Compressed air cooling device for simple and convenient installation of on-site electronic components

The compressed air cooling device solved the problem of poor heat dissipation of electronic components in mechanical equipment, achieving efficient equipment cooling and safe operation, extending equipment life and reducing maintenance costs.

CN223528379UActive Publication Date: 2025-11-07JIAN GRP
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Patent Information

Application Number
CN202422851209.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-11-07
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

Electronic components on-site often operate at high temperatures due to poor heat dissipation, affecting equipment stability and lifespan, posing safety hazards, and resulting in high maintenance costs.

Method used

A compressed air cooling device is used, including a cooling cover, a vortex cooler, and an insulated hose. It is connected to a compressed air source through a compressed air delivery pipe, uses the vortex cooler to cool the gas to dissipate heat from the equipment, and diffuses the cooling gas through cooling nozzles. It is monitored in real time by temperature sensors and a display.

Benefits of technology

It improves the heat dissipation efficiency of the equipment, extends its service life, reduces maintenance costs, and ensures the stability and safety of the equipment's operation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223528379U_ABST
Patent Text Reader

Abstract

The utility model relates to a compressed air cooling device for simple and convenient installation of on-site electronic components. The technical problem that existing electronic equipment generates heat is solved. The device comprises a cooling cover used for covering the electronic equipment, a cooling cavity is formed in the cooling cover, a cooling gas conveying pipe communicated with the cooling cavity is arranged on the outer side of the cooling cover, the cooling gas conveying pipe is connected with a vortex refrigerator, and the vortex refrigerator is connected with a compressed air source through a compressed air conveying pipe. And a throttle valve is mounted on the compressed air conveying pipe. The cooling device has the advantages that the cooling cover can cover the equipment, so that cooling gas can cool the equipment conveniently, and the cooling efficiency of the equipment is improved. The vortex refrigerator has the advantages of high refrigerating efficiency, small size, light weight, portability and the like. The diffusion efficiency of cold air can be improved through the cooling nozzles, and the cooling effect is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to cooling equipment technical field, concretely relates to a kind of on-site electronic component simple and convenient installation compressed air cooling device. BACKGROUND

[0002] With the development of current automation technology, mechanical equipment site configures various electronic components, and most of the positions of the equipment need to be installed dispersedly, due to the heat generated by the power consumption of the equipment itself, and the poor heat dissipation of the on-site electronic equipment, the equipment is always operated at high temperature, which affects the operation stability and service life of the equipment, and the equipment needs to be maintained frequently, the maintenance cost increases, and the high-temperature operation of the equipment during use can cause safety problems and affect the use safety of users. SUMMARY

[0003] The utility model aims at the above problem, provide a kind of on-site electronic component simple and convenient installation compressed air cooling device.

[0004] To achieve the above object, the utility model adopts the following technical scheme: a kind of on-site electronic component simple and convenient installation compressed air cooling device, the device includes cooling cover for covering on electronic equipment, the cooling cover has cooling cavity in, the cooling cover outside is equipped with the cooling gas delivery pipe being communicated with cooling cavity, the cooling gas delivery pipe is connected with vortex refrigerating machine, the vortex refrigerating machine is connected with compressed air source by compressed air delivery pipe, and the compressed air delivery pipe is equipped with throttle valve, the compressed air can be throttled according to use condition by throttle valve, and the compressed air can be transmitted to vortex refrigerating machine for cooling by compressed air delivery pipe, the cooling gas after cooling can be transmitted to cooling cavity by cooling gas delivery pipe to cool the equipment, improve the heat dissipation effect of equipment, improve the service life of equipment.

[0005] In the above-mentioned on-site electronic component simple and convenient installation compressed air cooling device, the cooling cover top inside is equipped with the cooling nozzle being in the shape of fan, and the cooling gas delivery pipe one end passes through cooling cover and is connected with cooling nozzle, the cooling gas can be diffused and cooled in cooling cavity by cooling nozzle, the cooling area is improved, and the cooling effect is improved.

