Combined type refrigeration main engine base

By designing a composite refrigeration system in the host base and using the combination of turbine blades and circulating cooling oil, the problem of unsatisfactory heat dissipation effect during high load operation of the host is solved, more effective heat dissipation and air circulation are achieved, and the computing performance of the host is improved.

CN222996929UActive Publication Date: 2025-06-17BEIJING JINGNENG STAR ENERGY TECH CO LTD
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Patent Information

Application Number
CN202421990266.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-06-17
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

When the existing host base runs at a high load, the heat dissipation effect is not ideal, resulting in heat accumulation and affecting the host's computing performance.

Method used

A composite refrigeration mainframe is designed, including cooling support components and cooling components. The cooling support assembly realizes air rotation and cooling through the turbine blade driven by the motor. The cooling assembly uses a pump to circulate the cooling oil to absorb and exchange heat through the DC pipe and vortex pipe that runs through the water.

Benefits of technology

It effectively improves the air circulation inside the host, enhances the heat dissipation effect, avoids computing problems caused by heat accumulation, and ensures that the host can continuously assist heat dissipation under low power consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of machine bases, in particular to a cooling supporting assembly and a cooling assembly, the cooling supporting assembly comprises a placing base, a first through groove is formed in the middle of the placing base, and a mounting frame is fixedly mounted at the bottom of the first through groove; a first ventilation plate, a second ventilation plate and a third ventilation plate which are fixedly connected to the inner wall of the mounting frame are sequentially arrayed in the mounting frame from top to bottom, the cooling supporting assembly further comprises a motor used for driving and two turbine blades used for fanning, and connecting rings used for transmission are installed at the bottoms of the two turbine blades correspondingly. By arranging the cooling assembly, the host can be helped to assist in heat dissipation in the case under the condition of low power consumption, when the host is under the condition of low power consumption, the pump is started, and the pump promotes cooling oil to circulate in the direct-current pipeline and the vortex pipeline; the cooling oil absorbs heat at the bottom of the main machine, exchanges the heat through the vortex pipeline and circulates the heat into the direct-current pipeline, and then the direct-current pipeline is in contact with the bottom face of the main machine to exchange the heat.
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Description

Technical Field

[0001] The present application relates to the technical field of computer cases, and specifically to a composite refrigeration computer case. Background Art

[0002] A computer case usually refers to a component used to place and fix a computer main unit. It can prevent the computer main unit from directly contacting the ground, prevent dust from entering the main unit, and prevent moisture from entering the main unit through the bottom, which may damage the electrical components inside the main unit. It can also help improve the stability of the main unit and facilitate cleaning and maintenance.

[0003] However, the existing computer cases can only achieve the function of raising the main unit to avoid direct contact with the ground. When the main unit is running at high load, the CPU installed inside the main unit will generate a large amount of heat. This heat will be directly discharged into the chassis through the fan installed on the CPU. Due to the sealed nature of the chassis interior, the actual heat dissipation effect is not ideal. In the case of continuous heat accumulation, the heat inside the chassis is not effectively reduced. If effective heat dissipation cannot be achieved, it will affect the computing performance of the main unit, such as frame drops and lags.

[0004] Therefore, it is necessary to provide a composite refrigeration computer case to solve the above problems.

[0005] It should be noted that the above information disclosed in this background art section is only used to understand the background art of the concept of the present application, and therefore, it may include information that does not constitute prior art. Summary of the Utility Model

[0006] Based on the above problems existing in the prior art, the problem to be solved by the present application is to assist in the heat dissipation inside the main unit.

[0007] The technical solution adopted by the present application to solve its technical problems is: a composite refrigeration computer case, including a cooling support component and a cooling component;

[0008] The cooling support component includes a placement seat. A first through groove is formed in the middle of the placement seat, and an installation frame is fixedly installed at the bottom of the first through groove. Inside the installation frame, a first ventilation plate, a second ventilation plate, and a third ventilation plate are fixedly connected to the inner wall of the installation frame in sequence from top to bottom in an array;

[0009] The cooling support component further includes a motor for driving and two turbine blades for blowing air. A connecting ring for transmission is installed at the bottom of each of the two turbine blades. A belt is installed between the two connecting rings. The connecting rings are installed on the bottom surface of the second ventilation plate, and the two turbine blades are installed on the top of the second ventilation plate.

[0010] The cooling component includes a direct-current pipeline for water flow installed on the placement base, a vortex pipeline for cooling, and a pump for circulation.

[0011] Further, the belt is arranged between two connecting rings and is in a tensioned state.

[0012] Further, the output shafts of the two turbine blades both penetrate through the second ventilation plate and extend to the bottom of the second ventilation plate, and the output shaft of the motor is fixedly connected to the bottom surface of one of the connecting rings.

[0013] Further, mounting blocks for support are fixedly installed at the four corners of the placement base. Floors are installed at the bottoms of the four mounting blocks, and support arms connected to one side of the mounting frame are fixedly connected to the outer walls of the four mounting blocks.

