form of a lap seal, a flat seal, a gusseted seal (refer to FIG. 11 A and FIG. 1 IB), or a fin seal (e.g., a tack-welded fin seal).
- the seal 140 may be substantially linear or planar as the seal 140 extends from the first side 102 of the flexible bag dispensing container 100 to the second side 104 of the flexible bag dispensing container 100, although other examples are not so limited.
- FIG. 12 illustrates the first end 106 of the flexible bag dispensing container 100 according to one example.
- the faceplate 110b may be formed with a seal 110c defining a small gap.
- the seal 110c may be engaged during filling of the flexible bag dispensing container 100 (e.g., with the liquid material) to provide a strong seal between a filling mechanism and the faceplate 110b.
- the seal 110c may define a gap having a volume for entrapped gases of about 0.2 mL or less. In this way, undesirable entrapment of gases in the flexible bag dispensing container may be prevented and/or minimized.
- the liquid material may push or urge gases entrapped within the flexible bag dispensing container 100 toward the vent(s) 150, such as while the flexible bag dispensing container 100 is being at least partially filled with the liquid material.
- the flexible bag dispensing container 100 may be sized and/or shaped to assist in pushing or urging entrapped gases toward one or more vents 150 as the flexible bag dispensing container 100 is filled with the liquid material.
- the vent(s) 150 of the flexible bag dispensing container 100 may be positioned so as to maximize the efficiency of discharging gases entrapped within the flexible bag dispensing container 100 therefrom.
- the flexible bag dispensing container 100 may be filled (e.g., via the port 110 thereof) with the liquid material from the first end 106 of the flexible bag dispensing container 100, and the vent(s) 150 may be positioned above the first end 106 of the flexible bag dispensing container 100.
- gases entrapped within the flexible bag dispensing container 100 may rise toward the vent(s) 150 and be discharged therethrough due to gravitational forces (e.g., because the liquid material is heavier than the entrapped gases).
- each numerical value and range should be interpreted as being approximate as if the word “about,” “approximately,” or “substantially” preceded the value or range.
- the terms “about” and “approximately” can be understood as describing a range that is within 15 percent of a specified value unless otherwise stated.
- Conditional language used herein such as, among others, “can,” “could,” “might,” “may,” “e.g.,” and the like, unless specifically stated otherwise, or otherwise understood within the context as used, is generally intended to convey that certain examples include, while other examples do not include, certain features, elements, and/or steps. Thus, such conditional language is not generally intended to imply that features, elements, and/or steps are in any way required for one or more examples or that one or more examples necessarily include these features, elements and/or steps.
- the terms “comprising,” “including,” “having,” and the like are synonymous and are used inclusively, in an open-ended fashion, and do not exclude additional elements, features, acts, operations, and so forth.
- reference herein to “a” or “one” to describe a feature such as a component or step does not foreclose additional features or multiples of the feature.
- reference to a device having or defining “one” of a feature does not preclude the device from having or defining more than one of the feature, as long as the device has or defines at least one of the feature.
- reference herein to “one of’ a plurality of features does not foreclose the invention from including two or more, up to all, of the features.
- reference to a device having or defining “one of a X and Y” does not foreclose the device from having both the X and Y.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Bag Frames (AREA)
- Packages (AREA)
- Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
- Tubes (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US202063110110P | 2020-11-05 | 2020-11-05 | |
| PCT/US2021/058024 WO2022098849A1 (en) | 2020-11-05 | 2021-11-04 | Flexible bag dispensing container with vents |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4240668A1 true EP4240668A1 (en) | 2023-09-13 |
Family
ID=78709563
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21811205.0A Pending EP4240668A1 (en) | 2020-11-05 | 2021-11-04 | Flexible bag dispensing container with vents |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US20230391529A1 (en) |
| EP (1) | EP4240668A1 (en) |
| JP (1) | JP2023548592A (en) |
| KR (1) | KR20230098601A (en) |
| CN (1) | CN116457285A (en) |
| WO (1) | WO2022098849A1 (en) |
Family Cites Families (32)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB1066487A (en) * | 1963-10-07 | 1967-04-26 | Ici Ltd | Vented bags |
| GB1472178A (en) * | 1973-08-10 | 1977-05-04 | Meshberg P | Liquid dispenser using a non-venting pump and a collapsible bag |
| US5419638A (en) * | 1993-05-06 | 1995-05-30 | Jamison; Mark D. | Pressure sensitive gas valve for flexible pouch |
| JPH0796951A (en) * | 1993-09-20 | 1995-04-11 | Dainippon Printing Co Ltd | Large bag for fermented food |
| JPH07187203A (en) * | 1993-12-27 | 1995-07-25 | Dainippon Printing Co Ltd | Laminate tube with end seal formed in an arc shape |
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-
2021
- 2021-11-04 KR KR1020237017103A patent/KR20230098601A/en active Pending
- 2021-11-04 JP JP2023527295A patent/JP2023548592A/en active Pending
- 2021-11-04 CN CN202180074573.7A patent/CN116457285A/en active Pending
- 2021-11-04 EP EP21811205.0A patent/EP4240668A1/en active Pending
- 2021-11-04 WO PCT/US2021/058024 patent/WO2022098849A1/en not_active Ceased
- 2021-11-04 US US18/033,599 patent/US20230391529A1/en not_active Abandoned
Also Published As
| Publication number | Publication date |
|---|---|
| KR20230098601A (en) | 2023-07-04 |
| US20230391529A1 (en) | 2023-12-07 |
| CN116457285A (en) | 2023-07-18 |
| WO2022098849A1 (en) | 2022-05-12 |
| JP2023548592A (en) | 2023-11-17 |
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