[0006] In the above-mentioned on-site electronic component simple and convenient installation compressed air cooling device, the cooling cover is umbrella-shaped or arched, the cooling cover is made of thermal insulation cotton material, and the cooling cover circumferential inside is equipped with aluminium foil heat insulation layer, the thermal insulation effect of cooling cover can be improved by aluminium foil heat insulation layer, the loss of cooling gas is reduced, and the cooling effect of cooling gas on equipment is ensured.

[0007] In the above-mentioned field electronic component simple installation compressed air cooling device, the vortex refrigeration ware is tubular, and the vortex refrigerer side has the air inlet, and the vortex refrigeration ware one end is the hot end air outlet and the other end is the cold end air outlet, and the compressed air can be conveniently inputted through the air inlet to cool, and the heat can be discharged through the hot end air outlet, and the cooling gas can be outputted through the cold end air outlet to cool the equipment.

[0008] In the above-mentioned field electronic component simple installation compressed air cooling device, the cooling gas conveying pipe one end is connected with the cold end air outlet of the vortex refrigeration ware, and the cooling gas of the cold end air outlet is connected with the cooling cover through the cooling conveying pipe, and the cooling cover is cooled by the cooling gas.

[0009] In the above-mentioned field electronic component simple installation compressed air cooling device, the compressed air conveying pipe one end is connected with the air inlet of the vortex refrigeration ware, and the compressed air source is connected with the air inlet through the compressed air conveying pipe, and the compressed air is changed into the cooling gas through the vortex refrigeration ware.

[0010] In the above-mentioned field electronic component simple installation compressed air cooling device, the cooling gas conveying pipe and the compressed air conveying pipe are all heat preservation hoses, and the heat preservation hoses can play the heat preservation effect on the compressed gas, and reduce the heat loss.

[0011] In the above-mentioned field electronic component simple installation compressed air cooling device, the length of the cooling gas conveying pipe is 0.3-0.8 meters.

[0012] In the above-mentioned field electronic component simple installation compressed air cooling device, the compressed air source is an air compressor.

[0013] In the above-mentioned field electronic component simple installation compressed air cooling device, the opening of the cooling cover is annular, and a plurality of magnets are arranged on the opening of the cooling cover, a temperature display is arranged on the outside of the cooling cover, and the temperature display is connected with a temperature sensor arranged on the inside of the cooling cover, the temperature in the cooling cover can be detected in real time through the temperature sensor, and the temperature can be displayed through the temperature display, so that the user can observe and control the cooling device.

[0014] Compared with the prior art, the advantages of the present application are that:

[0015] 1. The cooling cover can be covered on the equipment, so that the cooling gas can cool the equipment, and the cooling efficiency of the equipment is improved.

[0016] 2. The vortex refrigeration ware has the advantages of high refrigeration efficiency, small size, light weight and convenient carrying.

[0017] 3. Cooling nozzles can improve the diffusion efficiency of cold air and enhance the cooling effect. Attached Figure Description

[0018] Figure 1 This is a structural schematic diagram of Embodiment 1 of the present invention.

[0019] Figure 2 This is a schematic diagram of the eddy current cooler in Embodiment 1 of this utility model.

[0020] Figure 3 This is a schematic diagram of the cooling cover in Embodiment 1 of this utility model.

[0021] Figure 4 This is a structural schematic diagram of Embodiment 2 of this utility model.

[0022] In the diagram: 1. Cooling cover, 11. Cooling chamber, 12. Cooling nozzle, 2. Cooling gas delivery pipe, 3. Vortex cooler, 31. Air inlet, 32. Hot end air outlet, 33. Cold end air outlet, 4. Compressed air delivery pipe, 5. Compressed air source, 6. Throttling valve, 7. Magnet, 8. Temperature display, 9. Temperature sensor. Detailed Implementation

[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0024] Example 1

[0025] like Figure 1 As shown, a simple on-site installation compressed air cooling device for electronic components includes a cooling cover 1 for covering electronic equipment. The cooling cover 1 has a cooling chamber 11 inside, which contains cold air to cool the equipment and ensure cooling effect. A cooling gas delivery pipe 2 is provided on the outside of the cooling cover 1 and is connected to the cooling chamber 11. The cooling gas delivery pipe 2 is connected to a vortex cooler 3. The vortex cooler 3 is connected to a compressed air source 5 through a compressed air delivery pipe 4. A throttle valve 6 is installed on the compressed air delivery pipe 4. The throttle valve 6 can throttle the compressed air according to the usage conditions. The compressed air can be transmitted to the vortex cooler 3 for cooling through the compressed air delivery pipe 4. The cooled gas can be transmitted to the cooling chamber 11 through the cooling gas delivery pipe 2 to cool the equipment, improve the heat dissipation effect of the equipment, and extend the service life of the equipment.

