Multidirectional water cooling equipment

By using semiconductor refrigeration sheets and intelligent control systems in water-cooling equipment, the problem of limited cooling capacity is solved, the uniformity and efficient cooling of the water flow temperature in the water-cooling equipment are achieved, and the overall cooling effect and system stability are improved.

CN223271469UActive Publication Date: 2025-08-26NANTONG WENHENG REFRIGERATION EQUIP CO LTD
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Patent Information

Application Number
CN202422413108.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-26
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The cooling capacity of existing water-cooling equipment is limited by the physical size of the cold source and the cooling power, which causes the temperature to gradually rise in the area away from the cold source, resulting in uneven temperature distribution and affecting the overall heat dissipation effect.

Method used

The semiconductor refrigeration plate and intelligent control system are used to directly cool the water flow through the semiconductor refrigeration plate, and the solenoid valve and contact switch are used to realize the automatic circulation and accumulation of the water flow to ensure the uniformity of the water flow temperature in the water cooling box.

Benefits of technology

It achieves efficient and comprehensive water cooling effect, ensures the uniformity of water flow temperature in the water cooling equipment, and improves the overall cooling capacity and system stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of water cooling equipment, and discloses multidirectional water cooling equipment which comprises a water cooling box, water flow is accumulated in the water cooling box, and an opening is formed in the top end of the side face of the water cooling box; the water cooling pipe is arranged in the water cooling box and is immersed in water flow; the two side plates are fixed on the top surface of the water cooling box and are arranged oppositely; the driving structure is arranged on the two side plates; the moving structure is arranged on the two side plates; and the water pumping structure is arranged above the water cooling box. According to the utility model, the semiconductor chilling plate is used for directly cooling the water flow accumulated in the cooling box, and compared with the traditional cold source, the mode has higher efficiency and wider cooling range, and can ensure that the temperature of the water flow in the water cooling box is always kept at a lower level, so that the overall cooling effect of the water cooling equipment is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of water cooling equipment, in particular to a multi-directional water cooling equipment. Background Art

[0002] Multi-directional water cooling equipment cools the target device or system by absorbing and removing heat through the flow of water or other cooling media. It has multiple cooling circuits, adjustable cooling capacity, and flexible layout to adapt to the needs of different shapes, sizes and working environments.

[0003] Water-cooling equipment generally cools the cooling water through a cold source to keep the cooling water at a low temperature, thereby ensuring the cooling effect of the water-cooling equipment. Water-cooling equipment in the existing technology usually relies on one or more cold sources to cool the cooling water. However, the cooling capacity of these cold sources is often limited by their physical size and cooling power, resulting in only effectively cooling the water flow close to the cold source. As the water flows away from the cold source, its temperature gradually rises and the cooling effect weakens. This may lead to uneven temperature distribution inside the system and excessively high temperatures in some areas, affecting the overall heat dissipation effect of the equipment.

[0004] Therefore, it is necessary to design a multi-directional water cooling device to solve the above problems. Utility Model Content

[0005] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a multi-directional water cooling device.

[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0007] A multi-directional water cooling device, comprising:

[0008] A water cooling box, wherein water is stored inside, and an opening is formed at the top of the side of the water cooling box;

[0009] A water cooling pipe is placed inside the water cooling box and immersed in the water flow;

[0010] The two side panels are both fixed to the top surface of the water cooling box and are arranged opposite to each other;

[0011] A driving structure, provided on the two side plates;

[0012] A moving structure, arranged on the two side panels;

[0013] A water pumping structure is arranged above the water cooling box;

[0014] The cooling structure is arranged inside the water cooling box.

[0015] As a preferred technical solution of the present invention, the driving structure includes:

[0016] a motor mounted on one of the side panels;

[0017] A reciprocating screw rod is rotatably mounted between the two side plates, and one end of the reciprocating screw rod is fixedly connected to the output shaft of the motor;

[0018] A guide rod fixed between the two side plates;

[0019] The movable seat is threadably sleeved on the reciprocating screw rod and slidably sleeved on the guide rod.

[0020] As a preferred technical solution of the present invention, the mobile structure includes:

[0021] a cylinder, fixed between the two side plates;

[0022] A slider, sliding in the cylinder;

[0023] An opening is provided on the outer peripheral surface of the cylinder and is arranged along the length direction of the cylinder;

[0024] A connecting block has one end fixedly connected to the movable seat and the other end fixedly connected to the slider, and the connecting block slides in the opening.

[0025] As a preferred technical solution of the present utility model, the pumping structure includes:

[0026] a capsule, one end of which is connected to the inner surface of the cylinder and the other end of which is connected to the slider;

[0027] Two connecting pipes, one end of each of which is connected to the bladder, and the other end of one of the connecting pipes extends to the inner bottom of the water cooling box;

[0028] Two one-way valves, respectively installed on the two connecting pipes;

[0029] A return pipe is fixed in the water cooling box and is connected to the other end of another connecting pipe;

[0030] A plurality of water outlet holes are all provided on the return pipe.

