EP3133045A1 - Dispositif de soupape pour recipient de boisson, recipient de boisson, dispositif de remplissage et procede - Google Patents

Dispositif de soupape pour recipient de boisson, recipient de boisson, dispositif de remplissage et procede Download PDF

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Publication number
EP3133045A1
EP3133045A1 EP16001834.7A EP16001834A EP3133045A1 EP 3133045 A1 EP3133045 A1 EP 3133045A1 EP 16001834 A EP16001834 A EP 16001834A EP 3133045 A1 EP3133045 A1 EP 3133045A1
Authority
EP
European Patent Office
Prior art keywords
valve
filling
fluid
venting
valve device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP16001834.7A
Other languages
German (de)
English (en)
Other versions
EP3133045B1 (fr
Inventor
Dennis Grittmann
Gerd Krüger
Michael Diefenbacher
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
FASS-FRISCH GmbH
Original Assignee
FASS-FRISCH GmbH
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by FASS-FRISCH GmbH filed Critical FASS-FRISCH GmbH
Publication of EP3133045A1 publication Critical patent/EP3133045A1/fr
Application granted granted Critical
Publication of EP3133045B1 publication Critical patent/EP3133045B1/fr
Priority to HRP20191496 priority Critical patent/HRP20191496T1/hr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/0003Apparatus or devices for dispensing beverages on draught the beverage being a single liquid
    • B67D1/0004Apparatus or devices for dispensing beverages on draught the beverage being a single liquid the beverage being stored in a container, e.g. bottle, cartridge, bag-in-box, bowl
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/0042Details of specific parts of the dispensers
    • B67D1/0081Dispensing valves
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/04Apparatus utilising compressed air or other gas acting directly or indirectly on beverages in storage containers
    • B67D1/0462Squeezing collapsible or flexible beverage containers, e.g. bag-in-box containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/08Details
    • B67D1/0801Details of beverage containers, e.g. casks, kegs
    • B67D1/0805Openings for filling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/08Details
    • B67D1/12Flow or pressure control devices or systems, e.g. valves, gas pressure control, level control in storage containers
    • B67D1/14Reducing valves or control taps

