Intelligent drying device for air circulation in red wine cabinet

By designing components such as an air inlet pipe, a gas mixing pipe, and a gas flow control pipe into the wine cabinet, the dried gas is mixed with nitrogen and injected into the wine cabinet, solving the problem of wine oxidation and achieving efficient wine preservation.

CN223856091UActive Publication Date: 2026-01-30FOSHAN JIASITANG ELECTRIC APPLIANCE CO LTD
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Patent Information

Application Number
CN202423216380.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-30
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Wine in existing wine cabinets may suffer from oxidation, especially after air circulation, requiring the addition of stabilizing gases such as nitrogen to aid in preservation.

Method used

Design an intelligent drying device that uses components such as an air inlet pipe, a mixing pipe, a gas flow control pipe, and a gas guide pipe to mix the dried gas with nitrogen and control the nitrogen flow rate before injecting it into the wine cabinet to reduce the risk of oxidation.

Benefits of technology

It effectively reduces the oxidation rate of red wine in the wine cabinet, ensuring the best preservation of the wine's quality and flavor. The device's structural design makes nitrogen input controllable and safe.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of red wine cabinets, and discloses an intelligent drying device for air circulation in a red wine cabinet. According to the red wine cabinet, the red wine cabinet serves as a main body of the red wine cabinet, the gas inlet pipe and the gas mixing pipe which are connected to the side surface of the red wine cabinet serve as gas inlet and guide assemblies, and the gas mixing pipe is a place component for mixing dried gas and nitrogen. A bearing guide groove plate, a limiting groove, an inserting plate, a connecting rod, a limiting screw and a limiting nut which are connected to the side surface of the gas flow control pipe jointly form a control assembly used for adjusting the nitrogen input flow. Wherein the gas guide pipe is responsible for introducing gas in the nitrogen cylinder into the gas flow control pipe. By means of the structure, an operator can mix nitrogen with dried circulating air and then inject the mixture into the red wine cabinet, and the probability that red wine in the red wine cabinet is oxidized is reduced.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of red wine cabinets, specifically an intelligent drying device for air circulation inside a red wine cabinet. BACKGROUND

[0002] A red wine cabinet is a device specially designed to store red wine, which simulates the natural storage conditions of wine, has the characteristics of constant temperature and constant humidity, and is an ideal environment for storing red wine. Nowadays, the design of intelligent drying devices is widely used in red wine cabinets, aiming to provide an ideal storage environment for red wine by precisely controlling temperature and humidity, and maintaining fresh and circulating air to ensure the best preservation of the quality and flavor of red wine.

[0003] As disclosed in Publication No. CN211154546U, a red wine cabinet with constant temperature and humidity function is disclosed, which includes a cabinet shell, a liner is hollowly arranged in the cabinet shell, and a plurality of shelves are axially and equidistantly distributed in the liner. Its characteristic is that: the back of the liner is provided with an air duct between the liner and the cabinet shell, a hot air inlet is arranged at the upper end of the air duct, a first ventilation device and a refrigeration device are installed in the air duct, the hot air in the liner enters the air duct through the hot air inlet, and under the action of the first ventilation device, the hot air passes through the refrigeration device to form cold air, and the cold air is blown out from the cold air outlet at the lower end of the air duct to the liner. The lower end of the refrigeration device is provided with a condensate water collecting device and a humidifying device, and under the action of the humidifying device, the dry air in the liner is humidified by the humidifying device and blown out from the humidifying air outlet to the liner. The beneficial effects of the utility model are: the environment in the cabinet can be controlled at constant temperature and humidity to meet the use requirements of different users.

[0004] However, in actual use, it is found that: in some cases, the red wine placed in the general red wine cabinet may have slight oxidation even after the internal air is treated and dried for circulation, so for the storage of this part of the red wine, it is necessary to add some stable gas such as nitrogen gas inside for auxiliary preservation. SUMMARY

[0005] The purpose of the present application is to solve the problem of adding nitrogen gas inside the red wine cabinet as mentioned above, and to provide an intelligent drying device for air circulation inside a red wine cabinet.

