PORTABLE CARBONATING DISPENSERS
20240359146 ยท 2024-10-31
Assignee
Inventors
- Garrett Waggoner (Tampa, FL, US)
- Andrew GAY (Tampa, FL, US)
- THOMAS A. URBANIK (Watertown, MA, US)
- Corey Jerolmon (Boston, MA, US)
- Cole HOUSTON (Central Falls, RI, US)
Cpc classification
B01F33/50111
PERFORMING OPERATIONS; TRANSPORTING
B01F23/23611
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01F23/2361
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A portable carbonating dispenser utilizes an onboard supply of carbonation gas and a carbonation control module for permitting a user to carbonate base liquid stored in an onboard base liquid container. The carbonation control module may include a user actuated button for selectively activating the carbonation. The base liquid container may include an extended portion for increasing the exposure of base liquid to carbonation gas. A vertical viewing window enables a user to view carbonation and the level of base liquid in the container. An isolation component may be useful to isolate an additive cartridge from carbonation pressure during carbonation in applications where the dispenser utilizes additive cartridges. Safety venting and locking features may be provided on the mode selector to prevent a user from accidentally pressurizing the cartridge space. A refill station may be provided to refill the portable carbonating dispenser.
Claims
1-21. (canceled)
22. A portable carbonating dispenser comprising: a base liquid container for containing a base liquid supply; an additive cartridge received by the base liquid container, wherein the additive cartridge at least partially extends into the base liquid container; a carbonation gas container for containing a supply of carbonation gas; and a carbonation flow control assembly for conveying carbonation gas from the carbonation gas container to pressurize the base liquid supply, the carbonation flow control assembly including a user-actuated flow control component for controlling a flow of carbonation gas to the base liquid supply.
23. The portable carbonating dispenser of claim 22, wherein the base liquid supply is held within an interior space of the base liquid container, and wherein at least a portion of the additive cartridge is configured to extend within the interior space.
24. The portable carbonating dispenser of claim 22, further comprising an additive cartridge secured to the base liquid container for receiving a flow of base liquid from the base liquid container and adding a flow of additive to the received flow of base liquid to form a beverage.
25. The portable carbonating dispenser of claim 22, further comprising an indicator configured to indicate the level of carbonation of the base liquid.
26. The portable carbonating dispenser of claim 25, wherein the indicator is configured to indicate the level of carbonation of the base liquid in response to a pressure of the base liquid container.
27. The portable carbonating dispenser of claim 22, wherein the additive cartridge includes an adjustment actuator to adjust an amount of additive dispensed from the additive cartridge.
28. The portable carbonating dispenser of claim 22, further comprising an isolating component configured to selectively isolate the additive cartridge from the base liquid container.
29. The portable carbonating dispenser of claim 22, wherein the additive cartridge is received by a lid of the base liquid container.
30. The portable carbonating dispenser of claim 22, wherein the base liquid container and the carbonation gas container are housed within the same enclosure.
31. A portable carbonating dispenser comprising: a base liquid container for containing a base liquid supply; a carbonation gas container for containing a supply of carbonation gas; a carbonation flow control assembly for conveying carbonation gas from the carbonation gas container to pressurize the base liquid supply, the carbonation flow control assembly including a user-actuated flow control component for controlling a flow of carbonation gas to the base liquid supply; and a relief valve adapted to maintain the base liquid container at or below a threshold pressure.
32. The portable carbonating dispenser of claim 31, wherein the relief valve is configured to open to release pressure from the base liquid container at the threshold pressure.
33. The portable carbonating dispenser of claim 31, wherein the relief valve is in fluid communication with the base liquid container and an exterior space having atmospheric pressure.
34. The portable carbonating dispenser of claim 31, the carbonation flow control assembly including a regulator adapted to regulate the carbonation gas entering the base liquid container.
35. The portable carbonating dispenser of claim 31, wherein the relief valve is adapted to provide an audible indication to a user that the carbonation gas container is full.
36. The portable carbonating dispenser of claim 31, the relief valve including a biased sealing element adapted to move in response to the threshold pressure.
37. The portable carbonating dispenser of claim 31, further comprising a lid adapted to cover the base liquid container, wherein the relief valve is positioned on the lid.
38. The portable carbonating dispenser of claim 31, wherein the relief valve is adapted to maintain a substantially constant pressure at or below the threshold pressure.
