Carbonization tank ice liner composite structure and water purifying and drinking machine

By fixing the carbonization tank in the ice gallbladder cavity, and using the ice water in the ice gallbladder cavity to cool down, combined with atomization nozzles and electronic refrigeration devices, the problems of poor carbonization effect and excessive volume of the existing bubble water machine carbonization device are solved, achieving more efficient carbonization effect and smaller equipment volume.

CN120136281APending Publication Date: 2025-06-13SHAOXING MONA WATER PURIFICATION TECH CO LTD
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Patent Information

Application Number
CN202510445842.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

The existing carbonization device of the bubble water machine is separated from the ice gallbladder and placed in a room temperature environment, resulting in poor carbonization effect and large machine size.

Method used

A composite structure of carbonized tank ice gallbladder is designed, in which the carbonized tank is fixed in the ice gallbladder cavity, and the ice water in the ice gallbladder cavity is used to cool down, combined with atomization nozzles and electronic refrigeration devices, improve the carbonization effect and reduce the overall volume.

Benefits of technology

A better carbonization effect is achieved, while reducing the volume of equipment and improving the carbonization efficiency of carbonization tanks.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a carbonization tank ice liner composite structure and a water purifying and drinking machine, and belongs to the field of water purifying and drinking machines. The carbonization tank ice liner composite structure comprises an ice liner body, and an ice liner cavity is formed in the ice liner body; the carbonization tank body is fixed in the ice liner cavity, and a carbonization cavity is formed in the carbonization tank body; the air inlet pipe body comprises an air inlet end and an air outlet end, the air outlet end is located in the carbonization cavity, and the air inlet end is located on the outer side of the ice container body; a carbonization water inlet pipe body, a carbonization water inlet and a carbonization water outlet, the carbonization water outlet is located in the carbonization cavity, and the carbonization water inlet is located on the outer side of the ice container body; and the bubble water outlet pipe body comprises a bubble water outlet inlet and a bubble water outlet outlet, the bubble water outlet inlet is located in the carbonization cavity, and the bubble water outlet outlet is located on the outer side of the ice liner body. The carbonization tank body is located in the ice container cavity, the carbonization tank body can be cooled through ice water in the ice container cavity, the carbonization effect of the carbonization tank is guaranteed, and meanwhile the overall size occupied by the carbonization tank can be reduced.
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Description

Technical Field

[0001] The present invention belongs to the technical field of water purifiers, and particularly relates to a carbonation tank and ice tank composite structure and a water purifier. Background Art

[0002] Food-grade carbon dioxide gas in a gas cylinder is physically and mechanically pressed into a water bottle filled with pure (drinking) water through a bubble machine. The formed aqueous solution is soda water in a broad sense, that is, carbonated water. Because the water contains rich bubbles, it is also called bubble water.

[0003] The existing carbonation devices of bubble water machines are generally arranged separately from the ice tanks and placed in a room temperature environment. The carbonation effect is not good and the size of the machine is relatively large. Summary of the Invention

[0004] The purpose of the present invention is to provide a carbonation tank and ice tank composite structure and a water purifier, which can reduce the occupied size of the carbonation tank and ice tank.

[0005] To achieve the above purpose, the present invention provides the following technical solutions: A carbonation tank and ice tank composite structure, comprising: An ice tank body, in which an ice tank cavity is provided; A carbonation tank body, which is fixed in the ice tank cavity, and a carbonation cavity is provided in the carbonation tank body; An intake pipe body, which includes an intake end and an outlet end. The outlet end is located in the carbonation cavity, and the intake end is located outside the ice tank body; A carbonation inlet water pipe body, a carbonation water inlet and a carbonation water outlet. The carbonation water outlet is located in the carbonation cavity, and the carbonation water inlet is located outside the ice tank body; A bubble outlet water pipe body, which includes a bubble water outlet inlet and a bubble water outlet outlet. The bubble water outlet inlet is located in the carbonation cavity, and the bubble water outlet outlet is located outside the ice tank body.

[0006] Further, one side of the carbonation tank body is opened for the carbonation cavity. The ice tank body includes an ice tank upper shell and an ice tank base. One side of the ice tank upper shell is opened for the ice tank cavity. The ice tank base covers the openings of the ice tank cavity and the carbonation cavity. The intake pipe body and the carbonation inlet water pipe body are both fixed on the ice tank base.

