Kitchen air conditioner
By designing a kitchen air conditioner including a water tank, refrigerant pipeline, compressor, condenser and heat exchanger, the problem of inconvenient heat emission and difficulty in realizing dual-mode use in the prior art is solved, and the dual-mode function of utilization of waste heat and cooling and heating is realized, which improves the efficiency and convenience of use.
Patent Information
- Application Number
- CN202421875935.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-05
AI Technical Summary
The existing kitchen air conditioner will generate a large amount of heat when used, which will directly discharge the heat, making it inconvenient to use waste heat, and it is difficult to achieve dual modes of cooling and hot water use.
A kitchen air conditioner including a box, a water tank, a refrigerant pipeline, a compressor, a condenser and a heat exchanger is designed. Through the cooperation of the refrigerant pipeline and a heat exchanger, the dual-mode use of air conditioners and a hot water is realized.
It realizes effective utilization of waste heat, can refrigerate and heat when needed, provides a convenient user experience, and improves the efficiency of air conditioning.
Smart Images

Figure CN222881315U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of kitchen air conditioners, in particular to a kitchen air conditioner. Background Art
[0002] With the accelerated pace of life and the improvement of living standards, air conditioners have basically become essential appliances for families in the hot summer. The high temperature in the kitchen in summer will make people feel uncomfortable, so they will choose to install air conditioners in the kitchen. When the air conditioner is in use, a large amount of heat will be generated outside the air conditioner, and the heat will be directly discharged, which is not convenient for the use of waste heat. Therefore, a kitchen air conditioner that can utilize waste heat and can realize dual modes of cooling and hot water use is needed.
[0003] The utility model is produced based on the above-mentioned shortcomings. Utility Model Content
[0004] The utility model aims to overcome the problems of the prior art and provides a kitchen air conditioner capable of realizing dual modes of refrigeration and hot water use.
[0005] In order to achieve the above purpose, the utility model adopts the following scheme:
[0006] A kitchen air conditioner comprises: a box body, a water tank is arranged in the box body, a compressor, a condenser and a heat exchanger connected through a refrigerant pipeline are also installed in the box body, the heat exchanger is arranged in the water tank, the condenser is connected to a fan, the condenser is connected to a shell capable of surrounding the fan, the shell is connected to a pipe group connected thereto, the pipe group has a first air outlet facing outward and a second air outlet facing the kitchen, the pipe group is also connected to a first switch assembly capable of opening or closing the first air outlet, and the pipe group is also connected to a second switch assembly capable of opening or closing the second air outlet.
[0007] The pipe group includes a first pipe that can be connected to the shell, the first pipe is connected to the second pipe, the second pipe includes a first pipe body that can be connected to the first pipe and extends to one side of the box body, the first pipe body is also connected to the second pipe body extending to the other side of the box body, and the first pipe body and the second pipe body are connected to each other.
[0008] The first air outlet is arranged at the end of the second tube body, the first switch assembly is arranged on the second tube body, the second air outlet is arranged at the end of the first tube body, the second switch assembly is arranged on the first tube body, and the second switch assembly is located at the front side of the second tube body inlet.
[0009] The first switch assembly includes a first drive motor connected to the outside of the second tube body, the first output shaft on the first drive motor passes through the second tube body, and the first switch assembly also includes a first closing plate connected to the first output shaft, and the first closing plate can follow the movement of the first output shaft to open or close the first air outlet.
[0010] The first closing plate includes a first plate body, on which a first connecting frame is arranged, and the first connecting frame cooperates with and clamps the first plate body so that the first plate body is connected to the first output shaft, and the first connecting frame is fixedly connected to the first plate body by screws, and a sealing component is also connected to the outer periphery of the first plate body.
[0011] The second switch assembly includes a second drive motor connected to the outside of the first tube body, the second output shaft on the second drive motor passes through the first tube body, and the second switch assembly also includes a second closing plate connected to the second output shaft, and the second closing plate can open or close the second air outlet following the movement of the second output shaft.
