Carbonator with rotatable carbonation head

JP2024522271A5Active Publication Date: 2025-07-17SODA STREAM INDUSTRIES LTD
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Patent Information

Application Number
JP2023572240
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2021-06-07
Filing Date
2022-05-15
Publication Date
2025-07-17
Estimated Expiration
2042-05-15

AI Technical Summary

Technical Problem

Existing carbonation devices lack efficient mechanisms for safely releasing excess pressure from carbonated liquids without causing uncontrolled bottle dislodgment, particularly when bottles are removed from the carbonation head.

Method used

A carbonation device with a rotatable carbonation head equipped with pressure relief valves that automatically adjust between locked and released positions based on the bottle's attachment state, ensuring safe pressure release during and after carbonation.

Benefits of technology

The solution provides a secure and controlled mechanism for releasing excess pressure, preventing bottle dislodgment and ensuring safe handling during and after carbonation, enhancing user safety and device efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The carbonator comprises a rotatable carbonator head with at least one pressure release valve, a carbonation tube connectable via a pipe to a gas canister, and a flange for engaging a neck of a bottle filled with a liquid to be carbonated by threading the neck into or onto the flange to hold the bottle securely with the carbonation tube maintained within the bottle, and for disengaging the neck of the bottle from the flange by unscrewing the neck from the flange, wherein the rotatable carbonator head is configured to rotate from a released position to a locked position when the neck is threaded into or onto the flange, and wherein the rotatable carbonator head is configured to rotate from the locked position to the released position when the neck is unscrewing and unscrewing from the flange.
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Description

[Technical field]

[0001] FIELD OF THEINVENTION The present invention relates to a carbonator, and more particularly to a carbonator with a rotatable carbonator head and pressure relief feature. [Background technology]

[0002] Carbonators are commonly used in homes, offices, cafeterias, and other environments. A typical carbonator may be operated to carbonate water or other liquid by injecting carbon dioxide into the water or other liquid in a bottle that may be attached to the device. Other types of carbonators may be configured to dispense a carbonated beverage into a cup or other container.

[0003] Carbon dioxide gas, which is injected into a liquid to carbonate the liquid, is typically provided in a canister of pressurized or liquefied gas. The carbonator includes a user-operable mechanism for releasing the gas from the cylinder to direct the gas into the liquid for carbonation. Typically, operation of the gas release mechanism causes the mechanism to open a valve on the cylinder. When the gas canister is installed in the carbonator, a valve head containing a valve is connected to the gas canister connector on the carbonator.

[0004] To carbonate water or another liquid (hereinafter referred to as water for brevity), a bottle filled with liquid is connected to the carbonation head of the carbonator, and once the bottle is securely attached to the carbonation head, a user can press a lever or otherwise activate the carbonation process, during which compressed carbon dioxide is pumped from the canister through a tube and a controllable valve into the bottle. Once carbonation is complete, the bottle is released from the carbonation head, but typically not before excess pressure in the bottle is released by a controlled pressure release valve. The release of excess pressure is required to avoid uncontrolled release and undesired spraying of the bottle when it is removed from the carbonator head.

[0005] There are various known mechanisms for releasing excess pressure from a bottle containing the carbonated liquid after carbonation is complete. One such mechanism involves tilting a bottle containing the carbonated liquid, which has been previously screwed (before carbonation) into a carbonation position on the carbonator, to actuate a pressure release valve before unscrewing the bottle from the carbonation head. Another known mechanism for releasing excess pressure is incorporated into a carbonation head having a pronged clamp. The prong holds the bottle and a limiting ring is used to hold the prong in place, thereby preventing the bottle from being inadvertently released while carbonation is taking place. Once carbonation is complete, a mechanism is configured to release excess pressure before the prong is released to allow the bottle to disengage from the carbonation head. Summary of the Invention

[0006] Thus, according to one embodiment of the present invention, there is provided a carbonation device comprising a rotatable carbonation head, the rotatable carbonation head comprising at least one pressure release valve, a carbonation tube connectable via a pipe to a gas canister, and a flange for engaging a neck of a bottle filled with a liquid to be carbonated by screwing the neck into or onto the flange to hold the bottle tightly with the carbonation tube maintained within the bottle, and for disengaging the neck of the bottle from the flange by unscrewing the neck from the flange. When the neck is screwed into or onto the flange, the rotatable carbonation head is configured to rotate from a release position to a locked position, and when the neck is unscrewing and unscrewing from the flange, the rotatable carbonation head is configured to rotate from the locked position to the release position. In the release position, if excess pressure is present within the bottle, said at least one pressure release valve is operative to open to release the excess pressure, and in the locked position, said at least one pressure release valve remains closed.