[0007] Further, the outlet end is arranged near the ice tank base, the carbonation water outlet is arranged far from the ice tank base, the opening of the carbonation water outlet faces the ice tank base, and an atomizing nozzle is installed at the carbonation water outlet.

[0008] Further, the intake pipe body is integrally formed with the ice tank base.

[0009] Further, the carbonization water inlet pipe body includes a first carbonization water inlet pipe body and a second carbonization water inlet pipe body. The first carbonization water inlet pipe body is integrally formed with the ice-lining base, and the second carbonization water inlet pipe body is connected to the first carbonization water inlet pipe body through a pipeline joint.

[0010] Further, a housing connection ring is fixed at the opening of the ice-lining upper housing, a carbonization connection ring is fixed at the opening of the carbonization cavity, a base connection ring is fixed on the ice-lining base, the carbonization connection ring is located between the housing connection ring and the base connection ring, and the carbonization connection ring, the housing connection ring and the base connection ring are fixedly connected.

[0011] Further, the bubble water outlet pipe body is fixed on the carbonization tank body.

[0012] Further, an electronic refrigeration device is further included. The electronic refrigeration device includes: a refrigeration sheet, which is fixed on the side wall of the ice-lining body; refrigeration fins, which are fixed on the side of the refrigeration sheet facing the ice-lining cavity; radiating fins, which are fixed on the side of the refrigeration sheet facing away from the ice-lining cavity.

[0013] A water purifier is also disclosed, which includes the above-mentioned carbonization tank ice-lining composite structure, and further includes; a filter element, the filter element includes a filter element inlet and a filter element outlet, a total water inlet communicating with the ice-lining cavity is provided on the carbonization tank body, and the filter element outlet is communicated with the total water inlet; a carbon dioxide gas cylinder, the carbon dioxide gas cylinder is provided with a gas cylinder air outlet, and the gas cylinder air outlet is communicated with the air inlet end; a booster valve, the booster valve includes a booster valve inlet and a booster valve outlet, a booster water outlet communicating with the ice-lining cavity is provided on the ice-lining body, the booster valve inlet is communicated with the booster water outlet, and the booster valve outlet is communicated with the carbonization water inlet; a bubble water outlet valve, the bubble water outlet valve includes a bubble valve inlet and a bubble valve outlet, and the bubble valve inlet is communicated with the bubble water outlet.

[0014] Further, a cold water pump is further included. The cold water pump includes a cold water pump inlet and a cold water pump outlet. A cold water outlet communicating with the ice-lining cavity is provided on the side wall of the ice-lining body, and the cold water pump inlet is communicated with the cold water outlet.

[0015] Compared with the prior art, the beneficial effects of the present invention are: (1) Since the carbonization tank is located inside the ice tank cavity, the carbonization tank can utilize the ice water in the ice tank cavity to achieve cooling. While ensuring the carbonization effect of the carbonization tank, it can also reduce the overall volume occupation. (2) The atomizing nozzle atomizes water, and the atomized water can be fully mixed and carbonized with the CO2 coming out from the gas outlet end, resulting in a better carbonization effect for the bubble water. (3) The refrigerating fins can refrigerate the water in the ice tank cavity. That is, by using this refrigeration method, the setting of a relatively complex compression refrigeration is avoided, reducing the overall volume. (4) The pipeline distance between the pressurized water outlet and the carbonization water inlet is very short, improving the carbonization effect of the carbonization tank. Description of the Drawings

[0016] Figure 1 It is a schematic diagram of the connection structure of the water purifier; Figure 2 It is a schematic diagram of the structure of the carbonization tank and ice tank composite structure; Figure 3 It is Figure 2 the cross-sectional view of Figure 4 It is a schematic diagram of the connection structure of the ice tank base.