[0031] As a preferred technical solution of the present invention, the cooling structure includes:

[0032] A cooling box is fixed in the opening and has an assembly opening on the side;

[0033] A semiconductor refrigeration chip is installed in the assembly port, with its cooling surface facing the inside of the water cooling box and its heat exchange surface facing the outside of the water cooling box;

[0034] An installation pipe fixedly connected to the bottom of the cooling box;

[0035] a solenoid valve, mounted on the mounting pipe;

[0036] Two slots are respectively formed on opposite sides of the two side panels;

[0037] Two contact switches are installed in the two slots respectively.

[0038] As a preferred technical solution of the present invention, the flow limiting directions of the two one-way valves are opposite.

[0039] The utility model has the following beneficial effects:

[0040] 1. Efficient cooling: The water flow accumulated in the cooling box is directly cooled by semiconductor refrigeration sheets. Compared with traditional cold sources, this method has higher efficiency and a wider cooling range. It can ensure that the water flow temperature in the water cooling box is always maintained at a low level, thereby improving the overall cooling effect of the water cooling equipment.

[0041] 2. Intelligent Control: The interaction between the contact switch and the movable seat controls the periodic opening and closing of the solenoid valve, achieving automatic circulation and accumulation of water for cooling. This intelligent design not only simplifies the operation process but also improves the stability and reliability of the system. BRIEF DESCRIPTION OF THE DRAWINGS

[0042] Figure 1 This is a structural diagram of a multi-directional water cooling device proposed by the utility model;

[0043] Figure 2 for Figure 1 A magnified view of the structure at point A;

[0044] Figure 3 for Figure 1 A magnified view of the structure at point B.

[0045] In the figure: 1 water cooling box, 2 water cooling pipe, 3 side plate, 41 motor, 42 reciprocating screw, 43 guide rod, 44 moving seat, 51 cylinder, 52 slider, 53 opening, 54 connecting block, 61 capsule, 62 connecting pipe, 63 one-way valve, 64 return pipe, 65 water outlet, 71 cooling box, 72 semiconductor refrigeration plate, 73 mounting pipe, 74 solenoid valve, 75 slot, 76 contact switch. DETAILED DESCRIPTION

[0046] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0047] Reference Figure 1-3 A multi-directional water cooling device includes a water cooling box 1, in which water is stored, and an opening is opened at the top position of the side of the water cooling box 1; a water cooling pipe 2 is placed inside the water cooling box 1 and immersed in the water flow; two side plates 3 are fixed to the top surface of the water cooling box 1 and are arranged opposite each other;

[0048] The water cooling device also includes a drive structure, which is arranged on the two side plates 3. The drive structure includes: a motor 41, which is installed on one of the side plates 3; a reciprocating screw rod 42, which is rotatably installed between the two side plates 3 and has one end fixedly connected to the output shaft of the motor 41; a guide rod 43, which is fixed between the two side plates 3; and a movable seat 44, which is threadedly sleeved on the reciprocating screw rod 42 and slidably sleeved on the guide rod 43.

[0049] The water cooling device further includes a movable structure disposed on the two side plates 3. The movable structure includes: a cylinder 51 fixed between the two side plates 3; a slider 52 sliding in the cylinder 51; an opening 53 formed on the outer circumference of the cylinder 51 and arranged along the length of the cylinder 51; a connecting block 54 having one end fixedly connected to the movable seat 44 and the other end fixedly connected to the slider 52, and the connecting block 54 sliding in the opening 53;

[0050] The water-cooling device also includes a pumping structure, which is arranged above the water-cooling box 1. The pumping structure includes: a sac 61, one end of which is connected to the inner surface of the cylinder 51, and the other end is connected to the slider 52; two connecting pipes 62, one end of which is connected to the sac 61, and the other end of one of the connecting pipes 62 extends to the inner bottom of the water-cooling box 1; two one-way valves 63 are respectively installed on the two connecting pipes 62, and the flow limiting directions of the two one-way valves 63 are opposite; a return pipe 64, which is fixed in the water-cooling box 1, and the return pipe 64 is connected to the other end of the other connecting pipe 62; a plurality of water outlets 65 are all opened on the return pipe 64. When the multi-directional water-cooling device proposed by the utility model is in use, the staff starts the motor 41. When the motor 41 is running, it can drive the reciprocating screw 42 to rotate. Under the limiting action of the guide rod 43, the reciprocating screw 42 rotates. The movable seat 44 can be driven to move back and forth between the two side plates 3. When the movable seat 44 moves, it can drive the slider 52 to move back and forth inside the cylinder 51 through the connecting block 54, so that the slider 52 squeezes and stretches the bladder 61. The flow limiting directions of the two one-way valves 63 are opposite. Specifically, one of the one-way valves 63 limits the water flow to only enter the interior of the bladder 61, and the other one-way valve 63 limits the water flow to only flow out of the bladder 61. Therefore, when the bladder 61 is stretched, the bladder 61 can extract water from the inner bottom of the water cooling box 1 through the corresponding connecting pipe 62. When the bladder 61 is compressed, the water extracted from the bladder 61 will be pressed into the return pipe 64 through the corresponding connecting pipe 62. Further, the water will flow into the cooling box 71 through a plurality of water outlet holes 65, and the water will be cooled by the cooling structure.