[0012] The second closing plate includes a second plate body, on which a second connecting frame is arranged, and the second connecting frame cooperates with and clamps the second plate body so that the second plate body is connected to the second output shaft. The second connecting frame is fixedly connected to the second plate body by screws, and a sealing component is also connected to the outer periphery of the second plate body.
[0013] The first tube body is made of flexible material.
[0014] The refrigerant pipeline includes a four-way valve, a first pipeline is provided between the four-way valve and the compressor inlet, a second pipeline is provided between the four-way valve and the condenser inlet, a third pipeline is provided between the four-way valve and the compressor outlet, a fourth pipeline is provided between the four-way valve and the heat exchanger, and a fifth pipeline is provided between the condenser and the heat exchanger.
[0015] The water tank is provided with a water outlet pipe and a water inlet pipe, and the water outlet pipe is also connected with a thermostatic water valve.
[0016] Compared with the existing technology, the utility model has the following advantages: when the kitchen air conditioner of the utility model is in use, cold air is produced by the cooperation of the refrigerant pipeline, the compressor, the condenser and the heat exchanger. When the kitchen needs to be refrigerated, the second switch component is turned on, the second air outlet is opened, and the fan sends cold air into the kitchen through the pipeline group. When the user only needs to heat the water in the water tank, the second switch component is closed, and then the first switch component is opened. At this time, the second air outlet is closed and the first air outlet is opened. At this time, the fan outputs cold air to the outside through the pipeline group. The heat exchanger heats the water in the water tank when in use for the user to use, which is very convenient to use. Moreover, the kitchen air conditioner of the utility model can also be used for heating. The second switch component is turned on, the second air outlet is opened, and the fan sends hot air into the kitchen through the pipeline group. The utility model is very convenient to use. The air supply and closing of the air duct can be realized through the cooperation of the first switch component and the second switch component, which is convenient for users to operate. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is one of the structural schematic diagrams of the kitchen air conditioner of the utility model;
[0018] Figure 2 This is the second structural diagram of the kitchen air conditioner of the utility model;
[0019] Figure 3 This is the third structural diagram of the kitchen air conditioner of the utility model;
[0020] Figure 4 This is a structural schematic diagram of the first switch assembly of the kitchen air conditioner of the utility model;
[0021] Figure 5 It is a structural schematic diagram of the second switch assembly of the kitchen air conditioner of the present utility model.
[0022] Reference numerals: box body 1; water tank 2, water outlet pipe 21, water inlet pipe 22, thermostatic water valve 23, foaming layer 200; refrigerant pipeline 3, four-way valve 31, first pipeline 32, second pipeline 33, third pipeline 34, fourth pipeline 35, fifth pipeline 36; compressor 4; condenser 5; fan 6; shell 7; pipeline group 8, first air outlet 81, second air outlet 82, first pipeline 83, second pipeline 84, first tube body 841, second tube body 842; first switch assembly 91, first drive motor 911, first output shaft 9111, first closing plate 912, first plate body 9121, first connecting frame 9122, first sealing component 9123, second switch assembly 92, second drive motor 921, second output shaft 9211, second closing plate 922, second plate body 9221, second connecting frame 9222, second sealing component 9223. DETAILED DESCRIPTION
[0023] The present invention is further described in detail below in conjunction with the embodiments:
[0024] The following is a further detailed description of the specific implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0025] like Figures 1 to 5 As shown, a kitchen air conditioner comprises: a box body 1, a water tank 2 is arranged in the box body 1, a compressor 4, a condenser 5 and a heat exchanger connected through a refrigerant pipeline 3 are also installed in the box body 1, the heat exchanger is arranged in the water tank 2, the condenser 5 is connected to a fan 6, the condenser 5 is connected to a shell 7 capable of surrounding the fan 6, the shell 7 is connected to a pipe group 8 connected thereto, the pipe group 8 has a first air outlet 81 facing outward and a second air outlet 82 facing the kitchen, the pipe group 8 is also connected to a first switch component 91 capable of opening or closing the first air outlet 81, and the pipe group 8 is also connected to a second switch component 92 capable of opening or closing the second air outlet 82.