[0017] In the figure: 1. Ice tank body; 2. Ice tank cavity; 3. Carbonization tank; 4. Air inlet pipe body; 5. Air inlet end; 6. Air outlet end; 7. Carbonization water inlet pipe body; 8. Carbonization water inlet; 9. Carbonization water outlet; 10. Bubble water outlet pipe body; 11. Bubble water inlet; 12. Bubble water outlet; 13. Upper ice tank shell; 14. Ice tank base; 15. Atomizing nozzle; 16. First carbonization water inlet pipe; 17. Second carbonization water inlet pipe; 18. Pipeline joint; 19. Shell connection ring; 20. Carbonization connection ring; 21. Base connection ring; 22. Refrigeration sheet; 23. Refrigerating fins; 24. Heat dissipation fins; 25. Carbon dioxide gas cylinder; 26. Gas cylinder gas outlet; 27. Pressure increasing valve; 28. Pressure increasing valve inlet; 29. Pressure increasing valve outlet; 30. Pressurized water outlet; 31. Bubble water outlet valve; 32. Bubble valve inlet; 33. Bubble valve outlet; 34. Filter element; 35. Filter element inlet; 36. Filter element outlet; 37. Total water inlet; 38. Cold water pump; 39. Cold water pump inlet; 40. Cold water pump outlet; 41. Cold water outlet; 42. Heating device; 43. Coffee module; 44. Carbonization cavity; 45. High-pressure pump. Detailed Embodiment

[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0019] Please refer to Figures 1-4 , the present invention provides a technical solution for a carbonation tank ice liner composite structure and a water purifier.

[0020] A carbonation tank ice liner composite structure includes: An ice liner body 1, and an ice liner cavity 2 is provided inside the ice liner body 1; A carbonation tank body 3, the carbonation tank body 3 is fixed inside the ice liner cavity 2, and a carbonation cavity 44 is provided inside the carbonation tank body 3; An intake pipe body 4, the intake pipe body 4 includes an intake end 5 and an outlet end 6, the outlet end 6 is located inside the carbonation cavity 44, and the intake end 5 is located outside the ice liner body 1; A carbonation water inlet pipe body 7, a carbonation water inlet 8 and a carbonation water outlet 9, the carbonation water outlet 9 is located inside the carbonation cavity 44, and the carbonation water inlet 8 is outside the ice liner body 1; A bubble water outlet pipe body 10, the bubble water outlet pipe body 10 includes a bubble water outlet inlet 11 and a bubble water outlet 12, the bubble water outlet inlet 11 is located inside the carbonation cavity 44, and the bubble water outlet 12 is located outside the ice liner body 1.

[0021] Since the carbonation tank body 3 is located inside the ice liner cavity 2, the carbonation tank body 3 can use the ice water inside the ice liner cavity 2 to achieve cooling, while ensuring the carbonation effect of the carbonation tank, it can also reduce the overall volume occupation.

[0022] One side of the carbonation tank body 3 is opened for the carbonation cavity 44, the ice liner body 1 includes an ice liner upper shell 13 and an ice liner base 14, one side of the ice liner upper shell 13 is opened for the ice liner cavity 2, the ice liner base 14 covers the openings of the ice liner cavity 2 and the carbonation cavity 44, and both the intake pipe body 4 and the carbonation water inlet pipe body 7 are fixed on the ice liner base 14. The ice liner body 1 and the carbonation tank body 3 share the ice liner base 14, with low cost.

[0023] As Figure 3 and Figure 4 shown, the outlet end 6 is arranged near the ice liner base 14, and the carbonation water outlet 9 is arranged far from the ice liner base 14. The opening of the carbonation water outlet 9 faces the ice liner base 14, and a spray nozzle 15 is installed at the carbonation water outlet 9.

[0024] The spray nozzle 15 atomizes the water, and the atomized water can be fully mixed with the CO2 coming out of the outlet end 6 for carbonation, and the carbonation effect of the bubble water is better.

[0025] As Figure 3 and Figure 4 shown, the intake pipe body 4 is integrally formed with the ice tank base 14, and the intake pipe body 4 does not need to be installed separately, which can save costs.

[0026] As Figure 3 and Figure 4 shown, the carbonized intake pipe body 7 includes a carbonized intake first pipe body 16 and a carbonized intake second pipe body 17. The carbonized intake first pipe body 16 is integrally formed with the ice tank base 14, and the carbonized intake second pipe body 17 is connected to the carbonized intake first pipe body 16 through a pipeline joint 18.

[0027] As Figure 3 and Figure 4 shown, a housing connection ring 19 is fixed at the opening of the ice tank upper housing 13, a carbonized connection ring 20 is fixed at the opening of the carbonized cavity 44, a base connection ring 21 is fixed on the ice tank base 14, the carbonized connection ring 20 is located between the housing connection ring 19 and the base connection ring 21, the connecting bolt is removed and passed through the carbonized connection ring 20, the housing connection ring 19 and the base connection ring 21, and then the connecting nut is screwed on to fixedly connect between the carbonized connection ring 20, the housing connection ring 19 and the base connection ring 21, and the installation is very convenient.

