Modularized bubble water inner container structure

By using a modular design and an ice water tank and sparkling water tank structure arranged adjacent to the evaporator, the problems of high cost, high energy consumption and insufficient temperature of existing sparkling water machines are solved, achieving efficient cooling and improved taste of sparkling water.

CN223759661UActive Publication Date: 2026-01-06CANATURE HEALTH TECH GRP CO LTD
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Patent Information

Application Number
CN202423179695.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-01-06
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing sparkling water machines suffer from high costs, high energy consumption, and insufficient sparkling water temperature, which affects the taste.

Method used

The modular design integrates the ice water tank and the bubble water tank into the same structure, and the evaporators are arranged adjacent to each other to reduce the temperature of the bubble water tank and increase the carbon dioxide capacity.

Benefits of technology

Without increasing costs or electricity consumption, it significantly improves the carbon dioxide content and taste of sparkling water, reduces heat loss, and increases refrigeration efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a modularized sparkling water inner container structure which is used for sparkling water making equipment and comprises an ice water tank used for containing ice water; the detachable bubble water container is arranged in the ice water tank, and a water outlet pipeline of the detachable bubble water container penetrates out of the bottom wall of the ice water tank and is used for containing bubble water; the evaporator is arranged in the ice water tank and used for cooling and making ice water. Compared with the prior art, on the premise that the production cost (structure and equipment) and the use cost (electricity consumption) are not increased, the carbon dioxide gas capacity in the bubble water can be improved through structural improvement, and therefore the taste of the bubble water is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water treatment field especially is related to a modularization bubble water inner bag structure. BACKGROUND

[0002] The bubble water machine uses the compressed carbon dioxide in the gas cylinder to press the carbon dioxide into water at high pressure, so that the carbon dioxide is saturated, and carbon dioxide bubbles are generated in the water to produce bubble water.

[0003] The current mainstream bubble water treatment scheme of the bubble water machine on the market is as follows:

[0004] 1. The drinking water is filled into the water bottle, and then placed in the refrigerator for cold storage. When the bubble water is needed, the cold water in the refrigerator is taken out and filled into the hand bubble machine, and the food-grade carbon dioxide is manually punched to produce bubble water. It is not convenient to use.

[0005] 2. The automatic bubble water product has refrigeration capacity (compressor or semiconductor), and is provided with an ice water tank and a bubble water tank. When working, the cooled ice water in the ice water tank is punched into the bubble water tank, and then the gas-liquid mixing is carried out to produce bubble water. The problem of this scheme is that the ice water tank, the bubble water tank and the water conveying pipeline are independent, and each part needs to be insulated. As a result, the product cost is high, and because of the heat loss caused by the pipeline and components in the conveying process of the ice water, the actual ice bubble water temperature is not enough, which affects the taste of the bubble water and the energy consumption of the product is also high.

[0006] Chinese patent CN202321948909.0 discloses an automatic sterilization and disinfection bubble water machine and its inflation device, which comprises a gas cylinder seat with a valve cavity and an elastic element inside, a pressure rod hinged to the upper end of the gas cylinder seat, a gas cylinder installed on the gas cylinder seat, the elastic element arranged in the valve cavity and abutting against the gas cylinder and the pressure rod at both ends to drive the gas cylinder to release gas when the pressure rod rotates, a water bottle seat with a water bottle mounting port on the bottom surface, an inflation rod arranged in the water bottle mounting port, and an air inlet end of the inflation rod communicated with the valve cavity through an inflation pipe. The device further comprises a disinfection device, which comprises a disinfection lamp arranged in the water bottle mounting port, a disinfection switch arranged below the pressure rod, and a circuit board with a power supply. The power supply, the disinfection lamp and the disinfection switch are electrically connected with the circuit board. The utility model, through the rotation of the pressure rod to trigger the disinfection switch during inflation, makes the disinfection lamp automatically disinfect and purify the beverage in the water bottle, and improves the drinking safety of the bubble water. It is the first scheme described above, which produces bubble water by punching and mixing carbon dioxide. It is not convenient to use.