[0026] Specifically, the cooling cover 1 has a fan-shaped cooling nozzle 12 on the inner side of the top, and one end of the cooling gas delivery pipe 2 passes through the cooling cover 1 and is connected to the cooling nozzle 12. The cooling nozzle 12 facilitates the diffusion and cooling of the cooling gas in the cooling chamber 11, thereby increasing the cooling area and improving the cooling effect.

[0027] The cooling cover 1 is umbrella-shaped or arched and is made of insulation cotton material. The cooling cover 1 is provided with an aluminum foil insulation layer on the inner side of the circumference. The aluminum foil insulation layer can improve the heat preservation effect of the cooling cover 1, reduce the loss of cooling gas, and ensure the cooling effect of the cooling gas on the equipment.

[0028] like Figure 1 , Figure 2 As shown, the vortex cooler 3 is tubular, and the side of the vortex cooler 3 has an air inlet 31. One end of the vortex cooler 3 is a hot end air outlet 32 ​​and the other end is a cold end air outlet 33. Compressed air can be easily input through the air inlet 31 for cooling, and heat can be discharged through the hot end air outlet 32 ​​for heat dissipation. Cooling gas can be output through the cold end air outlet 33 to cool the equipment.

[0029] Furthermore, one end of the cooling gas delivery pipe 2 is connected to the cold end outlet 33 of the eddy current cooler 3. The cooling gas from the cold end outlet 33 is connected to the cooling cover 1 through the cooling delivery pipe 2, and the equipment inside the cooling cover 1 is cooled by the cooling gas.

[0030] One end of the compressed air delivery pipe 4 is connected to the air inlet 31 of the vortex cooler 3. The compressed air source 5 delivers compressed air to the air inlet 31 through the compressed air delivery pipe 4. The compressed air is transformed into cooling gas by the vortex cooler 3.

[0031] Combination Figure 1 As shown, both the cooling gas delivery pipe 2 and the compressed air delivery pipe 4 are insulated hoses. The insulated hoses can keep the compressed gas warm and reduce heat loss.

[0032] The length of the cooling gas delivery pipe 2 is 0.3-0.8 meters.

[0033] Specifically, compressed air source 5 is an air compressor, which can compress air.

[0034] Combination Figure 1 , Figure 3 As shown, the opening of the cooling cover 1 is annular. A temperature display 8 is provided on the outside of the cooling cover 1, and the temperature display 8 is connected to a temperature sensor 9 located inside the cooling cover 1. The temperature sensor 9 can detect the temperature inside the cooling cover 1 in real time, and the temperature is displayed on the temperature display 8, which makes it convenient for users to observe and control the cooling device.

[0035] The principle of the embodiment is that the cooling cover 1 is covered on the equipment to be cooled, the compressed air source 5 is controlled to compress air and deliver the compressed air to the vortex refrigeration device 3 through the compressed air delivery pipe 4, the compressed air is converted into cooling gas by the vortex refrigeration device 3 and the cooling gas is output to the cooling cavity 11 through the cooling gas delivery pipe 2 and the cooling nozzle 12, the equipment in the cooling cavity 11 is cooled, the temperature in the cooling cavity 11 can be observed by the user through the temperature sensor 9 and the temperature display 8, and the user can adjust the flow of the compressed air according to the temperature through the throttle valve 6.