[0006] The technical solution adopted in this application is as follows: An intelligent drying device for air circulation inside a wine cabinet, characterized in that: an air inlet pipe is fixedly inserted into the side surface of the wine cabinet; a gas mixing pipe is fixedly inserted into the side surface of the air inlet pipe relative to one end of the wine cabinet; a gas flow control pipe is inserted into the side surface of the gas mixing pipe; multiple bearing guide plates are fixedly connected to the side surface of the gas flow control pipe; a limit groove is formed on the side surface of the bearing guide plate; a connecting plate is slidably inserted into the side surface of the bearing guide plate; a connecting rod is fixedly connected to the side surface of the connecting plate; a limit screw is inserted into the side surface of the connecting rod; a limit nut is rotatably inserted into the side surface of the limit screw; a gas guide pipe is fixedly inserted into the side surface of the gas flow control pipe; and a nitrogen cylinder is fixedly inserted into the side surface of the gas guide pipe relative to one end of the gas flow control pipe.

[0007] By adopting the above technical solution, the operator uses a wine cabinet as the main body, with an inlet pipe and a mixing pipe serving as the air intake and guiding components. The mixing pipe is the part that mixes the dried gas with nitrogen. The gas flow control pipe, as the main passage component for nitrogen, consists of a support guide plate, a limiting groove, a plug-in plate, a connecting rod, a limiting screw, and a limiting nut, which together form a control component for adjusting the nitrogen input flow rate. The guiding pipe is responsible for introducing the gas from the nitrogen cylinder into the gas flow control pipe. Through this structure, the operator can mix nitrogen with dried circulating air and then inject it into the wine cabinet, reducing the chance of oxidation of the wine inside. Controlling the nitrogen flow rate to prevent excessive pressure increases makes the entire device more controllable and safer.

[0008] The wine cabinet serves as the storage component for wine, while the air inlet pipe acts as the gas introduction component, primarily used to introduce air into the entire device. The gas mixing pipe, as the gas mixing conduit, mainly functions to mix the dried gas with nitrogen before injecting both into the wine cabinet.

[0009] The gas flow control tube mainly serves as the passage component for nitrogen introduction. The plug-in assembly formed between the bearing guide plate and the plug-in plate connected to it is used to change the cross-sectional area of ​​the gas flow control tube, thereby affecting the flow rate of the entire gas and preventing excessive gas pressure in the entire device caused by a rapid increase in nitrogen.

[0010] The insertion is achieved by using the limit screws on the bearing guide plate and the connecting rod to move up and down with the insertion plate. When it moves to a certain position, the interaction between the limit nut and the limit screw is used to tighten it inward and increase the friction, thereby limiting the insertion position of the insertion plate.

[0011] The gas guide pipe is made of plastic material and is a hose, so that the nitrogen cylinder can be placed at any position.

[0012] In a preferred embodiment, the side surface of the wine cabinet is fixedly connected with an air extraction device shell, and the inner side surface of the air extraction device shell is fixedly connected with an air extraction device base.

[0013] By adopting the above technical scheme, the air extraction device base in the air extraction device shell is used as a fixed connecting component for connecting the corresponding air extraction component.

[0014] In a preferred embodiment, the side surface of the air extraction device base is fixedly connected with an air extraction pump, and the side surface of the air extraction pump is fixedly connected with an air extraction pipe.

[0015] By adopting the above technical scheme, the air extraction pump is used as an air extraction component to extract the gas in the wine cabinet and then pump it out, and the air extraction pipe is connected with the wine cabinet for air extraction.

[0016] In a preferred embodiment, one end of the air extraction pipe is fixedly connected with a pump-out pipe, and the other end of the pump-out pipe is fixedly connected with a drying bed.

[0017] By adopting the above technical scheme, the pump-out pipe is used to pump the gas in the air extraction pump out, and the gas passes through the drying bed after being pumped out. A certain amount of granular anhydrous copper sulfate is placed in the drying bed, and the gas is lifted up to form a fluidized bed when it goes up, so as to realize drying.

[0018] In a preferred embodiment, the side surface of the drying bed is provided with a plurality of connecting pipes.

[0019] By adopting the above technical scheme, the connecting pipe is used as a connecting component.

[0020] In a preferred embodiment, the inner side surface of the connecting pipe is provided with a fine metal mesh.

[0021] By adopting the above technical scheme, the fine metal mesh is used as a protective component to prevent the particles inside from falling down.

[0022] In a preferred embodiment, the side surface of the fine metal mesh is provided with a drying material replacement opening.

[0023] By adopting the above technical scheme, the drying material replacement opening is used to conveniently replace the drying particles inside.

[0024] In a preferred embodiment, the side surface of the wine cabinet is rotatably connected with a glass cabinet door.