[0007] Chinese patent CN202321955489.9 discloses an ice tank assembly and a bubble water machine. The ice tank assembly comprises: an inner tank and a refrigeration unit. The inner tank is provided with a water inlet and a water outlet. The water inlet is connected to a water tank through a first water path. A buffer assembly is arranged in the first water path. The water in the water tank flows into the inner tank through the buffer assembly at a reduced speed. In use, the water flow slows down when passing through the buffer assembly. The water in the water tank is slowly replenished. The normal temperature water slowly enters the inner tank and mixes with the ice water. Sufficient time is provided for heat exchange and cooling of the water in the inner tank. The water in the inner tank does not rise too fast in temperature. The user can continuously take ice water. The refill amount can be greatly improved. The inner tank is concave and arc-shaped in design. This is beneficial to exhausting the ice water in the inner tank and draining the water in the inner tank during cleaning. The ice water cooled in the ice water tank is poured into the bubble water tank in the above-mentioned second scheme. The cost is high. At the same time, because of heat loss caused by pipelines and components during the transportation of ice water, the actual temperature of the ice bubble water is not enough. This affects the taste of the bubble water and the energy consumption of the product is also relatively high. SUMMARY

[0008] A series of simplified concepts are introduced in the summary part. These simplified concepts are simplifications of the prior art in the field. This will be described in further detail in the detailed description part. The summary part of the utility model does not mean to attempt to limit the key features and necessary technical features of the claimed technical solution. It also does not mean to attempt to determine the protection scope of the claimed technical solution.

[0009] The technical problem to be solved by the utility model is to provide a modular bubble water inner tank structure which can improve the carbon dioxide gas capacity in bubble water without increasing the production cost (structure, equipment) and use cost (power consumption) compared with the prior art.

[0010] To solve the above technical problem, the utility model provides a modular bubble water inner tank structure which is used for a bubble water making device and comprises:

[0011] An ice water tank 1 is used for containing ice water.

[0012] A detachable bubble water tank 2 is arranged in the ice water tank 1. The water outlet pipeline of the bubble water tank 2 penetrates the bottom wall of the ice water tank 1. The bubble water tank 2 is used for containing bubble water.

[0013] An evaporator 3 is arranged in the ice water tank 1. The evaporator 3 is used for cooling and manufacturing ice water.

[0014] The evaporator 3 can be selected from any one in the prior art. The detachable bubble water tank 2 is made of food-grade material.

[0015] Preferably, the modular bubble water liner structure is further improved, the evaporator 3 is arranged adjacent to the detachable bubble water tank 2. It should be noted that the distance between the evaporator 3 and the detachable bubble water tank 2 is as close as possible according to the actual process, and the refrigeration efficiency is improved.

[0016] Preferably, the modular bubble water liner structure is further improved, the evaporator 3 is arranged adjacent to the detachable bubble water tank 2. It should be noted that the distance between the evaporator 3 and the detachable bubble water tank 2 is as close as possible according to the actual process, and the refrigeration efficiency is improved.

[0017] Preferably, the modular bubble water liner structure is further improved, the detachable bubble water tank 2 top wall is fixed in the mounting hole of the ice water tank 1 top wall.

[0018] Preferably, the modular bubble water liner structure is further improved, the detachable bubble water tank 2 is formed into a cylinder. The detachable bubble water tank of the cylinder is beneficial to increase the cold exchange area of the detachable bubble water tank and the evaporator, and improve the cold exchange efficiency.

[0019] Preferably, the modular bubble water liner structure is further improved, the ice water tank 1 is formed into a cuboid. The ice water tank of the cuboid is beneficial to fully utilize the space in the bubble water machine shell, and is convenient for installation and arrangement.

[0020] Preferably, the modular bubble water liner structure is further improved, the evaporator 3 is formed into a spring and arranged around the detachable bubble water tank 2.

[0021] The modular bubble water liner structure provided by the utility model can at least realize the following technical effects.

[0022] 1、 the utility model discloses ice water tank and detachable bubble water tank are modularized design, and the detachable bubble water tank is placed in the ice water tank, reduces the heat preservation measure of detachable bubble water tank, and heat loss is avoided.