[0007] According to some embodiments of the present invention, the at least one pressure relief valve includes two pressure relief valves.

[0008] According to some embodiments of the present invention, the carbonator comprises an activator for actuating said at least one pressure relief valve.

[0009] According to some embodiments of the invention, the activator is configured to actuate the at least one pressure relief valve by depressing a plunger of each of the at least one pressure relief valve.

[0010] According to some embodiments of the present invention, a cam is provided adjacent to the rotatable carbonation head, the cam comprising at least one sloping wall that defines a tapered space between the cam and the plunger of each of said at least one pressure relief valve in physical contact with the plunger when the carbonation head is in the released position.

[0011] According to some embodiments of the present invention, the carbonation head is restricted as it rotates to the pivot sector.

[0012] According to some embodiments of the present invention, when the carbonation head rotates to the first end of the pivot sector, the carbonation head is in a release position.

[0013] According to some embodiments of the present invention, when the carbonation head is rotated away from the first end of the pivot sector, the carbonation head is in a locked position.

[0014] According to some embodiments of the present invention, when the carbonation head rotates to the second end of the pivot sector, the carbonation head is in a locked position.

[0015] According to some embodiments of the present invention, a plurality of locking teeth are provided to clutch onto a rim projecting laterally from the neck of the bottle when the carbonator head is in a locked position.

[0016] According to some embodiments of the present invention, the carbonator includes a wall surrounding the flange to prevent back-out of the locking teeth and to retain the neck clutched by the locking teeth.

[0017] According to some embodiments of the invention, a recess is provided in the wall surrounding the flange so that when the carbonation head is rotated to the release position, the locking teeth can retract into the recess to release the laterally protruding rim of the bottle neck.

[0018] According to some embodiments of the invention, a stop is provided that is coupled to the rotatable carbonation head and is limited in movement within a groove, opposite ends of the groove defining locked and released positions.

[0019] According to some embodiments of the invention, the groove is provided with a first recessed portion on the periphery of the groove such that a protrusion on the stopper can slide into the first recessed portion when the carbonation head reaches the released position.

[0020] According to some embodiments of the invention, the groove is provided with a second recessed portion on the periphery of the groove so that when the carbonation head is rotated to the locked position, the protrusion on the stopper can slide into the second recessed portion.

[0021] According to some embodiments of the present invention, the carbonator further comprises a housing mounted on the base and provided with a gas canister compartment, the housing being suspended over the base and comprising a lateral extension to accommodate the carbonator head.

[0022] According to some embodiments of the present invention, the carbonation head is configured to rotate only when the bottle is fully screwed into or onto the flange.

[0023] According to some embodiments of the present invention, the carbonator further comprises one or more active teeth to facilitate rotation of the carbonator head only when the bottle is fully screwed into or onto the flange.

[0024] According to some embodiments of the present invention, there is provided a rotatable carbonation head comprising at least one pressure relief valve, a carbonation tube connectable via a pipe to a gas canister, and a flange for engaging a neck of a bottle filled with a liquid to be carbonated by screwing the neck into or onto the flange to hold the bottle tightly with the carbonation tube maintained within the bottle, and for disengaging the neck of the bottle from the flange by unscrewing the neck from the flange, wherein when the neck is screwed into or onto the flange the rotatable carbonation head is configured to rotate from a released position to a locked position, and when the neck is unscrewing and unscrewing from the flange the rotatable carbonation head is configured to rotate from the locked position to the released position, wherein in the released position if excess pressure is present in the bottle, said at least one pressure relief valve is operative to open to release excess pressure, and in the locked position said at least one pressure relief valve remains closed. [Brief description of the drawings]

[0025] In order to better understand the present invention and appreciate its practical applications, the following drawings are provided and are referred to hereinafter. It should be noted that the drawings are given by way of example only and are not intended to limit the scope of the present invention in any way. Similar elements are provided with similar reference numerals.