[0025] By adopting the above technical scheme, the glass cabinet door is used as a component for conveniently observing the situation in the wine cabinet.

[0026] In summary, due to the adoption of the above technical scheme, the beneficial effects of the present application are:

[0027] In the present application, the wine cabinet is used as a storage component for wine, the air inlet pipe is used as a gas introduction component, mainly for introducing air into the entire device. The gas mixing pipe is used as a gas mixing pipeline component, mainly for mixing dry gas and nitrogen. Then they are injected into the wine cabinet together.

[0028] The gas flow control pipe is mainly used as a nitrogen introduction passage, and the plug-in assembly formed between the bearing guide groove plate and the plug-in plate connected thereto is used to change the pipe cross-sectional area in the gas flow control pipe to achieve the effect of affecting the flow rate of the entire gas passage, thereby avoiding the rapid increase in nitrogen gas pressure in the entire device.

[0029] The bearing guide groove plate and the limiting screw on the connecting rod are used to realize plug-in for moving up and down with the plug-in plate. When moved to a certain position, the limiting nut and the limiting screw interact with each other to tighten inwardly and increase the friction, thereby achieving the limiting of the plug-in position of the plug-in plate.

[0030] The gas guide pipe guides the gas in the nitrogen cylinder to the gas flow control pipe. The gas guide pipe is made of plastic and is a hose, which is convenient for placing the nitrogen cylinder at any position. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 It is a three-dimensional structure schematic diagram of the entire device of the present application;

[0032] Figure 2 It is a detail schematic diagram of the glass cabinet door in the present application;

[0033] Figure 3 It is a detail schematic diagram of the gas flow control pipe in the present application;

[0034] Figure 4 It is a detail schematic diagram of the drying bed in the present application;

[0035] Figure 5 It is a cross-sectional schematic diagram of the air extraction device shell in the present application.

[0036] Marked in the figure: 1, red wine cabinet; 2, air inlet pipe; 3, mixed gas pipe; 4, gas flow control pipe; 5, bearing guide groove plate; 6, limiting groove; 7, plug-in plate; 8, connecting rod; 9, limiting screw; 10, limiting nut; 11, gas guide pipe; 12, nitrogen cylinder; 13, air extraction device shell; 14, air extraction device base; 15, air extraction pump; 16, air extraction pipe; 17, pump-out pipe; 18, drying bed; 19, connecting pipe; 20, fine metal mesh; 21, drying material replacement opening; 22, glass cabinet door. DETAILED DESCRIPTION

[0037] To make the purposes, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0038] Reference Figures 1-5 ,

[0039] Embodiment: An intelligent drying device for air circulation in a red wine cabinet, characterized in that: the side surface of the red wine cabinet 1 is fixedly plugged with an air inlet pipe 2, one end of the air inlet pipe 2 opposite the red wine cabinet 1 is fixedly plugged with a mixed gas pipe 3, the side surface of the mixed gas pipe 3 is plugged with a gas flow control pipe 4, the side surface of the gas flow control pipe 4 is fixedly connected with a plurality of bearing guide groove plates 5, the side surface of the bearing guide groove plate 5 is provided with a limiting groove 6, the side surface of the bearing guide groove plate 5 is slidingly plugged with a plug-in plate 7, the side surface of the plug-in plate 7 is fixedly connected with a connecting rod 8, the side surface of the connecting rod 8 is plugged with a limiting screw 9, the side surface of the limiting screw 9 is rotationally plugged with a limiting nut 10, the side surface of the gas flow control pipe 4 is fixedly plugged with a gas guide pipe 11, and one end of the gas guide pipe 11 opposite the gas flow control pipe 4 is fixedly plugged with a nitrogen cylinder 12.

[0040] The operator uses the red wine cabinet 1 as the main body of the red wine cabinet, wherein the air inlet pipe 2 and the air mixing pipe 3 are used as the air inlet guide assembly, and the air mixing pipe 3 is the place component for mixing the dried gas and nitrogen. The gas flow control pipe 4 is used as the main passing component of nitrogen, and the bearing guide groove plate 5, the limiting groove 6, the plug-in plate 7, the connecting rod 8, the limiting screw 9 and the limiting nut 10 together constitute the control assembly for adjusting the input flow size of nitrogen. The air guide pipe 11 is responsible for introducing the gas in the nitrogen cylinder 12 into the gas flow control pipe 4. Through the above structure, the operator can mix nitrogen and dried circulating air, and then inject it into the red wine cabinet to reduce the probability of internal red wine oxidation. In order to avoid excessive increase of air pressure, the nitrogen flow is controlled to make the whole device more controllable and safe.