Definitions

  • the following invention relates to a valve device for beverage containers, the beverage container itself, having such a valve device according to the invention, finally a set comprising the beverage container and the valve device according to the invention and a filling device, and to a method for filling such a beverage container.
  • the filling process in BIB systems is an open filling process, i. h., the filling medium is fed through a filling opening, which is usually stiffened with a ring, the inner bag until the bag is full. Then possible air bubbles are struck out and then from the outside the nozzle is used, which otherwise plays no role during the filling process and is only used for tapping.
  • BIB systems are not suitable for bottling carbonated drinks, as they have so far vented during filling the carbon dioxide and it comes to uncontrolled foaming; Products whose quality is determined by a defined carbon dioxide content, are already scarfing during bottling. Furthermore, can not be achieved with the subsequently and externally used dispensing valve the required compressive strength, which is typically up to 5 bar in beers; the nozzle would simply be pushed out by the internal pressure.
  • Another object is to provide an improved beverage container suitable for filling with carbonated liquids.
  • the invention is the further object of a device or a set, respectively.
  • a device or a set respectively.
  • This object is achieved by the set with the features of claim 14.
  • the valve device according to the invention for beverage containers has in a first embodiment, a valve body with at least one nozzle, which is adapted to be connected to a fluid-tight receptacle of the beverage container.
  • the valve main body has an inner side, which faces in a mounting arrangement to an interior of the fluid-tight receptacle and an actuating side, from which the nozzle can be actuated.
  • At least one filling port with a filling valve and a ventilation port with a ventilation valve are provided on the valve main body.
  • Filling valve and venting valve are each operable from the actuation side.
  • the filling valve, the venting valve and dispensing valve are each in the form of separate components in the valve device, so that advantageously the fluid flows can be guided and controlled separately by these valves.
  • a fluid-tight receptacle can be understood in one-piece beverage containers of the beverage container itself, or in multi-part beverage containers that part of the beverage container in which the liquid is absorbed, the bag-in-box system, the receptacle of the bag, which is inserted into the outer container becomes.
  • the fluid-tight receptacle can be filled via the filling valve from the actuation side, and the venting valve can escape the air displaced during filling or protective gas pumped before being filled into the receptacle.
  • the actuation side can also be referred to as "outside" since from there the valves, dispensing valve and filling valve and venting valve are to be operated.
  • the filling procedure differs from the previously used in BIB systems with the valve device according to the invention, because the valve device is already before filling fluid-tightly connected to the fluid-tight receptacle, such as a bag of a BIB packaging.
  • the pressure in the container may be up to 5 bar, so a pressure-resistant container must be used.
  • a pressure-resistant container In bag-in-box systems, for example, this is a pressure-resistant bag that can be designed as a tubular bag, d. H. can be produced from a continuous material.
  • valve device for BIB systems, but in principle can also be used for other types of beverage containers for example, for non-inner-beverage cartons, party cans or others; however, it should be noted that a separate vent valve is to be provided in the container when the receptacle is an incompressible, ie dimensionally stable, container.
  • the receptacle used in particular the bags of the bag-in-box packaging, must have a corresponding compressive strength.
  • a CO 2 system is then possible to fill carbonated drinks without withdrawal of carbon dioxide in bag-in-box and tap directly without further devices, for example.
  • valve body is pot-shaped. It is provided that in the mounting arrangement has a pot inside to the interior of the fluid-tight receptacle.
  • the valve main body advantageously has a connecting flange, with which the valve body can be connected to the fluid-tight receptacle, for example adhesively bonded, welded or secured by heat sealing.
  • the valve body may further comprise a locking collar adapted to allow coupling of the valve device with a filling device.
  • the connecting flange can be connected in particular from the inside to the fluid-tight receptacle, such as the bag of the bag-in-box packaging, and be as large as possible.
  • the connecting flange is supported on the fluid-tight receptacle or bag, so that it is not pressed so easily under the pressure from the fluid-tight receptacle, while a large surface for a solid and durable connection is advantageous.
  • the filling valve and the venting valve may each be formed by a valve housing formed in the valve body extends from the inside to the actuation side of the valve body, and, in each case one valve insert guided in the valve housing is formed per valve housing.
  • the valve housing has a projecting valve seat on an end facing the actuation side of the valve main body, on which the valve insert rests in a sealing manner with a sealing section.
  • the valve housing may be formed, for example, by a thin-walled hollow cylinder which is present on the inside of the valve main body and extends as far as the actuation side.
  • valve inserts may, for example, each consist of an elastomer, preferably rubber.