[0026] [Figure 1] FIG. 1 illustrates a general view of a carbonator with a rotatable carbonation head according to some embodiments of the present invention. [Diagram 2] FIG. 2 is a view of the mounting portion of the carbonation head of the carbonator shown in FIG. 1. [Diagram 3]FIG. 2 is a cross-sectional view of the carbonation head of the carbonator shown in FIG. [Figure 4] FIG. 2 is a top view of a portion of the carbonation head of the carbonator shown in FIG. 1. [Figure 5A] FIG. 2 is a top view of the (transparent) upper portion of the carbonator of FIG. 1, showing a cross section of the pressure relief valve with the carbonator head in the carbonation position. [Figure 5B] FIG. 2 is a top view of the (transparent) upper portion of the carbonator of FIG. 1, showing a cross section of the pressure relief valve with the carbonator head in the induced pressure relief position. [Figure 6A] FIG. 2 is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with the locking teeth in a locked position. [Figure 6B] FIG. 2 is a bottom view of the mounting portion of the carbonator head of the carbonator shown in FIG. 1 with the locking teeth in the locked position. [Figure 6C] FIG. 2 is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with the locking teeth in an unlocked position. [Figure 6D] FIG. 2 is a bottom view of the mounting portion of the carbonator head of the carbonator shown in FIG. 1 with the locking teeth in the unlocked position. [Figure 7A] FIG. 2 is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with a bottle inserted into the carbonator head mount and about to be screwed in, with the effective teeth in the inactive position. [Figure 7B] FIG. 2 is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with the bottle fully threaded into the carbonator head mount and the active teeth in the inactive position. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0027] In the following detailed description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. However, it will be understood by those skilled in the art that the present invention may be practiced without these specific details. In other instances, well-known methods, procedures, components, modules, units and / or circuits have not been described in detail so as not to obscure the present invention.

[0028] For example, descriptions utilizing terms such as "processing," "computing," "calculating," "determining," "determining," "analyzing," "examining," and the like, may refer to operations and / or processes of a computer, computing platform, computing system, or other electronic computing device that manipulates and / or transforms data represented as physical (e.g., electronic) quantities in the registers and / or memory of the computer into other data similarly represented as physical quantities in the registers and / or memory of the computer, or into other data similarly represented as physical quantities in other information non-transitory storage media (e.g., memory) capable of storing instructions for performing the operations and / or processes, although embodiments of the invention are not limited in this respect. As used herein, the terms "plurality" and "a plurality" may include, for example, "multiple" or "two or more." The term "plurality" may be used throughout this specification to describe two or more components, devices, elements, units, parameters, and the like. Unless expressly stated, method embodiments described herein are not limited to a particular order or arrangement. Furthermore, some of the described method embodiments or elements thereof may occur or be performed simultaneously, contemporaneously, or together. Unless otherwise indicated, as used herein, the conjunction "or" should be understood to be inclusive (any or all of the described alternatives).

[0029] According to some embodiments of the present invention, a novel carbonator is introduced. According to some embodiments, the carbonator comprises a carbonator head with a fitting configured to receive a bottle containing a liquid to be carbonated by screwing the bottle into a locked position where carbonation can occur.

[0030] When a bottle is screwed onto the carbonation head attachment, the carbonation head is configured to pivot (e.g., within a range of 15-60 degrees, e.g., 45 degrees) about a predefined pivot sector in the direction of the screwing motion to bring it into a locked position. When the bottle is in the locked position and securely attached, a user can perform carbonation by pressing a carbonation button or lever, which releases carbon dioxide (or any other carbonation gas) from a gas canister into the carbonation bottle through a designated pipe terminating in a carbonation tube held within the bottle. A restrictor can be provided to limit the rotation of the carbonation head within the predefined pivot sector, a first end of the pivot sector located where the bottle is located in the locked position, a second end of the pivot sector opposite the location of the first end located where the bottle is in the released position, and a controlled pressure release mechanism releases excess pressure in the bottle. Any of the end positions of the pivot sector may be either a separate end of the sector or an end position of a sub-sector of the sector (e.g., allowing some movement within the sub-sector while still remaining in the locked or released position). In some embodiments of the invention, the locked position may be configured to be any position of the carbonation head along the pivot sector that is not the released position.

