The invention relates to a container for beverage, in particular for carbonated beverage.
US 6 360 923 B1 describes a container for beverage, provided with a compartment in which a beverage to be dispensed, such as beer or other carbonated beverage, is included, as well as a pressure gas holder with a pressure control valve for automatically keeping the beverage in the container at a desired set pressure. The container is provided with a dispensing valve, for instance in an upper side, through which beverage can be dispensed.
WO 02/42197 A1 describes a comparable container, where, as a dispensing valve, a valve is used as is known from aerosol technique. Such valves are generally used in aerosol cans for misting liquids or dispensing gases. In this application, an operating mechanism is described for operating the valve, which operating mechanism is arranged for repeatedly opening the valve against the spring pressure of the valve, each time when a portion of the beverage is dispensed.
NL 1015359 describes a dispensing device for beverage, in particular carbonated beverage such as beer, comprising a tapping column and a cooling space, where in the cooling space a container can be set up in which the beverage is included. From the cooling space, a dispensing hose with a valve on a leading end can be passed through the tapping column, such that said valve can be placed in an operating mechanism in the tapping column, so that the valve can be opened and closed with it. The end of the hose remaining behind in the cooling space is provided with a connecting element with a bend, which, using a tapping head, can be pressed down against a valve assembly of the container, so that a gas valve and a beer valve of the valve assembly are opened. A carbon dioxide (CO2) cylinder is provided, which is connected with the tapping head via a second line. Upon pressing down the tapping head, an open communication is formed by the connecting element between the second line and the inside of the container, via the gas valve, for pressurizing the beverage in the container, so that the beverage can be dispensed via the dispensing hose. Pressure control means are provided in or at the tapping head and/or the CO2 cylinder for setting a control pressure for the CO2.
The invention contemplates the provision of a container which can be used, for instance, in a device such as for instance described in NL 1015359, which container can be connected simply and fast for use and with which at all times a desired dispensing pressure is obtained during use. In a container according to the invention, this is achieved by the features according to claim 1 or 2.
In a container according to the invention, use is made of a coupling element which is particularly simple in structure and use. By pressing this coupling element onto or into the valve, the valve is opened and kept open in that the coupling means of the container and the coupling element are in mutual engagement. As a result, beverage can flow directly from the inner space of the container into the dispensing hose. By means of the pressure control unit, the pressure in the inner space is always held at the desired value, for instance set at the equilibrium pressure of the gas in the beverage. The valve can thus be designed simply as an aerosol valve, which means that a robust and relatively cheap valve is used. Surprisingly, it has been found that such a container affords a particularly good dispensing pattern, also for foaming beverages such as beer. The use of a valve, in particular an aerosol valve, then affords the advantage of such valves being cheap to obtain, requiring only a relatively small opening for building-in, so that the pressure thereon is small and mounting them requires relatively little force and moreover contamination of the beverage is simply prevented.
In a particularly advantageous embodiment, the pressure control unit is included entirely within the inner space of the container, so that the desired control pressure can be pre-set and cannot be adjusted by a consumer. The automatically controlled pressure then affords enhanced safety compared with containers where the pressure needs to be set from outside. Such pressure control units are known per se, for instance from NL 1008601C, FR 2 331 485 A, EP 0 349 053, WO 95/17340 and U.S. Pat. No. 5,368,207, which control devices are all suitable for use within the invention. In each of these known devices, however, a valve in the upper side of the respective holder needs to be operated directly for repeated opening and closing of the dispensing opening. An important advantage of such a container is that only beverage needs to be passed out of the container and no gas or the like into the container. As a result, contamination of the beverage is simply prevented.
In a particularly advantageous further embodiment, a pressure control unit is used with an internal volume in which at least so much pressure gas, in particular CO2, is included that the ratio between the volume of pressure gas (measured at 1 atmosphere) and the volume of beverage to be dispensed is smaller than at least 1:25. Preferably, the ratio is smaller than 1:18, more particularly between 1:18 and 1:10. This affords the advantage that during the whole period that beverage is to be dispensed, a same tapping behavior is preserved, also when the keg has been tapped to the extent of being virtually empty. Then, preferably, use is made of a means in said internal volume that at least partly adsorbs and/or absorbs the pressure gas, such as activated carbon, zeolite or other like means known per se. The pressure in the pressure control unit, in particular of the pressure gas, is then, with the unit wholly filled, preferably lower than 12 bars, more particularly lower than 8 bars at room temperature, so that a safe device is obtained which moreover affords an advantageous ratio in volume of the pressure control unit and the volume of the device as a whole.