  • the sealing portion of the valve insert may be a solid executed body, which rests with its outer periphery on the respective valve seat of the Medoder vent valve. It can also be provided that the filling valve and the vent valve sections share a valve housing, d. h., The respective valve housing sections are interconnected.
  • valve housing may each have a support collar on an end pointing to the inside of the valve main body and the valve insert each have an elastic holding section at an end remote from the sealing section, which is elastic in the longitudinal direction of the valve insert.
  • the holding section is supported with an outer circumference on the support collar.
  • the elasticity provided by the holding portion in the longitudinal direction of the valve core is intended to prevent an opening movement, i. h., To allow lifting of the sealing portion of the valve core from the valve seat.
  • a biasing force is generated via the elastic holding portion, which presses the sealing portion on the valve seat in an idle state.
  • the sealing portion is pressed in from the outside through the filling or venting port in the longitudinal direction, whereby the holding portion of the valve insert is deformed and the sealing portion is lifted from the valve seat.
  • the holding portion of at least one of the valve inserts may be disk-shaped and may have an outer ring with a plurality of radially extending elastic spokes, which provide the elasticity in the longitudinal direction.
  • elastic spokes By the elastic spokes, both the bias is achieved, as well as allows the longitudinal movement of the valve core, which ultimately for lifting the sealing portion is needed.
  • valve housing of the filling valve or the valve housing of the venting valve is covered at its end pointing to the inside of the valve main body each of a holding plate with at least one passage opening.
  • the holding portion of the valve core is defined between the support collar of the valve housing and the retaining plate.
  • a common support plate for the valve housing of the filling valve and the vent valve such as a holding plate in the form of an "8" (numeric character eight). Nevertheless, the valves themselves are to be understood as components to be handled separately - the holder in a common holding plate does not interfere with the advantageous separate handling of the valves.
  • the holding plate ensures that the valve insert or the valve inserts are not displaced from the outside under the action of the actuating force, but the movement of the sealing portion in the longitudinal direction is solely due to the elastic deformation of the holding portion of the valve insert.
  • the retaining plate can be approximately clipped or welded to the valve housing (s), and this already happens in the manufacture of the valve device prior to insertion into the fluid-tight receptacle.
  • the passage opening (s) is / are necessary so that fluid (liquid or air / inert gas) can flow through the filling or the vent valve when the holding plate is mounted.
  • the holding plunger (s) may each have a recess facing the holding section of the valve insert, in which the valve insert may be received in sections upon actuation of the filling valve and / or the venting valve.
  • the passage opening of the holding plate or holding plate section associated with the filling valve may be a centrally arranged bore.
  • the passage openings of the / of the venting valve associated holding plate or holding plate portion may be distributed circumferentially arranged recesses.
  • a riser pipe or hose can be attached in a further embodiment.
  • About the riser or the hose can be used for overhead assembly of the valve device also be tapped when needed, so that Golfport and filling valve then take over an emptying function.
  • the mounting position of the valve device on the fluid-tightCountbenzollnis and the length of the riser or hose can be dimensioned so that this extends to a lowest point of the fluid-tight receptacle and thus allows complete emptying.
  • a special external dispensing device is required for removal / pin, which is coupled to the valve body of the valve device and sealingly inserted into the filling port.
  • the dimensions of the filling port and the associated filling valve can be selected so that common taps or flat fittings can be coupled with it.
  • valve housing of the vent valve may have one or more vent slot (s).
  • this is at least one slot in the lateral surface of the hollow cylinder, which forms the valve housing, such as a longitudinal slot.
  • it can also be provided two or more longitudinal slots, which are distributed circumferentially. Air or protective gas, which has still collected in the fluid-tight receptacle even after filling, can escape through the vent slots, in particular so that air or protective gas accumulations can be detected which, due to the position and shape of the valve housing of the vent valve, are not penetrated by the passage openings of the vent valve Holding plate could be vented or degassed.
  • filling port and / or venting port on the actuation side of the valve body can each have a countersink, such as a countersink.
  • a filling device with a filling section or filling tube can be used for filling, which can be reliably sealed in the subsidence.
  • the dispensing valve may have an outlet pipe which extends away from the valve body and has an outlet opening at a predetermined distance from the valve body.
  • a pull rod may be guided in the outlet pipe, at whose end pointing to the inside of the valve main body a sealing cap is arranged, which rests sealingly on a sealing surface on the inside of the valve body.