[0031] According to some embodiments of the present invention, the carbonation head may include one or more pressure relief valves to release excess pressure from the bottle after carbonation. In some embodiments of the present invention, the carbonation head may include a primary pressure relief valve and an additional pressure relief valve that acts as a safety valve to release pressure from the carbonation bottle in the event that the primary pressure relief valve fails. The pressure relief mechanism may include an activator that may be positioned adjacent to the rotatable carbonation head to actuate said one or more pressure relief valves when the rotatable carbonation head rotates back to the end of the release position sector.

[0032] Each of the one or more pressure relief valves can include a depressible plunger attached to the carbonation head to activate that valve. In some embodiments of the invention, the activator can include a cam, e.g., a sloped wall that defines a tapered space between each of the cams and the plungers that eventually come into physical contact with the plungers when the carbonation head rotates and reaches the release position.

[0033] Once the carbonation process is finished (e.g., a user can determine when the carbonation process is complete), the user can then unscrew the bottle by rotating the bottle in a direction opposite to the direction of rotation in which the bottle was screwed onto the attachment. As the user begins to unscrew the bottle, the carbonator head pivots from the locked position across the pivot sector back to the released position. In the released position, said one or more pressure relief valves are activated to release excess pressure from the bottle. The user can further twist the bottle to further unscrew the bottle and ultimately remove the bottle from the carbonator head attachment. The carbonator head remains in the released position with the pressure relief valves remaining open while the remaining bottle is unscrewed.

[0034] FIG. 1 is a general view of a carbonator with a rotatable carbonation head according to some embodiments of the present invention.

[0035] Carbonator 100 comprises a base 101 with a generally flat support surface 103 for supporting a bottle before and / or after the bottle is engaged with the carbonator head. A towering housing 104 is supported on base 101. Housing 104 comprises a gas canister compartment 102 in which a gas canister (e.g., a gas cylinder, not shown in this figure) containing compressed carbon dioxide or other carbonation gas in gaseous or liquefied form (hereinafter referred to as simply gas) may be placed and connected to a pipe, and an actuator (not shown in this figure) for delivering gas from the gas canister to a bottle filled with water or other liquid (hereinafter referred to as simply water) to carbonate the water.

[0036] A lateral extension of the housing 104 is suspended from the support surface 103 and houses a rotatable carbonation head 110 configured to engage a bottle filled with water by threading the neck of the bottle into (or alternatively, in some embodiments onto) a flange (220, see FIG. 3) to securely fasten the bottle to the carbonation head. Once the bottle is securely fastened to the carbonation head, the carbonation tube 108 is maintained within the bottle to facilitate carbonation of the water by delivering gas directly into the water. The carbonation head 110 has two pressure relief valves, a first pressure relief valve 112 and a second pressure relief valve 114, to release excess pressure after carbonation is complete and before the bottle is disengaged from the carbonation head. The employment of two pressure relief valves is designed to ensure that excess pressure is released even if one of the valves fails.

[0037] FIG. 2 is a diagram of the carbonator head mounting portion 106 of the carbonator shown in FIG.

[0038] 3 is a cross-sectional view of the carbonator head of the carbonator shown in FIG.

[0039] The mounting portion 106 includes an opening 219 through which the neck 212 of the water-filled bottle 210 can be inserted to mount to the carbonation head. The neck 212 can include external threads 214 that mate with the internal threads 206 of the flange 220. To increase the security of the device, the peripheral locking teeth 202 are designed to hold the neck 212 by clutching to a rim 216 that protrudes laterally from the neck 212. In any other position of the rotatable carbonation head, except for the release position, the inner wall surface 107 of the mounting portion 106 prevents the locking teeth 202 from retracting backwards to hold the neck 212 clutched by the locking teeth 202.

[0040] When the carbonation head is rotated to the released position, each of the locking teeth 202 can retract outward into a designated recess in the mounting portion 106, allowing the neck 212 of the bottle 210 to be inserted into the flange 220 before the neck is threaded into the flange, or to disengage the neck 212 of the bottle 210 after the neck is fully unthreaded from the flange 220.

[0041] 4 is a top view of a portion of the carbonator head of the carbonator shown in FIG.