[0023] 2、 the utility model discloses ice water tank and detachable bubble water tank are modularized design, and the detachable bubble water tank is placed in the ice water tank and makes detachable bubble water tank as close as possible to the evaporator position of ice water tank. Through this structure design, the temperature of bubble water can be reduced to the vicinity of freezing point, the gas capacity of carbon dioxide in bubble water can be greatly improved, and the taste of bubble water is improved.

[0024] Correspondingly, the ice water tank and the removable sparkling water tank are detachable and combinable structures. The advantage of this design is that when customers customize product solutions, they can form a product combination, which can be either an ice water configuration or an ice sparkling water configuration. Moreover, the modular design allows for the use of interchangeable parts, thus optimizing both cost and quality.

[0025] 3. This utility model adopts a modular design, and the ice bubble water function can be configured according to different user needs.

[0026] 4. In a preferred embodiment of this utility model, the removable bubble tank is designed as a cylinder, and the evaporator is arranged around the removable bubble tank. The cylindrical removable bubble tank and the surrounding evaporator help to increase the cold exchange area of ​​the removable bubble tank and the evaporator, thereby improving the cold exchange efficiency.

[0027] 5. This invention does not add any new equipment or structure, so it will not increase production costs. It only changes the positional relationship between the ice water tank, the removable sparkling water tank, and the evaporator, fully utilizing the cooling capacity of the ice water tank evaporator to cool the removable sparkling water tank. This avoids energy loss while cooling the removable sparkling water tank, making use of previously wasted cooling energy. Therefore, it significantly increases the carbon dioxide content in the sparkling water without increasing operating costs (electricity consumption). This improves the taste of the sparkling water without increasing equipment or operating costs. Attached Figure Description

[0028] The accompanying drawings are intended to illustrate the general characteristics of the methods, structures, and / or materials used in specific exemplary embodiments of the present invention, supplementing the description in the specification. However, these drawings are schematic diagrams not drawn to scale and may not accurately reflect the precise structural or performance characteristics of any of the given embodiments. The drawings should not be construed as limiting or restricting the range of numerical values ​​or properties covered by the exemplary embodiments of the present invention. The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments:

[0029] Figure 1 This is a schematic diagram of the overall structure of the modular bubble water inner tank of this utility model.

[0030] Explanation of reference numerals in the attached figures

[0031] Ice water tank 1

[0032] Removable bubble water tank 2

[0033] Evaporator 3. Detailed Implementation

[0034] The advantages and technical effects of the present application can be fully understood by those skilled in the art from the disclosure of the present application. The present application can be implemented or applied in different specific embodiments, and the details in the present application can be applied based on different viewpoints, and various modifications or changes can be made without departing from the general design idea of the present application. It should be noted that the following embodiments and features in the embodiments can be combined with each other without conflict. The following exemplary embodiments of the present application can be implemented in various different forms, and should not be interpreted as being limited to the specific embodiments described herein. It should be understood that the embodiments are provided to make the disclosure of the present application complete and complete, and to fully convey the technical solutions of the exemplary embodiments to those skilled in the art. It should be understood that when an element is referred to as "connected" or "coupled" to another element, the element can be directly connected or coupled to the other element, or there can be an intermediate element. Different is that when an element is referred to as "directly connected" or "directly coupled" to another element, there is no intermediate element. In all the drawings, the same reference signs always represent the same elements.

[0035] First embodiment;

[0036] Reference Figure 1 As shown in the drawings, the present application provides a modular bubble water liner structure, which is used for a bubble water making device, comprising:

[0037] The ice water tank 1 is used for containing ice water.

[0038] The detachable bubble water tank 2 is arranged in the ice water tank 1, and the water outlet pipeline of the detachable bubble water tank 2 is located on the top wall of the detachable bubble water tank 2, which is used for containing bubble water.

[0039] The evaporator 3 is arranged in the ice water tank 1, and can be fixed in the ice water tank 1 by a support, for example, fixed on the side wall or the top wall, or fixed on the detachable bubble water tank 2, which is used for cooling to make ice water.

[0040] Second embodiment;

[0041] Continuing to refer to Figure 1 As shown in the drawings, the present application provides a modular bubble water liner structure, which is used for a bubble water making device, comprising:

[0042] The ice water tank 1 is used for containing ice water.