[0041] The red wine cabinet 1 is used as the storage component of red wine, the air inlet pipe 2 is used as the gas introduction component, mainly for introducing air into the whole device. The air mixing pipe 3 is used as the gas mixing pipe component, mainly for mixing the dried gas and nitrogen. Then they are injected into the red wine cabinet 1 together.

[0042] The gas flow control pipe 4 is mainly used as the passing component of nitrogen introduction, and the plug-in assembly formed between the bearing guide groove plate 5 and the plug-in plate 7 connected thereon is used to change the pipe cross-sectional area in the gas flow control pipe 4 to realize the influence on the flow size of the whole gas passing, so as to avoid the rapid increase of nitrogen gas pressure in the whole device.

[0043] The bearing guide groove plate 5 and the limiting screw 9 on the connecting rod 8 are used to realize the plug-in for moving with the plug-in plate 7 up and down, and when moving to a certain position, the interaction between the limiting nut 10 and the limiting screw 9 is used to tighten inwardly and increase the friction, so as to realize the limiting of the plug-in position of the plug-in plate 7.

[0044] The air guide pipe 11 introduces the gas in the nitrogen cylinder 12 into the gas flow control pipe 4, and the air guide pipe 11 is made of plastic material and hose, which is convenient for placing the nitrogen cylinder 12 at any position.

[0045] The side surface of the red wine cabinet 1 is fixedly connected with the air extraction device shell 13, and the inner side surface of the air extraction device shell 13 is fixedly connected with the air extraction device base 14. The air extraction device base 14 in the air extraction device shell 13 is used as the fixed connecting component for connecting the corresponding air extraction component.

[0046] The side surface of the air extraction device base 14 is fixedly connected with an air extraction pump 15, and the side surface of the air extraction pump 15 is fixedly connected with an air extraction pipe 16. The air extraction pump 15 is used as an air extraction component to extract the air in the wine cabinet 1 and then pump the air out. The air extraction pipe 16 is connected with the wine cabinet 1 and used for air extraction.

[0047] The side surface of one end of the air extraction pump 15 opposite to the air extraction pipe 16 is fixedly connected with a pump-out pipe 17, and the side surface of one end of the pump-out pipe 17 opposite to the air extraction pump 15 is fixedly connected with a drying bed 18. The pump-out pipe 17 is used to pump the air in the air extraction pump 15 out. After being pumped out, the air passes through the drying bed 18. The drying bed 18 is internally provided with a certain amount of granular anhydrous copper sulfate. When the air goes up, the anhydrous copper sulfate is lifted to form a fluidized bed, thereby achieving drying.

[0048] The side surface of the drying bed 18 is provided with a plurality of connection pipes 19. The connection pipes 19 are used as connection components.

[0049] The internal side surface of the connection pipe 19 is provided with a fine metal mesh 20. The fine metal mesh 20 is used as a protection component to prevent the granules inside from falling down.

[0050] The side surface of the fine metal mesh 20 is provided with a drying material replacement opening 21. The drying material replacement opening 21 is used to facilitate the replacement of the internal drying granules.

[0051] The side surface of the wine cabinet 1 is rotatably connected with a glass cabinet door 22. The glass cabinet door 22 is used as a component for conveniently observing the situation in the wine cabinet 1.

[0052] The implementation principle of the embodiment of the intelligent drying device for air circulation in the wine cabinet is as follows: an operator uses the wine cabinet 1 as the main body of the wine cabinet. The air inlet pipe 2 and the air mixing pipe 3 are used as air inlet and air guiding assemblies. The air mixing pipe 3 is a place component for mixing the dried air and nitrogen. The gas flow control pipe 4 is used as a main passing component for nitrogen. The bearing guide groove plate 5, the limiting groove 6, the plug-in plate 7, the connection rod 8, the limiting screw 9, and the limiting nut 10 together constitute a control assembly for adjusting the input flow of nitrogen. The air guide pipe 11 is responsible for introducing the gas in the nitrogen cylinder 12 into the gas flow control pipe 4. Through the above structure, the operator can mix the nitrogen and the dried circulating air and then inject them into the wine cabinet, thereby reducing the probability of oxidation of the wine inside. In order to avoid excessive increase of air pressure, the flow of nitrogen is controlled to make the whole device more controllable and safe.