[0042] In some embodiments of the invention, a pressure release mechanism may be provided that comprises an activator located adjacent to the rotatable carbonation head. In some embodiments of the invention, the activator may comprise a cam 300, for example in the form of two angled walls, each of which ultimately defines a tapered space between the cam and the respective plunger 306 (of either of the pressure release valves 112 and 114) that terminates in a position that ensures direct physical contact between the angled wall and the plunger when the carbonation head rotates and reaches the release position. Thus, once carbonation is complete and the user begins to rotate the bottle in the direction of unscrewing, the carbonation head rotates from the locked position to the released position. At that position, the plunger is pushed down by the angled wall, resulting in the release of excess pressure in the bottle. Upon reaching the corresponding recess 204, the locking teeth 202 that were previously clutching to the rim 216 around the neck 212 of the bottle 210 retract, allowing the rim of the bottleneck to be released.

[0043] From that point on, the user can continue to unscrew the bottle until it is completely off and can be disengaged from the carbonation head.

[0044] FIG. 5A is a top view of the (transparent) upper portion of the carbonator of FIG. 1, showing a cross section of pressure relief valves 112 and 114, and showing a portion of the carbonator head when in the locked position.

[0045] FIG. 5B is a top view of the (transparent) upper portion of the carbonator of FIG. 1, showing a cross section of pressure relief valves 112 and 114 with the carbonator head in the induced pressure relief position.

[0046] The top of the gas canister 400 is shown attached to the gas canister mount 404. When the gas canister 400 is securely mounted within the gas canister compartment 102 of the carbonator 100, the actuator pin 406 is configured, upon actuation, to release gas from the gas canister 400, which flows through the designated pipes, through the carbonator tube 108 and into the bottle.

[0047] Upon pressing a carbonation button, lever, or any such designated mechanical device (not shown) for releasing gas from the gas canister, compressed gas is released from within the gas canister and flows through a pipe, through the carbonation tube, and into the water in the bottle.

[0048] The rotation of carbonation head 110 may be limited to a predetermined orbital sector by one or more limiters configured to restrict the rotation sector to a predetermined angular range, such as 10-25 degrees, or other predetermined angular range. For example, carbonation head 110 may include a stopper 408 coupled to the rotatable carbonation head, the movement of which is restricted within an arcuate groove 410 between two opposing ends of the groove that define an released position and a locked position.

[0049] The stopper 408 may include a protrusion 409 that fits into either of two stop recesses on the periphery of the groove 410, a first stop recess 411a and a second stop recess 411b.

[0050] The first stop recess 411a can be configured to hold a protrusion 409 of the stopper 408 that can slide into the first stop recess when the rotatable carbonation head 110 reaches the released position, while the second stop recess 411b can hold a protrusion 409 of the stopper 408 that can slide into the second stop recess when the rotatable carbonation head 110 reaches the opposite end of the pivot sector in the locked position or any other position on the pivot sector.

[0051] The stop recesses 411a and 411b may be designed to snap the stopper 408 into either the locked or released position, providing an enhanced sensory user experience. In some embodiments of the invention, the stopper and groove may be designed to induce a clicking sound when the stopper snaps into the locked or released position.

[0052] When the rotatable carbonator head is in the locked position, the plungers 306 of the pressure relief valves 112 and 114 are spaced from the angled wall of the cam 300. When a user turns the bottle to unscrew it from its mounting, the rotatable carbonator head first rotates to the released position, at which point the plungers are pushed down by the angled wall of the cam 300 and the poppet 402 of each of the pressure relief valves 112 and 114 opens a passage in that valve to allow excess pressure in the carbonator bottle to escape to the air.

[0053] FIG. 6A is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with the locking teeth in the locked position.

[0054] When the teeth 202 are in the locked position, the rim 216 on the neck 212 of the bottle 210 is held in a non-releasable position between the flange 220 and the upper surface of the teeth 202 because the inner wall 107 of the mounting portion 106 prevents the teeth 202 from retracting which would release the rim 216.

[0055] Figure 6B is a bottom view of the carbonator head mount of the carbonator shown in Figure 1 with locking tooth 202 in the locked position (the cross-sectional view of Figure 6A is taken along line AA shown in Figure 6B). The state of carbonator head 100 shown in Figure 5A corresponds to this locked position.

[0056] 6C is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with the locking teeth in the unlocked position.

[0057] In this position, the locking teeth 202 are positioned with recesses 204 in the wall of the mount 106 behind each of the locking teeth. Thus, when the bottle is unscrewed from the carbonator head, the rim 216 may push the locking teeth 202 rearwardly into the corresponding recesses 204, allowing the bottleneck 212 to be fully unscrewed and disengaged from the mount 106.

