Gas compressor capable of rapidly cooling air cylinder

The direct application of cooling water through pipes and nozzles in gas compressors addresses the slow cooling issue, enhancing heat dissipation and resource efficiency.

CN223104723UActive Publication Date: 2025-07-15重庆卫泽亿科技有限公司
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Patent Information

Application Number
CN202422141085.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-07-15
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

The cylinder cooling speed of existing gas compressors is slow, especially in hot environments, and the heat dissipation effect is not good.

Method used

The cylinder assembly is quickly cooled by spraying cooling water through the pump body. The cooling water is pumped into the straight pipe and the riser pipe and then sprayed from the nozzle, combining the water collection tank and drainage system to recover water resources.

Benefits of technology

The rapid cooling of the cylinder is achieved, the cooling efficiency is improved, and water resources are saved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223104723U_ABST
    Figure CN223104723U_ABST
Patent Text Reader

Abstract

The utility model provides a gas compressor with a rapidly cooled air cylinder, which comprises a compressor body, an air cylinder component is arranged on the compressor body, a bottom table is fixed at the bottom of the compressor body, four upright posts are fixed on the bottom table in a square shape, and a top table is fixed at the tops of the four upright posts. A plurality of straight pipes are installed at the top of the top table at intervals, a plurality of vertical pipes are arranged at the bottoms of the straight pipes in a communicating mode, nozzles are installed at the bottoms of the vertical pipes and located above the air cylinder assembly, a pump body is installed on the top table, pipelines are arranged among the straight pipes in a communicating mode, and a water inlet of the pump body is communicated with an external water source through a hose. According to the air compressor, the problems that in the prior art, a fan is usually adopted for blowing air for cooling, the heat dissipation speed is low, and particularly in hot summer, the heat dissipation effect is greatly reduced are solved.
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Description

Technical Field

[0001] The utility model relates to the field of compressors, in particular to a gas compressor with rapid cooling of a cylinder. Background Art

[0002] A gas compressor is a power device that converts mechanical energy into gas pressure energy, and is commonly used to provide gas power for pneumatic tools. It is also commonly used to compress media such as oxygen, hydrogen, ammonia, natural gas, coke oven gas, and inert gas in industries such as petrochemical, drilling, and metallurgy.

[0003] The cylinder is one of the core components of a gas compressor. When the compressor operates, it often emits a large amount of heat. Therefore, during the operation of the compressor, the cylinder needs to be cooled. In the prior art, annular heat dissipation fins are usually cast on the outer circle of the cylinder block in the current gas compressor, and then cooled by blowing air with a fan. The heat dissipation speed is slow, especially in hot summer, and its heat dissipation effect is greatly reduced.

[0004] Therefore, it is necessary to provide a new gas compressor with rapid cooling of the cylinder to solve the above technical problems. Content of the Utility Model

[0005] To solve the above technical problems, the utility model provides a gas compressor with rapid cooling of the cylinder, which solves the problems that the gas compressor in the prior art usually uses a fan to blow air for cooling, the heat dissipation speed is slow, especially in hot summer, and its heat dissipation effect is greatly reduced.

[0006] The gas compressor with rapid cooling of the cylinder provided by the utility model includes a compressor body, a cylinder assembly is arranged on the compressor body, a bottom platform is fixed at the bottom of the compressor body, and four upright columns are fixedly arranged in a square shape on the bottom platform;

[0007] The tops of the four upright columns are fixed with a top platform, a plurality of straight pipes are installed at intervals on the top of the top platform, a plurality of vertical pipes are communicated at the bottom of the straight pipes, and a nozzle is installed at the bottom of the vertical pipe. The nozzle is located above the cylinder assembly.

[0008] In a preferred embodiment, a pump body is installed on the top platform, a pipeline is communicated between a plurality of the straight pipes, the water inlet of the pump body is connected with an external water source through a hose, and the water outlet of the pump body is connected with the pipeline.

[0009] In a preferred embodiment, water collecting frame plates are fixed on both sides of the compressor body.

[0010] In a preferred embodiment, a water collecting tank is placed above the bottom platform, a drain pipe is communicated at the bottom of the water collecting frame plate, and the bottom of the drain pipe is located directly above the bottom platform.

[0011] In a preferred embodiment, a water baffle is fixed between the two columns by a plurality of high-strength screws.

[0012] In a preferred embodiment, a clamping plate is arranged above the bottom table, and the water collecting tank is located between the clamping plate and the column;

[0013] A sliding groove is formed in the bottom table, the bottom of the clamping plate is slidably connected with the sliding groove, a galvanized screw rod is movably arranged inside the sliding groove, the bottom of the galvanized screw rod penetrates through the clamping plate, and the galvanized screw rod is in threaded connection with the clamping plate;

[0014] One end of the galvanized screw rod extends out of the bottom table and is provided with a handle.