39. The portable carbonating dispenser of claim 31, wherein the threshold pressure is about 60 psi.
40. A container closure comprising: a closure base having a journal, with a closure insert disposed therein, the closure insert having a closure insert wall defining a cartridge receiving space, the closure insert wall having at least one insert port defined thereon, the closure insert being adapted to move to a dispensing position in which the at least one insert port permits a flow of fluid into the cartridge receiving space.
41. The container closure of claim 40, wherein the container closure is configured to receive an additive cartridge.
42. The container closure of claim 40, further comprising an indicator configured to indicate a pressure associated with the container closure.
43. The container closure of claim 40, further comprising an actuator configured to move the closure insert to the dispensing position.
44. The container closure of claim 40, wherein the container closure is configured to be received by and serve as a lid for a container.
45. The container closure of claim 43, wherein the actuator is configured to be rotatable to move the closure insert to the dispensing position.
46. The container closure of claim 40, wherein the closure insert includes an opening formed along a circular wall of the closure insert adapted to fluidly couple an interior space of the closure insert with an exterior space.
47. The container closure of claim 40, wherein the closure insert is adapted to move to a closed position and further comprising a seal configured to seal an interior space of the closure insert from an exterior space while the closure insert is in the closed position.
48. The container closure of claim 40, wherein the actuator includes a projection configured to engage with a recess on the closure insert.
Description
DESCRIPTION OF THE DRAWINGS
[0017] The above and other attendant advantages and features of the invention will be apparent from the following detailed description together with the accompanying drawings, in which like reference numerals represent like elements throughout. It will be understood that the description and embodiments are intended as illustrative examples and are not intended to be limiting to the scope of invention, which is set forth in the claims appended hereto. The following Figures, unless otherwise indicated, illustrate example apparatus, systems or methods in illustrative embodiments and according to aspects of the disclosure.
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DETAILED DESCRIPTION
[0035] An example portable carbonating dispenser according to aspects of the disclosure is illustrated in
[0036] Housing interior space 14 may accommodate a base liquid container 100 for containing a supply of base liquid, such as water, or other beverage precursor liquid. Base liquid container 100 may include an interior chamber 102 having an asymmetrical shape, which advantageously improves carbonation of the base liquid. More particularly, interior chamber 102 may include an extended section or well 104 which has an increased depth. A carbonation gas nozzle receptacle 110 may be located beneath the base liquid container extended section 104 and may receive a carbonation nozzle 256 of carbonation flow control assembly 220. A small passage in the carbonation gas nozzle receptacle permits a flow of carbonation gas to introduced to the base liquid in a bottom portion of the extended section 104. Extended section thus provides for extended exposure of base liquid to carbonation gas as carbonation gas travels upward through the extended depth of base liquid, thereby increasing the level of carbonation achieved compared to base liquid container without this feature, for example. In addition, as best shown in the cross-section in
[0037] Referring more particularly to
[0038] Carbonation gas flow control assembly 220 may include a refill connection fitting 230 disposed in a circular recess 224 in floor panel 222 to allow for alignment of the refill connection fitting with mating components on a refill station.
[0039]
[0040] Carbonation systems according to the disclosure may be particularly adaptable to dispensers that utilize replaceable additive cartridges. For example, closure 300 may provide for the installation of a replaceable flow-through additive cartridge 400. Such cartridges 400 may include features similar to those described in the above-referenced U.S. Pat. No. 10,888,826. Cartridge 400 may be installed in a dispensing passage of a container lid or closure and may have a configuration and features that cause additive to be mixed with base liquid as the base liquid flows through the cartridge. Such a cartridge may also provide user adjustment of the amount of additive added to the base liquid flow by rotation of a flavor dial on the cartridge. Referring to
[0041] According to aspects of the instant disclosure, features are provided to support carbonation in dispenser environments that include additive cartridges described above. More particularly, features are provided for isolating the additive cartridge from the base liquid supply and accompanying higher pressures within the base liquid container during carbonation. It will be understood that the isolating component described herein also isolates the dispensing passage 302 of closure 300 and may be utilized as such in cases (i.e., where a user is carbonating and dispensing only water in the portable carbonating container) where an additive cartridge is not in use or present in the dispensing passage 302.