[0058] FIG. 6D is a bottom view of the carbonator head mount of the carbonator shown in FIG. 1 with the locking teeth in the unlocked position, showing the locking teeth and active teeth held within corresponding recesses 204.

[0059] FIG. 7A is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with a bottle inserted and about to be screwed into the carbonator head attachment and the effective teeth in the inactive position.

[0060] FIG. 7B is a cross-sectional view of the carbonator head of the carbonator shown in FIG. 1 with a bottle fully threaded into the carbonator head mount and the active teeth in the inactive position.

[0061] According to some embodiments of the present invention, the purpose of the effective teeth 205 is to prevent the carbonation head from rotating either during threading of the bottle or as a result of tampering with the carbonation head unless the bottleneck 212 is substantially fully threaded into the attachment. As long as the rim 216 of the bottle 210 is pressed against the effective teeth 205, the bottle can be threaded without rotating the carbonation head. Rotation of the carbonation head is prevented by stoppers 222, which are protrusions on the carbonation head attachment that are blocked by the body of the teeth 205 and prevent the carbonation head from rotating.

[0062] Only when the rim 216 presses against the active teeth 205 will the active teeth 205 retract, allowing the stopper 222 to pass through the gap, thereby allowing rotation of the carbonator head.

[0063] The effective tines 205 may exhibit an angled front surface 208 that defines a tapered gap between the effective tine body and the carbonator head attachment. Thus, only when the rim 216 of the bottle 210 reaches its highest threaded position, i.e., fully threaded into the attachment, will the rim 216 push against the tines 205, forcing them back into the recesses 207 and creating a gap between the tines and the carbonator head, thereby allowing the carbonator head to rotate.

[0064] Thus, when a bottle is inserted into the fitment and threaded into (or onto) the flange 220 of the carbonation head 110 (the carbonation head is initially in the released position), as long as the effective teeth remain in their initial position, the carbonation head will not rotate until the bottle is securely threaded. Once the bottle reaches the fully threaded position, the rim 216 on the neck 212 of the bottle 210 will press against the effective teeth 205, thereby releasing the stopper 222 on the carbonation head, so that the final threading motion applied to the bottle by the user will rotate the carbonation head to the locked position (see also FIGS. 5A and 5B and corresponding description herein). When the carbonation head is in the locked position, carbonation may be performed when the user activates a carbonation button or similar mechanism. The user can then rotate the bottle in the opposite direction to unscrew the bottle and release it from the fitment.

[0065] Below is an index of the elements shown in the figure: 100-Carbonator 101-base 102-Gas Canister Compartment 103-support surface 104-Housing 106-Mounting part 107 - Inner wall 108-Carbonation tube 110-Carbonation Head 112-Pressure Relief Valve 114-Safety Pressure Relief Valve 202-Lockable teeth 204 - Recess 205-effective teeth 206-Female Thread 207-Recess 208-Effective tooth inclination 210-Bottle 212-Bottleneck 214-External Thread 216-Rim 218-Flange base 219-Mounting opening 220-Flange 221-Carbonation head top 222-Limiter 300-Cam 302-First Sloping Wall 304-Second Sloping Wall 306-Plunger 400-Gas Canister 402-Poppet 404-Gas canister mounting part 406-Gas Canister Outlet 408-Stopper 409-protrusion 410-Groove 411a - First stop indent 411b-Second stop recess

[0066] Different embodiments are disclosed herein. The features of a particular embodiment can be combined with the features of other embodiments. Thus, a particular embodiment may be a combination of features of more than one embodiment. The foregoing description of the embodiments of the present invention has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise form disclosed. It should be appreciated by those skilled in the art that many modifications, variations, substitutions, changes, and equivalents are possible in light of the above teachings. It should therefore be understood that the appended claims are intended to cover all such modifications and variations that fall within the true spirit of the present invention.

[0067] While certain features of the invention have been illustrated and described herein, many modifications, substitutions, changes, and equivalents will occur to those skilled in the art, and it is therefore to be understood that the appended claims are intended to cover all such modifications and changes that fall within the true spirit of the invention.