[0026] When the kitchen air conditioner of the present invention is in use, cold air is produced by the cooperation of the refrigerant pipeline 3, the compressor 4, the condenser 5 and the heat exchanger. When the kitchen needs to be cooled, the second switch component 92 is turned on, the second air outlet 82 is opened, and the fan 6 sends cold air into the kitchen through the pipeline group 8. When the user only needs to heat the water in the water tank 2, the second switch component 92 is turned off, and then the first switch component 91 is turned on. At this time, the second air outlet 82 is closed and the first air outlet 81 is opened. At this time, the fan 6 outputs cold air to the outside through the pipeline group 8. The heat exchanger heats the water in the water tank 2 when in use for the user to use. It is very convenient to use. In addition, the kitchen air conditioner of the present invention can also be used for heating. The second switch component 92 is turned on, the second air outlet 82 is opened, and the fan 6 sends hot air into the kitchen through the pipeline group 8. The utility model is very convenient to use. The air supply and closing of the air duct can be realized through the cooperation of the first switch component 91 and the second switch component 92, and the user is easy to operate.
[0027] like Figure 2 and Figure 3 As shown, a foaming layer 200 is provided on the outside of the water tank 2 for heat preservation.
[0028] like Figure 3As shown, the pipe group 8 includes a first pipe 83 that can be connected to the housing 7, and the first pipe 83 is connected to a second pipe 84. The second pipe 84 includes a first tube body 841 that can be connected to the first pipe 83 and extends to one side of the box body 1. The first tube body 841 is also connected to a second tube body 842 that extends to the other side of the box body 1. The first tube body 841 and the second tube body 842 are connected to each other. The housing 7 is semi-enclosed and installed on the outside of the condenser 5 to surround the fan 6. The first pipe 83 is connected to the housing 7. The first pipe 83 is arranged to facilitate the connection between the housing 7 and the second pipe 84, making the connection between the two more convenient. At the same time, the first tube body 841 and the second tube body 842 are arranged to locate the air duct to guide the wind blown by the fan 6 into the kitchen or be discharged to the outside.
[0029] like Figure 4 and Figure 5 As shown, the first air outlet 81 is arranged at the end of the second tube 842, the first switch assembly 91 is arranged on the second tube 842, the second air outlet 82 is arranged at the end of the first tube 841, the second switch assembly 92 is arranged on the first tube 841, and the second switch assembly 92 is located at the front side of the entrance of the second tube 842. The second switch assembly 92 is arranged at the front side of the entrance of the second tube 842, and is only used to close the second air outlet 82. The second switch assembly 92 cooperates with the first switch assembly 91 to open or close the first air outlet 81 and the second air outlet 82.
[0030] like Figure 4 As shown, the first switch assembly 91 includes a first drive motor 911 connected to the outside of the second tube 842, a first output shaft 9111 on the first drive motor 911 passes through the second tube 842, and the first switch assembly 91 also includes a first closing plate 912 connected to the first output shaft 9111, and the first closing plate 912 can follow the movement of the first output shaft 9111 to open or close the first air outlet 81. After the first drive motor 911 is started, it drives the first output shaft 9111 to rotate, and then drives the first closing plate 912 to rotate, so that the first air outlet 81 is opened or closed.