[0036] Embodiment two

[0037] The embodiment is basically the same as the structure and working principle of the first embodiment, and the difference is that, as shown in the figure, a plurality of magnets 7 are arranged at the opening of the cooling cover 1, when the cooling cover 1 cannot be covered on the equipment in the horizontal state, the cooling cover 1 can be connected to the equipment in the vertical state or the inclined state through the magnets 7, the connection effect between the cooling cover 1 and the equipment can be improved through the magnets, the cooling gas leakage is reduced, and the cooling effect is ensured. Figure 4

[0038] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art to which the present application belongs can make various modifications or supplements to the described specific embodiments or use similar ways to replace, but will not deviate from the spirit of the present application or exceed the scope defined by the appended claims.

[0039] Although the terms cooling cover 1, cooling cavity 11, cooling nozzle 12, cooling gas delivery pipe 2, vortex refrigeration device 3, air inlet 31, hot end air outlet 32, cold end air outlet 33, compressed air delivery pipe 4, compressed air source 5, throttle valve 6, magnet 7, temperature display 8, temperature sensor 9 and the like are used more frequently herein, the possibility of using other terms is not excluded. The use of these terms is only to facilitate the description and explanation of the essence of the present application; any kind of additional limitation is contrary to the spirit of the present application.​

Claims

1. A compressed air cooling device for easy installation of field electronic components, characterized in that, The device comprises a cooling cover (1) for covering an electronic device, the cooling cover (1) has a cooling cavity (11) inside, the cooling cover (1) is provided with a cooling gas delivery pipe (2) which is connected with the cooling cavity (11), the cooling gas delivery pipe (2) is connected with a vortex refrigeration device (3), the vortex refrigeration device (3) is connected with a compressed air source (5) through a compressed air delivery pipe (4), and the compressed air delivery pipe (4) is provided with a throttle valve (6).

2. A compressed air cooling device for easy installation of field electronic components according to claim 1, characterized in that, The cooling cover (1) is provided with a fan-shaped cooling nozzle (12) on the top inner side, and one end of the cooling gas delivery pipe (2) penetrates through the cooling cover (1) and is connected with the cooling nozzle (12).

3. A compressed air cooling device for easy installation of field electronic components according to claim 1, characterized in that, The cooling cover (1) is umbrella-shaped or arch-shaped, the cooling cover (1) is made of heat-insulating cotton material, and the circumferential inner side of the cooling cover (1) is provided with an aluminum foil heat insulation layer.

4. A compressed air cooling device for easy installation of field electronic components according to claim 1 or 2 or 3, characterized in that, The vortex refrigeration device (3) is tubular, the vortex refrigeration device (3) is provided with an air inlet (31) on the side, one end of the vortex refrigeration device (3) is a hot end air outlet (32), and the other end is a cold end air outlet (33).

5. A compressed air cooling device for easy installation of field electronic components according to claim 4, characterized in that, One end of the cooling gas delivery pipe (2) is connected with the cold end air outlet (33) of the vortex refrigeration device (3).

6. A compressed air cooling device for easy installation of field electronic components according to claim 4, characterized in that, One end of the compressed air delivery pipe (4) is connected with the air inlet (31) of the vortex refrigeration device (3).

7. A compressed air cooling device for easy installation of field electronic components according to claim 1, characterized in that, The cooling gas delivery pipe (2) and the compressed air delivery pipe (4) are heat-insulating hoses.

8. A compressed air cooling device for easy installation of field electronic components according to claim 1, characterized in that, The length of the cooling gas delivery pipe (2) is 0.3-0.8 meters.

9. A compressed air cooling device for easy installation of field electronic components according to claim 1, characterized in that, The compressed air source (5) is an air compressor.

10. A compressed air cooling device for easy installation of field electronic components according to claim 1, characterized in that, The opening of the cooling cover (1) is annular, and the opening of the cooling cover (1) is provided with a plurality of magnets (7), the outer side of the cooling cover (1) is provided with a temperature display (8), and the temperature display (8) is connected with a temperature sensor (9) arranged on the inner side of the cooling cover (1). The opening of the cooling cover (1) is annular, and the opening of the cooling cover (1) is provided with a plurality of magnets (7), the outer side of the cooling cover (1) is provided with a temperature display (8), and the temperature display (8) is connected with a temperature sensor (9) arranged on the inner side of the cooling cover (1).