Claims

1. A carbonation device comprising a rotatable carbonation head, wherein the rotatable carbonation head comprises at least one pressure relief valve, a carbonation tube connectable to a gas cylinder via a pipe, a flange for engaging the neck of the bottle filled with the liquid to be carbonated by screwing the neck into or onto the flange along with the carbonation tube maintained within the bottle to firmly hold the bottle, and for disengaging the neck of the bottle from the flange by loosening the screwing of the neck and removing it from the flange and, when the neck is screwed into or onto the flange, the rotatable carbonation head is configured to rotate from a release position to a locked position, and when the neck is loosened and removed from the flange, the rotatable carbonation head is configured to rotate from the locked position to the release position, in the release position, when excessive pressure exists within the bottle, the at least one pressure relief valve operates to open to release the excessive pressure, in the locked position, the at least one pressure relief valve remains closed, a carbonation device.

2. The carbonation device according to claim 1, wherein the at least one pressure relief valve includes two pressure relief valves.

3. The carbonation device according to claim 1 or claim 2, further comprising an actuator for actuating the at least one pressure relief valve.

4. The carbonation device according to claim 3, wherein the actuator is configured to actuate the at least one pressure relief valve by depressing each plunger of the at least one pressure relief valve.

5. The carbonation device according to claim 4, further comprising a cam adjacent to the rotatable carbonation head, and when the carbonation head is in the release position, the cam comprises at least one inclined wall defining a tapered space between the cam and each plunger of the at least one pressure relief valve in physical contact with the plunger.

6. The carbonation device according to claim 1 or claim 2, wherein rotation of the carbonation head is restricted when it rotates to a swivel sector.

7. The carbonating device according to claim 6, wherein when the carbonating head rotates to the first end of the swivel sector, the carbonating head is in the release position.

8. The carbonating device according to claim 7, wherein when the carbonating head rotates away from the first end of the swivel sector, the carbonating head is in the locked position.

9. The carbonating device according to claim 8, wherein when the carbonating head rotates to the second end of the swivel sector, the carbonating head is in the locked position.

10. The carbonating device according to claim 1 or claim 2, wherein when the carbonating head is in the locked position, a plurality of locking teeth are provided to clutch a rim that protrudes laterally from the neck of the bottle.

11. The carbonating device according to claim 10, further comprising a wall surface surrounding the flange for preventing the backward movement of the locking teeth and holding the neck clutched by the locking teeth.

12. A recess is provided in the wall surface surrounding the flange, such that when the carbonating head rotates to the release position, the locking teeth can retract into the recess to release the rim that protrudes laterally from the neck of the bottle. The carbonating device according to claim 11.

13. The carbonating device according to claim 1 or claim 2, wherein a stopper coupled to the rotatable carbonating head and having restricted movement in a groove is provided, and an end opposite to the groove defines the locked position and the release position.

14. The carbonating device according to claim 13, wherein the groove is provided with a first recessed portion at its peripheral edge, such that when the carbonating head reaches the release position, a protrusion on the stopper slides into the first recessed portion.

15. The carbonating device according to claim 14, wherein the groove is provided with a second recessed portion at its peripheral edge, such that when the carbonating head rotates to the locked position, a protrusion on the stopper slides into the second recessed portion.

16. The carbonating device according to claim 1 or claim 2, further comprising a housing mounted on a base and provided with a gas canister compartment, wherein the housing is suspended on the base and has a laterally expanding portion for accommodating the carbonating head.

17. The carbonation device according to claim 1 or claim 2, wherein the carbonation head is configured to rotate only when the bottle is fully screwed into the flange or onto the flange.

18. The carbonation device according to claim 17, further comprising one or more effective teeth for promoting rotation of the carbonation head only when the bottle is fully screwed into the flange or onto the flange.

19. At least one pressure relief valve, A carbonation tube connectable to a gas cylinder via a pipe, A flange for engaging the neck of the bottle filled with a liquid to be carbonated by screwing the neck into or onto the flange to firmly hold the bottle together with the carbonation tube maintained within the bottle, and for disengaging the neck of the bottle from the flange by loosening the screw of the neck and removing it from the flange A rotatable carbonation head comprising When the neck is screwed into or onto the flange, the rotatable carbonation head is configured to rotate from a release position to a locked position, and when the neck is loosened and removed from the flange, the rotatable carbonation head is configured to rotate from the locked position to the release position, In the release position, when excessive pressure exists within the bottle, the at least one pressure relief valve operates to open to release the excessive pressure, A rotatable carbonation head in which the at least one pressure relief valve remains closed in the locked position.

20. The rotatable carbonation head according to claim 19, wherein the carbonation head is configured to rotate only when the bottle is fully screwed into the flange or onto the flange.