[0014] Further, one end of the direct-current pipeline is connected to one end of the vortex pipeline, the other end of the direct-current pipeline is connected to the water inlet of the pump, one end of the vortex pipeline is connected to the direct-current pipeline, the other end of the vortex pipeline is connected to the water outlet of the pump, and the direct-current pipeline and the vortex pipeline are filled with cooling oil.

[0015] The direct-current pipeline is installed on the top of the placement base, the vortex pipeline is erected on the four support arms, and the pump is installed on one of the support arms.

[0016] Further, the inner part of the pipe wall of the vortex pipeline is arranged in a spiral shape.

[0017] The beneficial effects of the present application are as follows: A composite refrigeration main engine base provided by the present application, when the motor works, the output shaft of the motor outputs the rotational force to one of the connecting rings, one of the connecting rings rotates and drives the other connecting ring to rotate through the belt, the two connecting rings rotate and drive the two turbine blades to rotate, and the two turbine blades rotate to send the wind into the chassis interior through the connecting rings, the second ventilation plate and the first ventilation plate, realizing the rotation of the air inside the chassis, thereby achieving the effect of cooling. By providing a cooling support component, the problems that the existing main engine base cannot assist in heat dissipation and the heat dissipation effect of the chassis is poor due to the too large contact area with the chassis ground are improved, so that the main engine base can help the main engine dissipate heat while retaining the original functions, improving the air circulation inside the main engine, and avoiding the occurrence of problems in the operation of the main engine due to excessive heat inside the main engine.

[0018] By providing a cooling component, it can help the main engine assist in heat dissipation inside the chassis under low power consumption. When the main engine is under low power consumption, the pump is turned on, and the pump promotes the circulation of the cooling oil in the direct-current pipeline and the vortex pipeline. The cooling oil absorbs the heat at the bottom of the main engine and exchanges the heat through the vortex pipeline and circulates it into the direct-current pipeline. Then, the direct-current pipeline exchanges heat with the bottom surface of the main engine to ensure the constancy of the heat inside the main engine under low power consumption and assist the main engine in heat dissipation.

[0019] In addition to the purposes, features, and advantages described above, this application has other purposes, features, and advantages. The following will refer to the drawings to further elaborate on this application in detail. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The accompanying drawings forming a part of this application are used to provide a further understanding of this application. The schematic embodiments and descriptions thereof of this application are used to explain this application and do not constitute an improper limitation to this application. In the drawings:

[0021] Figure 1 is an overall schematic diagram of a composite refrigeration mainframe base in this application;

[0022] Figure 2 is a schematic diagram of the cooling support component in 1;

[0023] Figure 3 is a bottom view of the cooling support component in 2;

[0024] Among them, the reference numerals in the drawings are as follows:

[0025] 1. Cooling support component; 101. Placing seat; 102. Installation block; 103. Support arm; 104. Floor; 105. First ventilation plate; 106. Turbine blade; 107. Second ventilation plate; 108. Installation frame; 109. Motor; 110. Connecting ring; 111. Belt; 112. Third ventilation plate; 2. Cooling component; 201. DC pipeline; 202. Eddy current pipeline; 203. Pump. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The following will refer to the drawings and combine with the embodiments to elaborate on this application in detail.

[0027] In order to enable those skilled in the art to better understand the solution of this application, the following will clearly and completely describe the technical solutions in the embodiments of this application with reference to the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of this application.

[0028] Such as Figure 1As shown in the figure, the present application provides a composite refrigeration main seat, which includes a cooling support component 1 and a cooling component 2. The cooling support component 1 includes a motor 109 for driving and two turbine blades 106 for blowing air. At the bottom of each of the two turbine blades 106, there is a connecting ring 110 for transmission. A belt 111 is installed between the two connecting rings 110. The output shaft of the motor 109 outputs the rotational force to one of the connecting rings 110, and one of the connecting rings 110 rotates to drive the other connecting ring 110 to rotate through the belt 111, realizing the rotation of the device driven by the motor. The cooling component 2 includes a direct current pipeline 201 for water flow, an eddy current pipeline 202 for cooling, and a pump 203 for circulation.

[0029] The cooling support component 1 further includes a placement seat 101 and an installation frame 108. A first through groove is provided in the middle of the placement seat 101, and the bottom of the first through groove is fixedly connected to the installation frame 108. Inside the installation frame 108, first ventilation plates 105, second ventilation plates 107, and third ventilation plates 112 fixedly connected to the inner wall of the installation frame 108 are arranged in an array from top to bottom. The connecting ring 110 is installed on the bottom surface of the second ventilation plate 107, and the two turbine blades 106 are installed on the top of the second ventilation plate 107.

[0030] The output shafts of the two turbine blades 106 both penetrate through the second ventilation plate 107 and extend to the bottom of the second ventilation plate 107. The output shaft of the motor 109 is fixedly connected to the bottom surface of one of the connecting rings 110.