  • an actuator is provided which is supported on the outlet pipe and is adapted to exercise in an activation state, a tensile force in a direction away from the inside of the valve body towards the tie rod and to press the sealing cap on the sealing surface and in a deactivation state, a movement of the To cause the tie rod in a direction to the inside of the valve main body direction and lift the sealing cap from the sealing surface.
  • the sealing cap By moving the pull rod in the direction of the inside of the valve main body direction, the sealing cap is lifted from the sealing surface and released the fluid passage; This is the condition of the dispensing valve that can be tapped.
  • an insertion aid may be present on the inside of the valve main body around the sealing surface of the sealing cap, preferably a plurality of circumferentially distributed guide webs extending in the longitudinal direction of the drawbar.
  • the actuator it may be an elastic cap, which is supported with its outer periphery on a projecting collar of the outlet pipe and with which the pull rod is connected, for example. By a snap connection.
  • the elastic cap is compressible in the longitudinal direction of the drawbar to transfer the actuator from the activation state to the deactivation state. It generates a preload force which is transmitted via the pull rod to the sealing cap in order to press it onto the sealing surface.
  • an actuating element is provided, which is adapted to compress the elastic cap when actuated.
  • the actuating element may be, for example, a screw cap, which is placed on the outer circumference of the outlet pipe. But it is also an embodiment without actuator conceivable, so that it can be provided to compress the elastic cap for actuation directly and thus open the nozzle.
  • Dispensing valves with spout are particularly associated with bag-in-box packaging known from the prior art in various embodiments; It can therefore be provided to use such in the valve device according to the invention.
  • the screw cap can either be screwed onto an external thread on the lateral surface of the outlet tube, so that upon rotation, a movement is generated in the longitudinal direction, which acts on the elastic cone, or have a kind of bayonet lock system.
  • the screw cap may also be arranged between the screw cap and the elastic cap an intermediate disc which is locked against rotation about the longitudinal axis of the outlet tube.
  • means may be provided which prevent the screw cap from being unintentionally withdrawn, in particular at least two radially inwardly projecting pins of the screw cap, which respectively engage in a circumferential groove on the outer circumferential surface of the outlet tube.
  • the conversion of the rotary movement of the screw cap into a movement in the longitudinal direction can be realized, in particular, by the intermediate disc having at least one ramp on an end face facing the screw cap, which is in contact with at least one corresponding ramp on an inner end face of the screw cap facing the intermediate disc ,
  • the respective ramps of the washer and the screw cap can in particular extend in the circumferential direction, so that an implementation of the rotational movement in a longitudinal axial movement over a relatively large rotation range of the screw cap is possible.
  • an ordinary motion thread may be provided.
  • the beverage container according to the invention has, in a first embodiment, a fluid-tight receptacle and connected to the receptacle valve device according to the invention for the removal of liquids, which also makes it possible to fill the receptacle in addition to the removal of liquid.
  • the valve device is already connected to the fluid-tight receptacle during the production of the container, so that the beverage container or the fluid-tight receptacle can be filled in a closed process, with corresponding hygienic advantages and the possibility to fill under pressure.
  • the fluid-tight receptacle can be a bag, in particular a pressure-resistant and dimensionally stable under pressure bag, with which the connecting flange of the valve body of the valve device is welded from inside, glued or connected by a heat sealing process.
  • the beverage container may also have an outer container in which the fluid-tight receptacle is received and which has a passage opening for the valve device, so that the actuating side is accessible and the nozzle valve can be operated.
  • the outer container can be, for example, a cardboard which itself is not pressure-resistant, but advantageously protects the fluid-tight receptacle against damage and can be used as a printable surface.
  • the property "dimensionally stable” herein means that the bag does not deform under pressure, so that it fits in the pressurized state in the outer container. However, it is not excluded and even desirable that the bag in the unfilled and unpressurized state is contractible or collapsible.
  • the fluid-tight receptacle or the bag for example, from a plastic film, in particular made of fiber composite plastic exist.
  • the receptacle can also consist of sheet metal or other suitable appearing materials that can be internally coated;
  • the external container does not necessarily have to be a cardboard box, a wooden box or the like is also conceivable.
  • the invention expressly includes other container types such as barrels, especially party cans o. ⁇ ., With a.
  • the invention thus provides a set of a beverage container with inventive valve device and a filling device for filling the beverage container.
  • the filling device according to the invention for filling a beverage container has at least two actuating elements, which are adapted to operate the filling valve and the venting valve from the operating side of the valve device separately from each other.
  • the filling device has a filling section, through which a filling medium can be supplied and the sealing on the filling port the valve device can be placed.