[0015] Advantages of the utility model:

[0016] 1. When this gas compressor is in use, when it is necessary to quickly cool the cylinder assembly, the pump body can be opened, and the cooling water is pumped into a plurality of straight pipes and risers through the pipeline by the pump body. Finally, the cooling water can be sprayed from the nozzles onto the surface of the cylinder assembly to quickly cool it, greatly improving the cooling speed;

[0017] 2. When the cooling water flowing down reaches the surface of the compressor body, the cooling water will flow into the water collecting tank along the drain pipe for recycling, saving a large amount of water resources. When the cooling water in the water collecting tank accumulates to a certain amount, the staff can turn the handle to release the fixation of the water collecting tank. At this time, the staff can transfer the cooling water in the water collecting tank to the reservoir, and after the transfer is completed, the water collecting tank can be fixed by the clamping plate again. Description of the drawings

[0018] Figure 1 is the main structural perspective view of the gas compressor for rapid cooling of cylinders provided by the utility model Figure 1 ;

[0019] Figure 2 is Figure 1 the enlarged structural schematic diagram of A shown in the figure;

[0020] Figure 3 is the main structural perspective view of the gas compressor for rapid cooling of cylinders provided by the utility model Figure 2 ;

[0021] Figure 4 is the main structural side view of the gas compressor for rapid cooling of cylinders provided by the utility model.

[0022] Reference numerals in the figure: 1, compressor body; 2, cylinder assembly; 3, base; 4, column; 5, top platform; 6, straight pipe; 7, riser pipe; 8, spray head; 9, pump body; 10, pipeline; 11, water collection frame plate; 12, water collection tank; 13, drain pipe; 14, high-strength screw; 15, water baffle; 16, clamping plate; 17, sliding groove; 18, galvanized lead screw; 19, handle. Detailed implementation mode

[0023] The present utility model will be further described below in conjunction with the accompanying drawings and implementation modes.

[0024] Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 4 , where Figure 1 is the main structure perspective view of the gas compressor for rapid cooling of the cylinder provided by the present utility model Figure 1 ; Figure 2 is Figure 1 the enlarged structural schematic diagram of A shown in Figure 3 is the main structure perspective view of the gas compressor for rapid cooling of the cylinder provided by the present utility model Figure 2 ; Figure 4 is the main structure side view of the gas compressor for rapid cooling of the cylinder provided by the present utility model.

[0025] In the specific implementation process, as Figures 1 - 4 shown, it includes a compressor body 1, a cylinder assembly 2 is arranged on the compressor body 1, a base 3 is fixed at the bottom of the compressor body 1, four columns 4 are fixedly arranged in a square shape on the base 3, a top platform 5 is fixed at the tops of the four columns 4, a number of straight pipes 6 are installed at intervals on the top platform 5, a number of riser pipes 7 are communicated and arranged at the bottoms of the straight pipes 6, a spray head 8 is installed at the bottoms of the riser pipes 7, the spray head 8 is located above the cylinder assembly 2, a pump body 9 is installed on the top platform 5, a pipeline 10 is communicated and arranged between the number of straight pipes 6, the water inlet of the pump body 9 is connected to an external water source through a hose, the water outlet of the pump body 9 is connected to the pipeline 10. When this gas compressor is in use, when it is necessary to rapidly cool the cylinder assembly 2, the pump body 9 can be turned on, and the cooling water is pumped into the number of straight pipes 6 and riser pipes 7 through the pipeline 10 by the pump body 9, and finally the cooling water can be sprayed from the spray head 8 onto the surface of the cylinder assembly 2 to rapidly cool it, greatly improving its cooling speed.

[0026] Water collecting frame plates 11 are fixed on both sides of the compressor body 1. A water collecting tank 12 is placed above the bottom platform 3. A drain pipe 13 is communicated and arranged at the bottom of the water collecting frame plate 11. The bottom of the drain pipe 13 is directly above the bottom platform 3. A clamping plate 16 is arranged above the bottom platform 3. The water collecting tank 12 is located between the clamping plate 16 and the column 4. A sliding groove 17 is formed on the bottom platform 3. The bottom of the clamping plate 16 is slidably connected with the sliding groove 17. A galvanized screw rod 18 is movably arranged inside the sliding groove 17. The bottom of the galvanized screw rod 18 penetrates through the clamping plate 16, and the galvanized screw rod 18 is threadedly connected with the clamping plate 16. One end of the galvanized screw rod 18 extends out of the bottom platform 3 and is provided with a handle 19, which is convenient for the staff to rotate the galvanized screw rod 18.