[0053] Wherein the red wine cabinet 1 as the red wine storage components, wherein the air inlet pipe 2 as the gas introduction components, mainly for the air into the whole device. Wherein the gas mixing pipe 3 as the gas mixing pipeline components, the main role is to dry gas and nitrogen mixed. And then together into the red wine cabinet 1.

[0054] Wherein the gas flow control tube 4 is mainly used as the nitrogen introduction through component, wherein the use of its connected with the bearing guide slot plate 5, plug-in plate 7 between the plug-in assembly, for changing the pipe cross section area in the gas flow control tube 4 to achieve the influence of the whole gas through the flow size, avoid the increase of nitrogen sharp whole device gas pressure too large.

[0055] The use of bearing guide slot plate 5 and the limit screw 9 on the adapter rod 8 to achieve plug-in for the up and down with the plug-in plate 7, when moving to a certain position by the interaction between the limit nut 10 and the limit screw 9, so as to tighten and increase the friction force, by which the plug-in plate 7 plug-in position of the limit.

[0056] Wherein the gas guide pipe 11 will be the gas in the nitrogen cylinder 12 to the gas flow control tube 4, gas guide pipe 11 is plastic material, hose, convenient nitrogen cylinder 12 placed in any position.

[0057] The above examples are only used to illustrate the technical solutions of the present application, rather than limit them; although the present application is described in detail with reference to the foregoing examples, those skilled in the art should understand that: it can still be modified to the technical solutions recorded in the foregoing examples, or part of the technical features are replaced; and these modifications or replacement, do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A smart drying device for circulation of air inside a wine cabinet, comprising a wine cabinet (1), characterized in that: The side surface of the red wine cabinet (1) is fixedly connected with an air inlet pipe (2), one end of the air inlet pipe (2) is fixedly connected with a gas mixing pipe (3) relative to the side surface of the red wine cabinet (1), the side surface of the gas mixing pipe (3) is connected with a gas flow control pipe (4), the side surface of the gas flow control pipe (4) is fixedly connected with a plurality of bearing guide groove plates (5), the side surface of the bearing guide groove plate (5) is provided with a limiting groove (6), the side surface of the bearing guide groove plate (5) is slidably connected with a plug-in plate (7), the side surface of the plug-in plate (7) is fixedly connected with a connecting rod (8), the side surface of the connecting rod (8) is connected with a limiting screw (9), the side surface of the limiting screw (9) is rotatably connected with a limiting nut (10), the side surface of the gas flow control pipe (4) is fixedly connected with a gas guide pipe (11), one end of the gas guide pipe (11) is fixedly connected with a nitrogen cylinder (12) relative to the side surface of the gas flow control pipe (4).

2. A smart drying device for circulation of air inside a wine cabinet as claimed in claim 1, wherein: The side surface of the red wine cabinet (1) is fixedly connected with an air exhaust device shell (13), and the inner side surface of the air exhaust device shell (13) is fixedly connected with an air exhaust device base (14).

3. A smart drying device for circulating air inside a wine cabinet as claimed in claim 2, characterized in that: The side surface of the air exhaust device base (14) is fixedly connected with an air exhaust pump (15), and the side surface of the air exhaust pump (15) is fixedly connected with an air exhaust pipe (16).

4. A smart drying device for circulating air inside a wine cabinet as claimed in claim 3, characterized in that: One end of the air exhaust pump (15) is fixedly connected with a pump outlet pipe (17) relative to the side surface of the air exhaust pipe (16), and one end of the pump outlet pipe (17) is connected with a drying bed (18) relative to the side surface of the air exhaust pump (15).

5. A smart drying device for circulating air inside a wine cabinet as claimed in claim 4, characterized in that: The side surface of the drying bed (18) is provided with a plurality of connecting pipes (19).

6. A smart drying device for circulating air inside a wine cabinet as claimed in claim 5, characterized in that: The inner side surface of the connecting pipe (19) is provided with a fine metal mesh (20).

7. A smart drying device for circulating air inside a wine cabinet as claimed in claim 6, characterized in that: The side surface of the fine metal mesh (20) is provided with a drying material replacement opening (21).

8. A smart drying device for circulating air inside a wine cabinet as claimed in claim 1, characterized in that: The side surface of the red wine cabinet (1) is rotatably connected with a glass cabinet door (22).

Citation Information

Patent Citations

  • Red wine cabinet with constant-temperature and constant-humidity functions

    CN211154546U