[0031] like Figure 4As shown, the first closing plate 912 includes a first plate body 9121, on which a first connecting frame 9122 is provided, and the first connecting frame 9122 cooperates with the first plate body 9121 to clamp so that the first plate body 9121 is connected to the first output shaft 9111, and the first connecting frame 9122 is fixedly connected to the first plate body 9121 by screws, and a first sealing component 9123 is also connected to the outer periphery of the first plate body 9121. The first connecting frame 9122 is fixedly connected to the first plate body 9121 by screws, which is convenient for workers to assemble and also convenient to disassemble for use. The first sealing component 9123 is a sealing ring, etc., which can avoid the formation of a gap between the first plate body 9121 and the first air outlet 81, and has better sealing performance.
[0032] like Figure 5 As shown, the second switch assembly 92 includes a second drive motor 921 connected to the outside of the first tube 841, a second output shaft 9211 on the second drive motor 921 passes through the first tube 841, and the second switch assembly 92 also includes a second closing plate 922 connected to the second output shaft 9211, and the second closing plate 922 can follow the movement of the second output shaft 9211 to open or close the second air outlet 82. After the second drive motor 921 is started, it drives the second output shaft 9211 to rotate, and then drives the second closing plate 922 to rotate, so that the second air outlet 82 is opened or closed.
[0033] like Figure 5 As shown, the second closing plate 922 includes a second plate body 9221, and a second connecting frame 9222 is provided on the second plate body 9221. The second connecting frame 9222 cooperates with the second plate body 9221 to clamp the second plate body 9221 so that the second plate body 9221 is connected to the second output shaft 9211, and the second connecting frame 9222 is fixedly connected to the second plate body 9221 by screws. The second connecting frame 9222 is fixedly connected to the second plate body 9221 by screws, which is convenient for workers to assemble and also convenient to disassemble for use. The second sealing component 9223 is a sealing ring, etc., which can avoid the formation of a gap between the second plate body 9221 and the second air outlet 82, and has better sealing performance.
[0034] like Figure 3 As shown, the first tube body 841 is made of a flexible material, which is convenient for connection with the outlet of the housing 7 and the inlet of the second pipe 84. It is easy to install, and when maintenance is needed, since it is made of a flexible material, it will not interfere with the disassembly of the housing 7. It does not need to be removed during disassembly, which is more convenient.
[0035] like Figure 2As shown, the refrigerant pipeline 3 includes a four-way valve 31, a first pipeline 32 is provided between the four-way valve 31 and the inlet of the compressor 4, a second pipeline 33 is provided between the four-way valve 31 and the inlet of the condenser 5, a third pipeline 34 is provided between the four-way valve 31 and the outlet of the compressor 4, a fourth pipeline 35 is provided between the four-way valve 31 and the heat exchanger, and a fifth pipeline 36 is provided between the condenser 5 and the heat exchanger. The heat exchanger is a disc heat exchanger. When the air conditioner is refrigerating, the heat exchanger heats the water in the water tank 2 to perform heat exchange, which is more convenient to use. The user can not only blow cold air, but also use hot water, which is more convenient to use.
[0036] like Figure 1 As shown, the water tank 2 is provided with a water outlet pipe 21 and a water inlet pipe 22, and the water outlet pipe 21 is also connected to a thermostatic water valve 23. The thermostatic water valve 23 can make the hot water discharged from the water outlet pipe 21 reach a constant temperature, and the outlet water temperature of the thermostatic water valve 23 can be adjusted, and the thermostatic water valve 23 discharges water to equipment such as faucets.
[0037] The above generally describes the present invention in detail, but it is obvious to a person skilled in the art that some modifications or improvements can be made to the present invention. Therefore, modifications or improvements that do not depart from the spirit of the present invention are within the scope of protection of the present invention.
Claims
1. A kitchen air conditioner, characterized in that: include: A box body (1) is provided with a water tank (2) in the box body (1), and a compressor (4), a condenser (5) and a heat exchanger which are connected via a refrigerant pipeline (3) are also installed in the box body (1), and the heat exchanger is arranged in the water tank (2), and the condenser (5) is connected with a fan (6), and the condenser (5) is connected with a shell (7) which can surround the fan (6), and the shell (7) is connected with a pipe group (8) which is connected thereto, and the pipe group (8) has a first air outlet (81) facing outward and a second air outlet (82) facing the kitchen, and the pipe group (8) is also connected with a first switch component (91) which can open or close the first air outlet (81), and the pipe group (8) is also connected with a second switch component (92) which can open or close the second air outlet (82).