[0027] When the cooled water flows onto the surface of the compressor body 1, the cooling water will enter the water collecting tank 12 through the drain pipe 13 for recycling. When the cooling water in the water collecting tank 12 accumulates to a certain amount, the staff can rotate the handle 19 to drive the galvanized screw rod 18 to rotate. Driven by the galvanized screw rod 18, the clamping plate 16 moves along the sliding groove 17 in a direction away from the column 4, so as to cancel the fixation of the water collecting tank 12. At this time, the staff can transfer the cooling water in the water collecting tank 12 to the reservoir. After the transfer is completed, the water collecting tank 12 can be fixed by the clamping plate 16 again.

[0028] A water baffle 15 is fixed between the two columns 4 by a number of high-strength screws 14. Through the water baffle 15, the cylinder assembly 2 can be isolated from other mechanisms of the compressor body 1 to prevent water from splashing onto other mechanisms.

[0029] The working principle of the present utility model: When this gas compressor is in use, when it is necessary to quickly cool the cylinder assembly 2, the pump body 9 can be opened. The pump body 9 pumps the cooling water through the pipeline 10 into a number of straight pipes 6 and vertical pipes 7. Finally, the cooling water can be sprayed from the nozzles 8 onto the surface of the cylinder assembly 2 to quickly cool it, greatly improving the cooling speed.

[0030] When the cooled water flows onto the surface of the compressor body 1, the cooling water will enter the water collecting tank 12 through the drain pipe 13 for recycling. When the cooling water in the water collecting tank 12 accumulates to a certain amount, the staff can rotate the handle 19 to drive the galvanized screw rod 18 to rotate. Driven by the galvanized screw rod 18, the clamping plate 16 moves along the sliding groove 17 in a direction away from the column 4, so as to cancel the fixation of the water collecting tank 12. At this time, the staff can transfer the cooling water in the water collecting tank 12 to the reservoir. After the transfer is completed, the water collecting tank 12 can be fixed by the clamping plate 16 again.

[0031] The circuits and controls involved in the present utility model are all prior arts and will not be elaborated here too much.

[0032] The above are only embodiments of the present utility model, and thus do not limit the patent scope of the present utility model. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall similarly be included within the patent protection scope of the present utility model.

Claims

1. A gas compressor for rapid cooling of a cylinder, comprising a compressor body (1), and a cylinder assembly (2) is arranged on the compressor body (1), characterized in that, A base platform (3) is fixed to the bottom of the compressor body (1), and four upright columns (4) are fixedly arranged in a square shape on the base platform (3); At the top of the four upright columns (4), a top platform (5) is fixed. A number of straight pipes (6) are installed at intervals on the top of the top platform (5). A number of riser pipes (7) are communicated with the bottom of the straight pipes (6). A spray head (8) is installed at the bottom of the riser pipe (7), and the spray head (8) is located above the cylinder assembly (2).

2. The gas compressor for rapid cooling of a cylinder according to claim 1, wherein A pump body (9) is installed on the top platform (5). A pipeline (10) is communicated between a number of the straight pipes (6). The water inlet of the pump body (9) is communicated with an external water source through a hose, and the water outlet of the pump body (9) is communicated with the pipeline (10).

3. The gas compressor for rapid cooling of the cylinder according to claim 2, characterized in that, Water collecting frame plates (11) are fixed to both sides of the compressor body (1).

4. The gas compressor for rapid cooling of a cylinder according to claim 3, wherein A water collecting tank (12) is placed above the base platform (3). A drain pipe (13) is communicated with the bottom of the water collecting frame plate (11), and the bottom of the drain pipe (13) is located directly above the base platform (3).

5. The gas compressor for rapid cooling of a cylinder according to claim 4, characterized in that, A water baffle (15) is fixed between two of the upright columns (4) by a number of high-strength screws (14).

6. The gas compressor for rapid cooling of a cylinder according to claim 5, wherein, A clamping plate (16) is arranged above the base platform (3), and the water collecting tank (12) is located between the clamping plate (16) and the upright columns (4); A sliding groove (17) is formed in the base platform (3), and the bottom of the clamping plate (16) is slidably connected with the sliding groove (17). A galvanized screw rod (18) is movably arranged inside the sliding groove (17). The bottom of the galvanized screw rod (18) penetrates through the clamping plate (16), and the galvanized screw rod (18) is in threaded connection with the clamping plate (16); One end of the galvanized screw rod (18) extends out of the base platform (3) and is provided with a handle (19).