[0042] According to further aspects of this disclosure, an example implementation of an isolation component may be provided in a container closure 300 as illustrated in
[0043] Closure insert 350 may include a cylindrical outer wall 351 extending to an end wall 353 to define an interior cartridge receiving space 352 for receiving an inlet end 404 (see
[0044] As will be recognized from the instant disclosure, when closure insert 350 is installed and seated within the closure base journal 312, insert ports 354 and blocking surfaces 355 are arranged to cooperate with the journal ports 314 on the closure base 310. Rotation of the insert 350 to a dispensing position brings the insert ports 354 into alignment with the journal ports 314 and base liquid may thus flow to the interior cartridge receiving space 352. Rotation of the insert 350 to a carbonation position brings the blocking surfaces 355 into alignment with the journal ports 314 such that the interior cartridge receiving space 352, and thus an installed cartridge 400, is isolated from the base liquid container such that carbonation pressure may be applied therein without affecting the cartridge 400. In this example, the described features on the insert 350 and closure base 310 cooperate to provide an isolation component, which allows a user to selectively isolate the cartridge from pressure in the base liquid container 100. As will be recognized, insert seal 360 provides for sealing of the insert within the closure base journal 312 while rotation occurs. Insert seal 360 also provides for respective sealing engagement of each of the blocking surfaces 355 with the interior wall of closure base journal 312 and provide a seal that completely surrounds each of the journal vents 314 when the insert 350 is in a carbonation position, thus providing a seal against the relatively high pressure of the base liquid container 100 during a carbonation operation.
[0045] A mode selector lever 340 provides for user actuation (rotation) of the closure insert 350 to configure the closure 300 into a dispensing mode or carbonation mode. Mode selector lever 340 may include an actuation handle 342 and an annular ring 344 adapted to surround the lever engaging surface 357 of the insert 350 when installed thereon. The installed position of mode selector lever 340 on the insert 350 is best illustrated in
[0046] As best seen in
[0047] In accordance with aspects of the disclosure, the closure 300 may be provided with additional features to control carbonation pressure and ensure that the cartridge 400 is not exposed to carbonation pressure during operation. Closure 300 may be provided with an interlock feature which prevents a user from switching to a drinking mode if the base liquid supply is pressurized. In an illustrative embodiment, the mode selector lever 340 may be provided with a stop tab 347 (
[0048] According to a further aspect, the closure 300 may be provided with a vent 381 for venting pressure from the base liquid container 100. Vent 381 may be a push button type valve with an exposed actuation surface extending from the closure base 310 and housed within a pedestal on the closure base. The vent surface may be arranged and adapted to be engaged by a ramped surface 346 on the mode selector lever 340, which engages the surface and depresses the button as the mode selector lever 340 is rotated (counterclockwise in
[0049] According to a further aspect of the disclosure, closure 300 may be provided with a relief valve 390 which may be set at a threshold pressure to limit the maximum pressure within the base liquid supply container. Relief valve 390 may be of a known construction, having a spring biased sealing element which is set to unseat and relieve pressure above a predetermined limit, typically 60 psi.
[0050]
[0051] According to further aspects of the disclosure, the portable carbonating dispenser may be refilled (recharged with carbonation gas) using a refill station. An example refill station 500 arrangement is illustrated in
[0052] Refill gas container 510 may be arranged and adapted to contain liquified or a gaseous form of carbonation gas, such as carbon dioxide. Typically, when carbonating gas is stored in a liquid form, an upper part of the interior space of the gas container 510 will contain a supply of the gaseous form existing in equilibrium with the liquid form residing in a lower part of the interior space. Refill gas container 510 may have an outlet fitting secured to the upper portion thereof to permit supply of gaseous form of carbonation form regardless of the form stored in the container. Carbonation gas is supplied to the refill valve 526 from the refill gas container 510. A user may actuate the refill valve 526 using an actuation lever 524 once the portable carbonating dispenser 50 is locked in place. During a refill operation, carbonation gas is thus supplied from the refill gas container 510, through control valve 526 and through the onboard gas container refill manifold (
[0053]
[0054] It should be understood that implementation of other variations and modifications of the aspects and embodiments described herein are intended to be part of this disclosure and the coverage intended. The scope of the invention, in its various aspects may be readily apparent to those of ordinary skill in the art, and the invention is not limited to the specific aspects or embodiments described herein, but is intended to cover any and all modifications, variations or equivalents that may be apparent from this disclosure.