The valve is preferably secured in the container using a connection involving a click edge which has been obtained on the outside of the container. To that end, for instance a folded connection can be used with an inwardly or outwardly projecting folded edge which can be used as such a click edge, as first coupling means. Between the click edge and the second coupling means, during use, preferably a fixed connection is formed which moreover is liquid- and gas-tight. As a result, a simple connection has been obtained which is moreover cheap in production and use.
The cooperating first and second coupling means are preferably of self-locating design. To that end, in the use of a female valve, use can for instance be made of a locating edge in leading position with respect to the stem of the second coupling means, which tapers slightly in order to center the stem and hence also the coupling means with respect to the valve. In the use of a male valve, for instance an apron may be provided with a slightly conical shape, extending from the second coupling means around a connecting opening of the hose, which apron can reach, as a locating edge, over the valve for the purpose of centering the coupling means and the stem. It is then preferred that the locating edge comes into contact with the valve before the second coupling means is eventually secured on the first coupling means. In this way, the freedom of some relative movement is preserved.
The coupling element preferably comprises at least two openings which during use form a communication between the valve and the hose. The openings then preferably have a slightly elongate shape, so that a relatively large flow-through surface is obtained, the positioning of the openings relative to the valve is less critical and moreover the chance of blockades of the openings is reduced.
With a container according to the invention, at the end of the hose remote from the second coupling means, a shutoff is provided. This provides the advantage that upon coupling of the first and second coupling means the valve is opened and yet beverage can be prevented from flowing out of the hose, also when using an internal pressure control unit that automatically adjusts the pressure to the desired dispensing pressure. Preferably, said shutoff is supplied in a closed position and it is opened by a user only after broaching the container. To that end, the shutoff can for instance be produced in the closed position, or be placed in that position after production, or be provided with spring means biasing the shutoff in the closed position. In an alternative embodiment, of course, the hose may be closed off, for instance squeezed shut using external means such as a shutoff of the hose cock-type.
Preferably, the hose and the coupling element, and the shutoff if present, are jointly disposable. This is to be understood to mean in any case that they can be jointly taken from the container and removed for destruction, but of course they may also be designed so as to be separable from each other for recycling.
The invention furthermore relates to a dispensing hose and a method, in particular as respectively characterized by the features according to claim 15 and claim 16.
In the further subclaims, further advantageous embodiments of a container and device according to the invention are set forth.
To clarify the invention, embodiments of a device and method according to the invention will be further elucidated with reference to the drawing. In the drawing:
In this description, the same or corresponding parts have the same or corresponding reference numerals. All possible combinations of parts of the embodiments shown fall within the invention. In the description, containers for beer are shown and described, but it will be clear that also other fluids, in particular carbonated beverages, can be used in a container according to the invention.
In
In the inner space 4 of the container 1, at the lower side of the valve, a riser tube 5 is provided, through which beverage can flow to the valve 3. Further included in the inner space 4 is a pressure control device 6, comprising a container 7 in which a gas under pressure is included, in particular CO2, possibly together with active carbon or a like CO2-gas absorbing and/or adsorbing material. An alternative is for instance zeolite. Arranged on the container 7 is an automatically operating pressure controller 8 which can control a valve, in particular an aerosol valve connecting to the container 7, to open if the pressure in the inner space 4 of the container 1 falls below a desired control pressure. Examples of such pressure controllers 8 are described in the publications mentioned in the introduction. A container 1 as shown in
In the present invention, in a container according to
The valve 3 is surrounded by first coupling means 10, which in the container as shown in
A coupling element 12 is provided for operating the dispensing valve 3, which coupling element 12 moreover takes care of a fluid communication between the inner space 4 of the container 1 and a dispensing tube 13, in particular an at least partly relatively flexible dispensing tube, such as a hose 13, for dispensing the beverage. Shown in
A coupling element 12 as shown in
The valve 3 in the female variant is provided with a sleeve 24 which extends between the folded collar 9 and the riser tube and is substantially cylindrical. At an upper end of the sleeve 24, an opening 25 is provided to allow passage of the stem 15 with a proper fit. Arranged in the sleeve 24 is a valve body 26 biased in the direction of the opening by a spring 45, which valve body 26, on the side proximal to the opening, is provided with an edge 29 capable of sealing abutment against the ring 27 around the opening 25. Said ring 27 is preferably slightly elastic and thereby forms a valve seat. If the valve body 26 is pushed off the valve seat against the spring pressure, the dispensing valve is opened and a passage for beverage along the valve body is cleared. Using the stem 15 which can be inserted into the valve body 26, this opening movement of the dispensing valve can be achieved. The valve body 26 can be pushed off the valve seat so far that the openings 23 are brought at least partly and preferably wholly under the valve seat, for the desired magnitude of the flow-through between inner space 4 and the dispensing tube 13. The ring 27 abuts gas- and liquid-tightly against the outer side of the stem 15, at least above the openings 23 therein.