[0031] When the motor 109 works, the output shaft of the motor 109 outputs the rotational force to one of the connecting rings 110. One of the connecting rings 110 rotates to drive the other connecting ring 110 to rotate through the belt 111. The two connecting rings 110 rotate to drive the two turbine blades 106 to rotate. The two turbine blades 106 rotate to send the air into the chassis interior through the connecting ring 110, the second ventilation plate 107, and the first ventilation plate 105, realizing the rotation of the air inside the chassis, thereby achieving the cooling effect. By providing the cooling support component 1, the problems of the existing main seat that cannot assist in heat dissipation and the poor heat dissipation effect of the chassis due to the too large contact area with the chassis ground are improved. The main seat can help the mainframe dissipate heat while retaining the original functions, improve the air circulation inside the mainframe, and avoid the occurrence of problems in the operation of the mainframe caused by excessive heat inside the mainframe.

[0032] Installation blocks 102 for support are fixedly installed at the four corners of the placement seat 101. Floorings 104 are installed at the bottoms of the four installation blocks 102. Support arms 103 fixedly connected to one side of the installation frame 108 are fixedly connected to the outer walls of the four installation blocks 102. The support arms 103 are used to support the installation frame 108 to prevent the installation frame 108 from malfunctioning.

[0033] One end of the DC pipeline 201 is connected to one end of the eddy current pipeline 202, and the other end of the DC pipeline 201 is connected to the water inlet of the pump 203. One end of the eddy current pipeline 202 is connected to the DC pipeline 201, and the other end of the eddy current pipeline 202 is connected to the water outlet of the pump 203. The DC pipeline 201 and the eddy current pipeline 202 are filled with cooling oil. The DC pipeline 201 is installed on the top of the placement seat 101, the eddy current pipeline 202 is erected on four support arms 103, and the pump 203 is installed on one of the support arms 103.

[0034] The inner wall of the eddy current pipeline 202 is arranged in a spiral shape, aiming to extend the flow time of the water flow inside the pipeline and increase the contact area between the water flow and the inner wall of the pipeline to achieve better heat dissipation.

[0035] By providing the cooling component 2, it can help the host to dissipate heat inside the chassis under low power consumption. When the host is under low power consumption, the pump 203 is turned on. The pump 203 promotes the circulation of the cooling oil in the DC pipeline 201 and the eddy current pipeline 202. The cooling oil absorbs the heat at the bottom of the host and exchanges the heat through the eddy current pipeline 202 and circulates back into the DC pipeline 201. Then, the DC pipeline 201 contacts the bottom surface of the host to exchange heat, ensuring that the heat inside the host is constant under low power consumption and assisting the host in heat dissipation.

[0036] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A composite refrigeration main base, characterized in that: It comprises a cooling support component (1) and a cooling component (2); The cooling support assembly (1) comprises a placement seat (101), a first through slot is provided in the middle of the placement seat (101), a mounting frame (108) is fixedly mounted at the bottom of the first through slot, and a first ventilation plate (105), a second ventilation plate (107) and a third ventilation plate (112) are arranged in sequence from top to bottom inside the mounting frame (108) and are fixedly connected to the inner wall of the mounting frame (108); The cooling support assembly (1) further comprises a motor (109) for driving, two turbine blades (106) for fanning, a connecting ring (110) for transmission is installed at the bottom of the two turbine blades (106), a belt (111) is installed between the two connecting rings (110), the connecting ring (110) is installed on the bottom surface of the second ventilation plate (107), and the two turbine blades (106) are installed on the top of the second ventilation plate (107); The cooling component (2) comprises a water-conducting straight-flow pipe (201) installed on a placement seat (101), a vortex pipe (202) for cooling, and a pump (203) for circulation.

2. The composite refrigeration main base according to claim 1, characterized in that: The belt (111) is arranged between the two connecting rings (110) and is in a taut state.

3. The composite refrigeration main base according to claim 1, characterized in that: The output shafts of the two turbine blades (106) both penetrate the second ventilation plate (107) and extend to the bottom of the second ventilation plate (107), and the output shaft of the motor (109) is fixedly connected to the bottom surface of one of the connecting rings (110).

4. The composite refrigeration main base according to claim 1, characterized in that: The four corners of the placement seat (101) are fixedly mounted with mounting blocks (102) for support, the bottoms of the four mounting blocks (102) are installed with floors (104), and the outer walls of the four mounting blocks (102) are fixedly connected with support arms (103) connected to one side of the mounting frame (108).

5. The composite refrigeration main base according to claim 4, characterized in that: One end of the direct current pipeline (201) is connected to one end of the vortex pipeline (202), the other end of the direct current pipeline (201) is connected to the water inlet of the pump (203), one end of the vortex pipeline (202) is connected to the direct current pipeline (201), the other end of the vortex pipeline (202) is connected to the water outlet of the pump (203), and the direct current pipeline (201) and the vortex pipeline (202) are filled with cooling oil.

6. The composite refrigeration main base according to claim 5, characterized in that: The direct current pipe (201) is installed on the top of the placement seat (101), the vortex pipe (202) is mounted on four support arms (103), and the pump (203) is installed on one of the support arms (103).

7. The composite refrigeration main base according to claim 5, characterized in that: The interior of the tube wall of the vortex duct (202) is spirally arranged.