[0028] As Figure 4 shown, the bubble outlet pipe body 10 is fixed on the carbonized tank 3, the lower end of the bubble outlet pipe body 10 is arranged near the ice tank base 14, and the bubble outlet pipe body 10 is preferably integrally formed with the carbonized tank 3 without later assembly and sealing.

[0029] The carbonized tank ice tank composite structure further includes an electronic refrigeration device, and the electronic refrigeration device includes: A refrigeration sheet 22, and the refrigeration sheet 22 is fixed on the side wall of the ice tank body 1; Refrigeration fins 23, and the refrigeration fins 23 are fixed on the side of the refrigeration sheet 22 facing the ice tank cavity 2; Heat dissipation fins 24, and the heat dissipation fins 24 are fixed on the side of the refrigeration sheet 22 facing away from the ice tank cavity 2.

[0030] The refrigeration fins 23 can refrigerate the water in the ice tank cavity 2, that is, adopt this way of refrigeration to avoid setting a more complex compression refrigeration and reduce the overall volume.

[0031] A water purifier is also disclosed, which includes the above-mentioned carbonized tank ice tank composite structure, and further includes; A filter element 34, the filter element 34 includes a filter element inlet 35 and a filter element outlet 36, a total water inlet 37 communicating with the ice tank cavity 2 is provided on the carbonized tank 3, and the filter element outlet 36 is communicated with the total water inlet 37; A carbon dioxide gas cylinder 25 is provided with a gas cylinder outlet 26, and the gas cylinder outlet 26 is communicated with the intake end 5. A pressure increasing valve 27 includes a pressure increasing valve inlet 28 and a pressure increasing valve outlet 29. A pressure increasing water outlet 30 communicated with the ice-lining cavity 2 is provided on the ice-lining body 1. The pressure increasing valve inlet 28 is communicated with the pressure increasing water outlet 30, and the pressure increasing valve outlet 29 is communicated with the carbonization water inlet 8. A bubble water outlet valve 31 includes a bubble valve inlet 32 and a bubble valve outlet 33, and the bubble valve inlet 32 is communicated with the bubble water outlet 12.

[0032] Water is introduced into the filter element inlet 35. After being filtered by the filter element 34, the water is input into the ice-lining cavity 2 through the total water inlet 37. After the carbon dioxide gas cylinder 25 is opened, carbon dioxide enters the carbonization cavity 44 from the gas outlet end 6. The pressure increasing valve 27 can increase the pressure of the cold water in the ice-lining cavity 2 and then input it into the carbonization cavity 44, thereby generating bubble water. After the bubble water outlet valve 31 is opened, the bubble water is output from the bubble valve outlet 33.

[0033] The pressure increasing water outlet 30 is arranged close to the carbonization water inlet 8, so that the pipeline distance between them is very short, improving the carbonization effect of the carbonization tank.

[0034] As Figure 3 shown, the bubble water outlet valve 31 is fixed on the outer wall of the ice-lining body 1, and the upper end of the bubble water outlet pipe body 10 is communicated with the bubble valve inlet 32.

[0035] The water purifier also includes a cold water pump 38, which includes a cold water pump inlet 39 and a cold water pump outlet 40. A cold water outlet 41 communicated with the ice-lining cavity 2 is provided on the side wall of the ice-lining body 1. The cold water pump inlet 39 is communicated with the cold water outlet 41. The cold water pump 38 pumps out the cold water in the ice-lining cavity 2, thereby realizing the function of discharging cold water.

[0036] The water purifier also includes a heating device 42 and a high-pressure pump 45. The high-pressure pump 45 pumps the water filtered by the filter element 34 to the heating device 42, and the heating device 42 heats the water and then outputs it, realizing the function of discharging hot water.

[0037] The water purifier also includes a coffee module 43. The water inlet of the coffee module receives the hot water output by the heating device 42, thereby realizing the function of making coffee.

[0038] Of course, the functions of the water purifier are not limited to the above. For example, the hot water output can be used to soak tea leaves, etc.