2. The kitchen air conditioner according to claim 1, characterized in that: The pipe group (8) comprises a first pipe (83) that can be connected to the housing (7); the first pipe (83) is connected to a second pipe (84); the second pipe (84) comprises a first pipe body (841) that can communicate with the first pipe (83) and extend toward one side of the housing (1); the first pipe body (841) is also connected to a second pipe body (842) that extends toward the other side of the housing (1); the first pipe body (841) and the second pipe body (842) are connected to each other.
3. The kitchen air conditioner according to claim 2, characterized in that: The first air outlet (81) is arranged at the end of the second tube (842), the first switch assembly (91) is arranged on the second tube (842), the second air outlet (82) is arranged at the end of the first tube (841), the second switch assembly (92) is arranged on the first tube (841), and the second switch assembly (92) is located at the front side of the entrance of the second tube (842).
4. The kitchen air conditioner according to claim 3, characterized in that: The first switch assembly (91) includes a first drive motor (911) connected to the outside of the second tube body (842), and a first output shaft (9111) on the first drive motor (911) passes through the second tube body (842). The first switch assembly (91) also includes a first closing plate (912) connected to the first output shaft (9111), and the first closing plate (912) can follow the movement of the first output shaft (9111) to open or close the first air outlet (81).
5. The kitchen air conditioner according to claim 4, characterized in that: The first closing plate (912) includes a first plate body (9121), on which a first connecting frame (9122) is arranged, and the first connecting frame (9122) cooperates with and clamps the first plate body (9121) so that the first plate body (9121) is connected to the first output shaft (9111), and the first connecting frame (9122) is fixedly connected to the first plate body (9121) by screws, and a first sealing component (9123) is also connected to the outer periphery of the first plate body (9121).
6. The kitchen air conditioner according to claim 3, characterized in that: The second switch assembly (92) includes a second drive motor (921) connected to the outside of the first tube body (841), and the second output shaft (9211) on the second drive motor (921) passes through the first tube body (841). The second switch assembly (92) also includes a second closing plate (922) connected to the second output shaft (9211), and the second closing plate (922) can follow the movement of the second output shaft (9211) to open or close the second air outlet (82).
7. The kitchen air conditioner according to claim 6, characterized in that: The second closing plate (922) includes a second plate body (9221), and a second connecting frame (9222) is arranged on the second plate body (9221). The second connecting frame (9222) cooperates with the second plate body (9221) to clamp the second plate body (9221) so that the second plate body (9221) is connected to the second output shaft (9211). The second connecting frame (9222) is fixedly connected to the second plate body (9221) by screws, and a second sealing component (9223) is also connected to the outer periphery of the second plate body (9221).
8. The kitchen air conditioner according to claim 2, characterized in that: The first tube body (841) is made of flexible material.
9. The kitchen air conditioner according to claim 1, characterized in that: The refrigerant pipeline (3) includes a four-way valve (31), a first pipeline (32) is provided between the four-way valve (31) and the inlet of the compressor (4), a second pipeline (33) is provided between the four-way valve (31) and the inlet of the condenser (5), a third pipeline (34) is provided between the four-way valve (31) and the outlet of the compressor (4), a fourth pipeline (35) is provided between the four-way valve (31) and the heat exchanger, and a fifth pipeline (36) is provided between the condenser (5) and the heat exchanger.
10. The kitchen air conditioner according to claim 1, characterized in that: The water tank (2) is provided with a water outlet pipe (21) and a water inlet pipe (22), and the water outlet pipe (21) is also connected with a thermostatic water valve (23).