As the end 28 of the stem 15, in leading position in the direction of insertion, tapers slightly, a locating means is obtained, which considerably simplifies introducing the stem 15 into the valve 3, in particular into the opening 25 and the valve body 26 thereof. By providing at least a portion of the openings 23 in said slightly tapering end 28, moreover, at least that portion of the openings is brought, in frontal view, within the through-flow channel of the passage, so that the flow-through is further simplified. Sharp angles in the flow path for the beverage are thereby largely prevented.
Along an outer edge 17 of the flange 16 of the coupling element 12, an apron 18 is provided which fits around or within an edge 19 of the folded collar 9. Said edge then forms at least a part of the first coupling means 10. The apron 18 in the embodiment shown in
In
In
In
In the embodiments shown in
In a container according to the invention, preferably, prior to use and after the container has been filled and the pressure control device has been included in the inner space, the shutoff valve is placed and covered by seal means, for instance a cap. Moreover, preferably, the coupling element is covered on the side of the stem 15, at least such that the stem and the openings 23 are covered as well as the valve 34. In this way, unintended or undesired use of the device can be prevented or at least be rendered visible, while moreover contamination is prevented. These seal means and/or protect means can be wholly or partly removed before use or be made of pierceable design.
In each of the embodiments shown, the coupling element 12 is used to open the dispensing valve 3 completely in one go and to keep it open. To that end, the first and second coupling means 10, 14 cooperate. In the use of a container 1 according to the invention, the hose 13 is preferably supplied as a loose item along with the coupling element 12 and preferably the valve 34 fixedly connected therewith. The container is cooled to a desired temperature, for instance between 0 and 8 degrees Centigrade, which temperature is naturally chosen depending on the beverage. To that end, a refrigerator 53 of the tapping device as shown in
The container is preferably designed as disposable container, while container and hose with coupling element can be jointly discarded. The hose then preferably ensures during use that no contact exists between the beverage to be dispensed and the fixed parts of the tapping device, such as tapping column 42, cock 43, connecting means, refrigerator 40 and the like, so that the necessity of cleaning is limited to a minimum.
It has been found that in contrast to the known devices, where a minimal amount of CO2 per liter was aimed for, and which conventionally utilized less than 40 milliliters (at room temperature) of CO2 for each liter of beer, more CO2 leads to a much better tapping behavior in tapping devices with an automatic pressure control as described. Surprisingly, it has been found that it is advantageous, in any case with blond beers, when the ratio of CO2 to beverage (in particular beer) is less than 1:25, for instance between 1:18 and 1:10. Surprisingly, it has been found that with such a ratio the tapping behavior during tapping of the entire volume of beverage can be kept optimal, also in the case of relatively long lines, for instance of a length greater than approximately twice the height of the container.
In
In all the embodiments shown, the dispensing line is designed as a flexible dispensing hose. It will be clear, however, that this dispensing line can also be made partly or substantially completely stiff.
In the embodiments shown, a valve 3 has been shown which can be repeatedly opened and closed. However, it is also possible to use a closure to be opened a single time. The container can be used in any position, both upstanding as shown, but also horizontally or with the valve 3 facing down, in which case the riser tube can be omitted or needs to be designed differently so as to have an inlet near a lowest point of the inner space 4.
The invention is not limited in any way to the embodiments shown in the description and drawings. Many variations thereon are possible within the framework of the invention.
For instance, use can be made of a bag-in-container type container, where the pressure control unit may be accommodated in the bag or between the bag and the container. The dispensing valve may be designed differently and be arranged at a different position. The coupling element may be so designed as to connect fluid- and gas-tightly to the container, thereby forming a dispensing chamber in the coupling element. The coupling element may be designed in a different manner and for instance be built together from different parts or be built up in multiple injecting molding passes and/or from multiple materials. The container can have a stand ring on which it can be set up and may be manufactured from any suitable material. The pressure control unit can form a fixed part of the container and can for instance be provided in a compartment of the container.
These and comparable variations are understood to fall within the framework of the invention as outlined by the claims.
Number | Date | Country | Kind |
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1031412 | Mar 2006 | NL | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/NL2007/050113 | 3/19/2007 | WO | 00 | 4/8/2009 |