[0039] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A carbonization tank ice liner composite structure, characterized in that: include: An ice bladder body, wherein an ice bladder cavity is arranged in the ice bladder body; A carbonization tank body, wherein the carbonization tank body is fixed in the ice bladder cavity, and a carbonization cavity is provided in the carbonization tank body; An air inlet pipe body, the air inlet pipe body comprising an air inlet end and an air outlet end, the air outlet end is located in the carbonization cavity, and the air inlet end is located outside the ice bladder body; A carbonized water inlet pipe body, a carbonized water inlet and a carbonized water outlet, wherein the carbonized water outlet is located in the carbonized cavity, and the carbonized water inlet is located outside the ice gall body; The bubble water outlet pipe body comprises a bubble water outlet inlet and a bubble water outlet. The bubble water outlet inlet is located in the carbonization cavity, and the bubble water outlet is located outside the ice gall body.

2. The carbonization tank ice liner composite structure according to claim 1, characterized in that: The carbonization cavity opens one side of the carbonization tank body, the ice gall body includes an ice gall upper shell and an ice gall base, the ice gall cavity opens one side of the ice gall upper shell, the ice gall base covers the opening of the ice gall cavity and the opening of the carbonization cavity, and the air inlet pipe body and the carbonization water inlet pipe body are both fixed on the ice gall base.

3. The carbonization tank ice bladder composite structure according to claim 2, characterized in that: The air outlet is arranged near the ice bladder base, the carbonized water outlet is arranged far away from the ice bladder base, the opening of the carbonized water outlet faces the ice bladder base, and the carbonized water outlet is equipped with an atomizing nozzle.

4. The carbonization tank ice liner composite structure according to claim 2, characterized in that: The air inlet pipe body and the ice bladder base are integrally formed.

5. The carbonization tank ice liner composite structure according to claim 2, characterized in that: The carbonized water inlet pipe body comprises a first carbonized water inlet pipe body and a second carbonized water inlet pipe body. The first carbonized water inlet pipe body is integrally formed with the ice bladder base, and the second carbonized water inlet pipe body is connected to the first carbonized water inlet pipe body via a pipe joint.

6. The carbonization tank ice bladder composite structure according to claim 2, characterized in that: A shell connecting ring is fixed at the opening of the upper shell of the ice bladder, a carbide connecting ring is fixed at the opening of the carbonized cavity, a base connecting ring is fixed on the ice bladder base, the carbide connecting ring is located between the shell connecting ring and the base connecting ring, and the carbide connecting ring, the shell connecting ring and the base connecting ring are fixedly connected.

7. The carbonization tank ice liner composite structure according to claim 2, characterized in that: The bubble water outlet pipe body is fixed on the carbonization tank body.

8. The carbonization tank ice liner composite structure according to claim 1, characterized in that: Also included is an electronic refrigeration device, the electronic refrigeration device comprising: A refrigeration fin, wherein the refrigeration fin is fixed on the side wall of the ice bladder body; A refrigeration fin, wherein the refrigeration fin is fixed to a side of the refrigeration plate facing the ice chamber cavity; The heat dissipation fins are fixed on a side of the refrigeration plate facing away from the ice chamber.

9. A beverage purifier, comprising the carbonation tank ice bladder composite structure according to any one of claims 1 to 8, and further comprising: A filter element, the filter element comprises a filter element inlet and a filter element outlet, the carbonization tank body is provided with a total water inlet connected to the ice gall cavity, and the filter element outlet is connected to the total water inlet; A carbon dioxide gas cylinder, wherein the carbon dioxide gas cylinder is provided with a gas cylinder gas outlet, and the gas cylinder gas outlet is connected to the gas inlet end; A boost valve, the boost valve comprising a boost valve inlet and a boost valve outlet, the ice bladder body is provided with a boost water outlet connected to the ice bladder cavity, the boost valve inlet is connected to the boost water outlet, and the boost valve outlet is connected to the carbonization water inlet; The bubble water outlet valve comprises a bubble valve inlet and a bubble valve outlet, and the bubble valve inlet is connected to the bubble water outlet.

10. A water purifier according to claim 9, characterized in that: It also includes a cold water pump, which includes a cold water pump inlet and a cold water pump outlet. The side wall of the ice bladder body is provided with a cold water outlet connected to the ice bladder cavity, and the cold water pump inlet is connected to the cold water outlet.