  • the actuating elements of the filling device are arranged so that they are exactly in the distance from each other, which corresponds to the distance of the filling and venting port of the valve device.
  • About the actuators lying below the filling and venting ports filling or venting valves are pressed to open them.
  • the filling medium can then flow through the filling port in the beverage container and air or inert gas can pass out of the beverage container from the vent valve.
  • the actuating elements may be formed as pins, plungers or thorns and the filling portion having a filling tube, wherein a free end of the filling tube can be sealingly received in the reduction of the filling port.
  • the filling device may have a loading / degassing section, which can be sealingly received in the vent port of the valve device and serves to supply the beverage container either an inert gas or defined therein protective gas or air to flow out.
  • a seal may be arranged, for example an O-ring, but it may also be a seal without a separate seal, such as through the interaction of tapered sealing surfaces.
  • the reduction, in particular the countersink, the filling and / or vent port also contributes to an improved centering of the filling tube.
  • the supply of filling fluid or removal of air / inert gas takes place here quasi in an annular gap between the respective actuator and the filling port, as well as the vent port.
  • the valve device according to the invention can be implemented constructively as a valve attachment, which can be integrated in an industrial filling process.
  • a supply line is provided, via which the medium to be filled is supplied.
  • a simplified introduction of the operating torques of the filling device is, as mentioned, possible via the depressions of the filling or the vent port.
  • the filling device has a locking device, via which it remains positively connected during filling with the valve device; in particular, the Locking device engage behind the locking collar of the valve device.
  • step b) displacement of air or inert gas can be omitted if an evacuated or completely folded container is to be filled. It can be seen that by the separate presence of the components filling valve and vent valve is only possible that at the same time flow through the one filling fluid and can flow through the other air or inert gas.
  • a filling device according to the invention can be coupled to the valve device and the filling valve and the venting valve can be actuated with the respective actuating elements of the filling device. After the end of the filling process in step c), the filling device is then separated again from the valve device.
  • a protective gas for example CO 2 , is supplied to flush the container. This protective gas is then displaced in the step b) during filling again out of the container.
  • valve device 10 As shown in the figures, it is surprisingly possible to fill beverage containers or general fluid-tight receptacles, such as bag-in-box bags, in a closed process in compliance with strict hygiene requirements with carbonated liquids.
  • the procedure differs from the usual one; So far, the bag was overfilled via a filling, then deleted residual air from the bag-in-box bag and inserted from the outside of the nozzle in the filling. It goes without saying that the method used hitherto was not suitable for carbonated liquids (foaming during filling) and was not hygienically optimal.
  • the valve device 10 which in Fig. 1 is shown in a plan view showing the outside in a mounting assembly operating side B, has a valve body 11 with a connecting flange 111, which already before filling connected from the inside to the fluid-tight receptacle, preferably welded, is. Due to the attachment from the inside and the large-area connecting flange 111 results in an improved compressive strength. Furthermore, a filling valve 3 is present on the valve main body 11, via which the filling medium is supplied in a closed filling operation; In the fluid-tight receptacle located air or gas can escape through the vent valve 2.
  • the filling valve 3 and the vent valve 2 are mainly needed in the filling; later at the consumer they usually remain closed and it can be tapped on the nozzle 4.
  • the valve device according to the invention offers 10 the advantage that liquids can be bottled so under the strictest hygiene regulations;
  • the beverage container may also be sterilized before the start of the filling process and / or rinsed with a protective gas (eg CO 2 ).
  • the valve body 11 may suitably be made of a plastic material (eg, PP, ABS, POM) and inexpensively manufactured in an injection molding process.
  • a plastic material eg, PP, ABS, POM
  • Fig. 2 is the valve device 10 in a bottom view, that is, shown by the inside of the beverage container facing inside 1. It can be seen that the nozzle 4, the filling valve 3 and the vent valve 2 have a fluidic connection to the inside I.
  • the function of the dispensing valve 4 is based on the longitudinal section RR (see Fig. 1 ), the Indian Fig. 3 is shown, explained in detail.
  • the nozzle 4 has an outlet pipe 44 which extends away from the valve body 11. Spaced from the valve main body 11, the outlet pipe 44 has an outlet opening 45, through which the filling medium can be tapped.
  • a pull rod 41 is guided, which is connected at its pointing to the inside of the valve body 11 end with a sealing cap 43 which rests sealingly on a sealing surface 47.
  • the connection of the sealing cap 43 with the tie rod 41 is realized in the present case in a 2-component injection molding process. However, the connection of the drawbar 41 with the sealing cap 43 can also be realized differently in a non-figurative embodiment.
  • the drawbar 41 is connected to an elastic cap 42, which is supported with its outer periphery on a projecting collar 46 of the outlet pipe 44.
