Server cooling system

By introducing fan blades and cooling pipes into the server cooling system, combined with the coolant circulation of the water cooling system, the problem of poor server cooling effect is solved, achieving efficient air and liquid heat exchange, ensuring server cooling effect and dust filtration.

CN223598191UActive Publication Date: 2025-11-25黄光伟
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423284586.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-25
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In existing technologies, server cooling is ineffective, especially due to insufficient airflow to rapidly remove heat from server electronic components, resulting in inadequate cooling.

Method used

The server cooling system includes a mounting plate, fan blade frame, cooling pipes, and geared motor. The fan blade frame drives airflow and exchanges heat with the cooling pipes. Combined with the coolant circulation of the water cooling system, it ensures efficient heat exchange between air and liquid.

Benefits of technology

It achieves efficient cooling of server electronic components, reduces dust ingress, ensures cooling effect, and prevents electrostatic hazards by filtering the air-cooled airflow.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223598191U_ABST
    Figure CN223598191U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of server cooling systems, in particular to a server cooling system. Comprising an installation plate I and an installation plate II fixedly connected to the installation plate I. The installation plate I and the installation plate II are rotationally connected with fan blade frames capable of rotating around the axes of the fan blade frames, the installation plate II is detachably connected with filter paper, the installation plate II is fixedly connected with a liquid inlet pipe and a backflow pipe, and the liquid inlet pipe and the backflow pipe are fixedly connected with cooling pipes. The cooling pipe is communicated with the liquid inlet pipe and the return pipe. And the cooling pipe is a vortex-shaped pipe. And the mounting plate I is fixedly connected with a speed reducing motor for driving the fan blade frame to rotate. And an output shaft of the speed reducing motor can rotate forwards and backwards. The edge of the fan blade frame is fixedly connected with a stabilizing frame. Cold air which rapidly flows to take away heat of electronic elements of the server can be fully cooled, and the cooling effect on the server is ensured.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of server cooling system, more specifically to server cooling system. BACKGROUND

[0002] In prior art, the server heat dissipation is mainly realized by fan and water cooling system. The fan is installed on the cabinet where the server is located, and the air is driven to flow fast by the fan to take out the heat generated by the server from the cabinet. The water cooling is to place the heating electronic components on the container where the cooling liquid circulates, and the heat exchange between the cooling liquid and the electronic components realizes the heat dissipation of the server. However, in prior art, there is no sufficient cooling of the cold air which flows fast to take away the heat of the server electronic components, and the cooling effect of the server is not ensured. SUMMARY

[0003] In order to overcome the defects of prior art, the utility model provides server cooling system, can fully cool the cold air which flows fast to take away the heat of the server electronic components, and ensure the cooling effect of the server.

[0004] The utility model solves the technical scheme that the technical problem thereof adopts:

[0005] Server cooling system, including installation board I and the installation board II of solid connection in installation board I, the fan blade frame that can rotate around the own axis is rotatably connected on installation board I and installation board II, the filter paper is detachably connected on installation board II, the liquid inlet pipe and the backflow pipe are solidly connected on installation board II, the cooling pipe is solidly connected on the liquid inlet pipe and the backflow pipe, and the cooling pipe is communicated with the liquid inlet pipe and the backflow pipe.

[0006] Further, the cooling pipe is a vortex pipe.

[0007] Further, the speed reducer motor that drives the fan blade frame to rotate is solidly connected on the installation board I.

[0008] Further, the output shaft of the speed reducer motor can be forward and reverse rotation.

[0009] Further, the stable frame is solidly connected on the edge of the fan blade frame.

[0010] The utility model server cooling system has the beneficial effect that the cold air which flows fast to take away the heat of the server electronic components can be fully cooled, and the cooling effect of the server is ensured. The airflow of the filter air cooling can also be reduced, and the dust of the cold air is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0011] The utility model will be further explained in detail in combination with the drawings and specific implementation method.

[0012] Figure 1 It is the server cooling system structural schematic diagram.

[0013] Figure 2 Structure diagram of the air cooling structure for pushing the cooling pipe;

[0014] Figure 3 Structure diagram of the installation structure for the cooling pipe;

[0015] Figure 4 Structure diagram of the stable frame;

[0016] Figure 5 Structure diagram of the filter paper.

[0017] In the figure: mounting plate I 111; mounting plate II 112; fan blade frame 21; speed reducer motor 22; stable frame 23; liquid inlet pipe 31; cooling pipe 32; return pipe 33; filter paper 41. DETAILED DESCRIPTION

[0018] Reference Figure 1 、 2 , 3, 4 and 5, the embodiment of the cooling server is described in detail:

[0019] The server cooling system comprises a mounting plate I 111 and a mounting plate II 112 fixedly connected to the mounting plate I 111, the mounting plate I 111 and the mounting plate II 112 are used for being mounted on the box body of the server, a fan blade frame 21 capable of rotating around its own axis is rotatably connected to the mounting plate I 111 and the mounting plate II 112, the fan blade frame 21 can push the air to flow along the axis under the condition of rotating around its own axis, accelerate the flow speed of the air in the server, take away the heat in the server, achieve the effect of air cooling, the mounting plate II 112 is detachably connected with a filter paper 41, the filter paper 41 can filter the flowing air, reduce the dust flowing into the server, cause the electrostatic of the electronic components, and endanger the long-term use of the electronic components, the mounting plate II 112 is fixedly connected with a liquid inlet pipe 31 and a return pipe 33, the liquid inlet pipe 31 and the return pipe 33 are fixedly connected with a cooling pipe 32, the cooling pipe 32 is in communication with the liquid inlet pipe 31 and the return pipe 33, the liquid inlet pipe 31 and the return pipe 33 are connected with and in communication with the water cooling system of the server. Thus, the cooling liquid can be provided to the liquid inlet pipe 31 through the water cooling system of the server, then flows into the cooling pipe 32 to fully exchange heat with the air and cool the air in the server, ensure the working temperature in the server, then flows back to the water cooling system of the server through the return pipe 33 to realize the circulating flow of the cooling liquid, reduce the temperature of the cooling liquid, and further ensure the cooling effect of the cooling liquid on the server, and the air flowing through the cooling pipe 32 under the rotation of the fan blade frame 21 further exchanges heat, prevents the overheating of the air outside the server, and the air flowing into the server has poor air cooling effect on the electronic components, therefore, the sufficient circulation of the cooling liquid and the rapid flow of the cold air ensure the cooling effect on the electronic components in the server.

[0020] ReferenceFigure 2 The embodiment of the air contact with the cooling pipe 32 is described in detail:

[0021] The cooling pipe 32 is a vortex pipe, so that the coincidence of the cooling pipe 32 and the air flow pushed by the fan frame 21 is increased by the vortex arrangement of the cooling pipe 32, so as to ensure the cooling performance of the cold air, and further ensure the cooling effect on the server.

[0022] Referring to Figure 2 The embodiment of driving the fan frame 21 to rotate is described in detail:

[0023] The mounting plate Ⅰ 11 is fixedly connected with a speed reducer motor 22 for driving the fan frame 21 to rotate. The output shaft of the speed reducer motor 22 can be forward and reverse rotated, so that after starting the speed reducer motor 22, the output shaft of the speed reducer motor 22 drives the fan frame 21 to rotate forward and reverse, so as to realize the movement of the air in the axial direction of the fan frame 21, and accelerate the flow speed of the air, so as to realize the sufficient cooling of the electronic components in the server.

[0024] Referring to Figure 2 The embodiment of stabilizing the rotation of the fan frame 21 is described in detail:

[0025] The edge of the fan frame 21 is fixedly connected with a stabilizing frame 23, so as to enhance the stability of the rotation of the fan frame 21, and other arc-shaped parts can be sleeved on the stabilizing frame 23 to assist, so as to enhance the stability of the rotation of the fan frame 21.

[0026] Referring to Figure 4 and 5 The embodiment of quickly installing the filter paper 41 is described in detail:

[0027] The filter paper 41 is detachably connected with the stabilizing frame 23. The filter paper 41 is connected with the mounting plate Ⅱ 12 and the stabilizing frame 23 by adhesive connection. The outer contour of the filter paper 41 coincides with the outer contour of the stabilizing frame 23, so that the filter paper 41 can be quickly replaced by the adhesive connection, ensuring the filtering effect of the filter paper 41 on the air. The outer contour of the filter paper 41 coincides with the outer contour of the stabilizing frame 23, which can ensure the filtering of the filter paper 41 on the air pushed by the fan frame 21.

[0028] Referring to Figure 1 , 2 and 3, the embodiment of fully cooling the cold air pushed by the fan frame 21 is described in detail:

[0029] The fan frame 21 and the cooling pipe 32 are distributed on both sides of the filter paper 41, so that the air pushed by the fan frame 21 is filtered by the filter paper 41 and contacted with the cooling pipe 32 for air cooling, ensuring the heat dissipation effect of the cooling air of the server.

Claims

1. A server cooling system, characterized by: The application relates to a cooling device for a server, which comprises a mounting plate I (11) and a mounting plate II (12) fixed on the mounting plate I (11), a fan frame (21) capable of rotating around its own axis is rotatably connected on the mounting plate I (11) and the mounting plate II (12), a filter paper (41) is detachably connected on the mounting plate II (12), a liquid inlet pipe (31) and a return pipe (33) are fixed on the mounting plate II (12), a cooling pipe (32) is fixed on the liquid inlet pipe (31) and the return pipe (33), and the cooling pipe (32) is communicated with the liquid inlet pipe (31) and the return pipe (33).

2. The server cooling system of claim 1, wherein: The cooling pipe (32) is a vortex pipe.

3. The server cooling system of claim 1, wherein: A speed reduction motor (22) for driving the fan frame (21) to rotate is fixed on the mounting plate I (11).

4. The server cooling system of claim 3, wherein: The output shaft of the speed reduction motor (22) can be positively rotated and reversely rotated.

5. The server cooling system of claim 1, wherein: The edge of the fan frame (21) is fixed with a stabilizing frame (23).

6. The server cooling system of claim 5, wherein: The filter paper (41) is detachably connected with the stabilizing frame (23).

7. The server cooling system of claim 6, wherein: The filter paper (41) is connected with the mounting plate II (12) and the stabilizing frame (23) through gluing.

8. The server cooling system of claim 7, wherein: The outer contour of the filter paper (41) is coincident with the outer contour of the stabilizing frame (23).

9. The server cooling system of claim 1, wherein: The liquid inlet pipe (31) and the return pipe (33) are connected with and communicated with the water cooling system of the server.

10. The server cooling system of claim 1, wherein: The fan frame (21) and the cooling pipe (32) are distributed on both sides of the filter paper (41).