[0043] The detachable bubble water tank 2 is arranged in the ice water tank 1, and the water outlet pipeline of the detachable bubble water tank 2 is located on the top wall of the detachable bubble water tank 2, which is used for containing bubble water.

[0044] The evaporator 3 is arranged in the ice water tank 1, which can be fixed in the ice water tank 1 by a support, for example, fixed on the side wall or the top wall, or fixed on the detachable bubble water container 2, and is used for cooling to produce ice water;

[0045] The evaporator 3 is arranged adjacent to the detachable bubble water container 2;

[0046] Preferably, the evaporator 3 is arranged adjacent to the detachable bubble water container 2 in a spring shape.

[0047] The third embodiment;

[0048] Continuing to refer to Figure 1 As shown, the utility model provides a modular bubble water container structure, which is used for a bubble water making device, comprising:

[0049] The ice water tank 1 is used for containing ice water;

[0050] The detachable bubble water container 2 is arranged in the ice water tank 1, and the top wall of the detachable bubble water container 2 is fixed in the mounting hole of the top wall of the ice water tank 1 by a screw, and the water outlet pipeline of the detachable bubble water container 2 is located on the top wall of the detachable bubble water container 2, which is used for containing bubble water;

[0051] The evaporator 3 is arranged in the ice water tank 1, which can be fixed in the ice water tank 1 by a support, for example, fixed on the side wall or the top wall, or fixed on the detachable bubble water container 2, and is used for cooling to produce ice water;

[0052] In this embodiment, the detachable bubble water container 2 is formed into a cylinder, the ice water tank 1 is formed into a cuboid, and the evaporator 3 is arranged around the detachable bubble water container 2 in a spring shape.

[0053] It should be further explained that the evaporator in the modular bubble water container structure in any one of the above first to third embodiments can use any one of the prior art. The materials of the ice water tank 1 and the detachable bubble water container 2 are selected from food-grade materials, the material of the detachable bubble water container 2 is preferably a material with high cold conduction efficiency, and the material of the ice water tank 1 is preferably a material with good heat preservation effect.

[0054] Unless otherwise defined, all terms (including technical and scientific terms) used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. It will be further understood that terms, such as those defined in commonly used dictionaries, should be interpreted as having a meaning that is consistent with their meaning in the context of the relevant art and not in an idealized or overly formal sense unless expressly so defined herein.

[0055] The utility model discloses make up the detailed explanation to the utility model through specific implementation and example, but these are not constitute the limitation of the utility model. In the case where departing from the principle of the utility model, the technical personnel of the field can also make many deformation and improvement, and these also should be regarded as the protection scope of the utility model.

Claims

1. A modularized bubble water liner structure for a bubble water making apparatus, characterized by, Comprising: an ice water tank (1) for containing ice water; a detachable bubble water tank (2) disposed in the ice water tank (1), a water outlet pipe of which is located at a top wall of the detachable bubble water tank (2) for containing bubble water; an evaporator (3) disposed in the ice water tank (1) for cooling to produce ice water.

2. The modular bubble water bladder structure of claim 1, wherein: The evaporator (3) is disposed adjacent to the detachable bubble water tank (2).

3. The modular bubble water bladder structure of claim 1, wherein: The evaporator (3) is disposed adjacent to the detachable bubble water tank (2) in a surrounding manner.

4. The modular bubble water bladder structure of claim 1, wherein: The top wall of the detachable bubble water tank (2) is fixed in a mounting hole of a top wall of the ice water tank (1).

5. The modular bubble water bladder structure of claim 1, wherein: The detachable bubble water tank (2) is formed in a cylindrical shape.

6. The modular sparkling water liner structure of claim 5, wherein: The ice water tank (1) is formed in a cuboid shape.

7. The modular sparkling water liner structure of claim 6, wherein: The evaporator (3) is formed in a spring shape and disposed in a surrounding manner around the detachable bubble water tank (2).

Citation Information

Patent Citations

  • Automatic sterilization and disinfection sparkling water machine and inflation device thereof

    CN220212654U

  • Ice liner assembly and sparkling water machine

    CN220212672U