  • the elastic cap 42 biases the pull rod 41, so that the sealing cap 43 is pressed onto the sealing surface 47.
  • the drawbar 41 is moved in the direction of the inside I, so that the sealing cap 43 is lifted from the sealing surface 47. This can either be done (not figuratively) by pressing the elastic cap 42 with the finger or as in Fig. 3 shown by a screw cap 5, which acts on the elastic cap 42, because when turning the screw cap 5, the rotational movement is converted into a movement in the longitudinal axial direction.
  • a transmission is provided, which is formed by two corresponding pairs of ramps 51,61, of which a respective ramp 51,61 on the Screw cap 5 and another at a between the elastic cap 42 and the inside of the screw cap 5 arranged intermediate disc 6 is present.
  • the ramp pairs 51, 61 run in the circumferential direction.
  • the washer 6 has the purpose, the elastic cap 42 does not suspend the rotational movement of the screw cap 5, so that it is not damaged; Furthermore, in the present embodiment, it carries the one pair of ramps 61.
  • the screw cap 5 is screwed onto an external thread of the outlet tube 44.
  • Fig. 3 good the shape of the valve body 11: This is cup-shaped, wherein the pot inside has in a mounting arrangement to the interior of the fluid-tight receptacle.
  • the connecting flange 111 is provided for connection to the fluid-tight receptacle; this is preferably welded from the inside with a wall of the fluid-tight receptacle, such as the bag-in-box bag, so that even when pressurizing the fluid-tight receptacle, the valve device 10 sits securely and can not be pushed out.
  • Fig. 4 is a further longitudinal sectional view of the valve device 10 is shown, wherein the section along the sectional plane NN is (see Fig. 1 ) he follows.
  • the filling valve 3 and the vent valve 2 are easy to see, so that their function can be explained.
  • the filling valve 3 and the vent valve 2 each consist of a valve housing, here by two hollow cylinder 113 (see Fig. 2 ), which are present on the inside of the pot of the valve main body 11, and in each case a valve insert 21, 31 guided therein.
  • valve inserts 21, 31 are essentially rotationally symmetrical bodies made of rubber or another elastomer which each have a sealing section 212, 322 with which they rest on a valve seat 23, 33 which is present on the inside of the cup-shaped valve body.
  • the separate use of different valves per function filling and venting simple components or components can be selected, which are inexpensive to manufacture.
  • the valve seats 23, 33 are each formed by a collar protruding into the hollow cylinder 113, which forms the valve housing.
  • venting port 22 and the filling port 32 which each have a counterbore 221, 321 into which a filling device can be sealingly inserted;
  • the seal can be either in the reduction via elastic sealing elements, such as O-rings, conical pressing or take place on the flat surface of the valve body 11.
  • the countersinks 221, 321 also serve to facilitate centering of the filling device.
  • the valve inserts 21,31 have at their end facing away from the sealing portion 212,312 each have a holding portion 211,311, here in each case a plurality of radially extending spokes 211 ', 311', which are supported on a support plate 7, which is suitably inserted into the hollow cylinder 113, the form the valve housing.
  • a support plate 7 which is suitably inserted into the hollow cylinder 113, the form the valve housing.
  • the spokes 211 ', 311' elastically bias the valve inserts 21,31 and press with their sealing portions 212,312 on the valve seats 23,33.
  • the sealing portion 212,312 must be lifted from the valve seat; This can be done by the actuating side B of the valve body 11 characterized in that the valve inserts 21,31 with a mandrel or similar. be pressed along its longitudinal axis.
  • the holding portion 211, 311 or its spokes 211 ', 311' is / are elastically deformed in this case; between the holding plate-side end of the valve inserts 21,31 and the holding plate 7 is in the closed valve state, a distance which provides the necessary freedom of movement for the lifting movement of the valve inserts 21,31.
  • valve inserts 21,31 can be used during assembly easier on the inner wall of the hollow cylinder 113 (see Fig. 2 ), each forming the valve housing, guide webs 112 are arranged, which extend in the longitudinal direction and are arranged distributed circumferentially; the guide webs 112 also ensure the centering of the valve inserts 21,31 at each actuation process.
  • a special filling device can be used, which is placed on the valve body 11 from the outside.
  • the filling device has at least one actuating element with which the filling valve 3 is actuated from the outside, that is to say opened.
  • the filling device is not shown figuratively but will be described here because the configuration of the valve device 10 interacts with the configuration of the filling device.
  • the filling device has a filling section, for. B. a piece of pipe or nipple, at the end portion of a seal, z. As an O-ring, is present or has a tapered sealing end. This sealing end is then introduced into the filling port 32, wherein the countersink 321 of the filling port 32 ensures a reliable seal.
  • the filling device can also have a ventilation / venting section, which is plugged into the venting port 22 analogously; In principle, it is possible that the ventilation takes place in the environment.
  • the filling device has a locking device which engages behind the locking collar 115 of the valve device 10 in a form-fitting manner, so that the filling device and the valve device 10 are securely connected during the filling process.
  • Fig. 5 shows a longitudinal section in the plane QQ (see Fig. 1 ).