[0051] The water cooling device also includes a cooling structure, which is arranged inside the water cooling box 1. The cooling structure includes: a cooling box 71, which is fixed in the opening and has an assembly port on the side;

[0052] The semiconductor refrigeration chip 72 is installed in the assembly port, with its cooling surface facing the inside of the water cooling box 1 and its heat exchange surface facing the outside of the water cooling box 1; the mounting pipe 73 is fixedly connected to the bottom of the cooling box 71; the solenoid valve 74 is installed on the mounting pipe 73; two slots 75 are respectively provided on the opposite sides of the two side plates 3; and two contact switches 76 are respectively installed in the two slots 75.

[0053] As for the cooling structure, the semiconductor refrigeration plate 72 can cool the water flow accumulated in the cooling box 71. The cooling surface of the semiconductor refrigeration plate 72 faces the inside of the water cooling box 1, and the heat exchange surface faces the outside of the water cooling box 1, which facilitates the semiconductor refrigeration plate 72 to cool down and exchange heat. In addition, contact switches 76 are installed on both side plates 3. When the movable seat 44 moves to a position close to the two side plates 3, the movable seat 44 can contact the corresponding contact switch 76. When one of the contact switches 76 is triggered, the solenoid valve 74 will be turned on, and when the other contact switch 76 is triggered, the solenoid valve 74 will be closed. In summary, with the reciprocating movement of the movable seat 44, the solenoid valve 74 can be periodically turned on and off. When the solenoid valve 74 is closed, the water flowing out through the several water outlet holes 65 will be temporarily accumulated in the cooling box 71. When the solenoid valve 74 is turned on, the water in the cooling box 71 will flow back to the inside of the water cooling box 1 through the installation pipe 73. When the water accumulates in the cooling box 71, the semiconductor refrigeration plate 72 can cool the water accumulated in the cooling box 71, which enables the water inside the water cooling box 71 to maintain a low temperature and ensure the cooling effect of the water cooling equipment. In summary, under the action of the cooling structure, the semiconductor refrigeration plate 72 can comprehensively cool the water in the water cooling box 1, which replaces the traditional cooling structure of the cold source with a limited range of action, so that the water in the water cooling box 1 can be fully and comprehensively cooled.

[0054] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A multi-directional water cooling device, characterized in that: include: A water cooling box (1) has water stored therein, and an opening is provided at the top end of the side of the water cooling box (1); A water cooling pipe (2) is placed inside the water cooling box (1) and immersed in the water flow; Two side panels (3) are fixed on the top surface of the water cooling box (1) and are arranged opposite each other; A driving structure is provided on the two side plates (3); A movable structure is arranged on the two side plates (3); A water pumping structure is arranged above the water cooling box (1); A cooling structure is arranged inside the water cooling box (1).

2. The multi-directional water cooling device according to claim 1, characterized in that: The driving structure includes: a motor (41) mounted on one of the side panels (3); A reciprocating screw rod (42) is rotatably mounted between the two side plates (3), one end of which is fixedly connected to the output shaft of the motor (41); A guide rod (43) fixed between the two side plates (3); The movable seat (44) is threadedly sleeved on the reciprocating screw rod (42) and slidably sleeved on the guide rod (43).

3. The multi-directional water cooling device according to claim 2, characterized in that: The mobile structure comprises: A cylinder (51) is fixed between the two side plates (3); A slider (52) slides in the cylinder (51); An opening (53) is provided on the outer peripheral surface of the cylinder (51) and is arranged along the length direction of the cylinder (51); A connecting block (54) has one end fixedly connected to the movable seat (44) and the other end fixedly connected to the slider (52), and the connecting block (54) slides in the opening (53).

4. The multi-directional water cooling device according to claim 3, characterized in that: The pumping structure comprises: a capsule (61), one end of which is connected to the inner surface of the cylinder (51), and the other end of which is connected to the slider (52); Two connecting pipes (62), one end of each of which is connected to the capsule (61), and the other end of one of the connecting pipes (62) extends to the inner bottom of the water cooling box (1); Two one-way valves (63) are respectively installed on the two connecting pipes (62); A return pipe (64) is fixed in the water cooling box (1), and the return pipe (64) is connected to the other end of another connecting pipe (62); A plurality of water outlet holes (65) are provided on the return pipe (64).

5. The multi-directional water cooling device according to claim 4, characterized in that: The cooling structure includes: A cooling box (71) is fixed in the opening and has an assembly opening on its side; A semiconductor refrigeration sheet (72) is installed in the assembly opening, with its cooling surface facing the inside of the water cooling box (1) and its heat exchange surface facing the outside of the water cooling box (1); A mounting pipe (73) fixedly connected to the bottom of the cooling box (71); A solenoid valve (74) is mounted on the mounting pipe (73); Two slots (75) are respectively formed on opposite sides of the two side panels (3); Two contact switches (76) are respectively installed in the two slots (75).

6. The multi-directional water cooling device according to claim 4, characterized in that: The flow limiting directions of the two one-way valves (63) are opposite.