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  • Devices For Dispensing Beverages (AREA)
  • Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)
  • Distillation Of Fermentation Liquor, Processing Of Alcohols, Vinegar And Beer (AREA)
EP16001834.7A 2015-08-21 2016-08-22 Recipient de boisson et procédé Not-in-force EP3133045B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
HRP20191496 HRP20191496T1 (hr) 2015-08-21 2019-08-19 Spremnik za piće i metoda

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102015010873.5A DE102015010873A1 (de) 2015-08-21 2015-08-21 Ventilvorrichtung für Getränkebehälter, Getränkebehälter, Füllvorrichtung und Verfahren

Publications (2)

Publication Number Publication Date
EP3133045A1 true EP3133045A1 (fr) 2017-02-22
EP3133045B1 EP3133045B1 (fr) 2019-05-29

Family

ID=56800107

Family Applications (1)

Application Number Title Priority Date Filing Date
EP16001834.7A Not-in-force EP3133045B1 (fr) 2015-08-21 2016-08-22 Recipient de boisson et procédé

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EP (1) EP3133045B1 (fr)
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116654446A (zh) * 2023-07-05 2023-08-29 塔罗斯科技股份有限公司 一种饮料包装袋

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102016004609B4 (de) 2016-04-19 2019-03-14 Bsiatec GmbH Füllvorrichtung und Verfahren zu Befüllen flexibler Behälter

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Publication number Priority date Publication date Assignee Title
US2165684A (en) * 1937-03-08 1939-07-11 Frederick A Struck Portable liquid container and means for filling the same
DE2736281A1 (de) * 1977-08-11 1979-02-22 Bier Drive Ag Armatur fuer einen drucktank

Family Cites Families (2)

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Publication number Priority date Publication date Assignee Title
GB0227941D0 (en) * 2002-11-29 2003-01-08 Interbrew Sa Beer line and flow restrictor
WO2008101275A1 (fr) * 2007-02-19 2008-08-28 Sunbeam Corporation Limited Récipient composite de stockage et distribution de liquides

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2165684A (en) * 1937-03-08 1939-07-11 Frederick A Struck Portable liquid container and means for filling the same
DE2736281A1 (de) * 1977-08-11 1979-02-22 Bier Drive Ag Armatur fuer einen drucktank

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116654446A (zh) * 2023-07-05 2023-08-29 塔罗斯科技股份有限公司 一种饮料包装袋

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ES2742506T3 (es) 2020-02-14
EP3133045B1 (fr) 2019-05-29
PT3133045T (pt) 2019-09-05
DE102015010873A1 (de) 2017-02-23

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