Pure copper radiating tube capable of circularly radiating

By designing a circulating heat dissipation system, combined with components such as cooling copper pipes, circulating copper pipes and cooling seats, the problem that traditional fan heat dissipation cannot meet the heat dissipation of high-performance desktop computer CPUs is achieved, and efficient circulating heat dissipation and stable coolant supply is achieved.

CN223092387UActive Publication Date: 2025-07-11DONGGUAN COOL SOLTE ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202422382930.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-11
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

Traditional fan cooling cannot meet the cooling needs of high-performance desktop computer CPUs, and existing pure copper heat dissipation pipes cannot achieve effective circulating heat dissipation.

Method used

A circulating heat dissipation system including cooling copper tubes and circulating copper tubes is designed, combining a radiator, a cooling fan, a cooling pump, a water tank and a thermal conduction layer to conduct heat through the circulation of the coolant, and a temperature insulation layer is provided on the outer wall of the copper tube to improve the temperature insulation.

Benefits of technology

It realizes efficient air-cooled heat dissipation and coolant circulation, improves the heat dissipation effect of the CPU, and ensures the continuous supply of coolant through the supplementary tube structure, enhancing the structural stability of the copper tube.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223092387U_ABST
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Abstract

The utility model relates to the technical field of pure copper radiating tubes, in particular to a circulating radiating pure copper radiating tube, which comprises a cooling copper tube and a circulating copper tube, radiating seats are arranged on the peripheries of the cooling copper tube and the circulating copper tube, the cooling copper tube and the circulating copper tube are inserted on the radiating seats, and thermal insulation layers are arranged on the outer walls of the cooling copper tube and the circulating copper tube. A heat dissipation fan and a bottom bearing seat are arranged on the heat dissipation seat, an embedded groove is formed in the bottom bearing seat, a heat conduction layer is arranged in the embedded groove, heat dissipation fins are arranged on the bottom bearing seat, a cooling pump and a water tank are arranged on the heat dissipation seat, a heat dissipation strip groove is formed in the heat dissipation seat, a supplement pipe is arranged on the water tank, and a valve is arranged on the supplement pipe. The circulating heat dissipation performance of the pure copper heat dissipation pipe for the CPU on the desktop computer electronic product is integrally improved, the circulating heat dissipation effect of the cooling copper pipe and the circulating copper pipe on the CPU on the desktop computer electronic product is guaranteed, and the structural stability of the bent portions of the cooling copper pipe and the circulating copper pipe is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of pure copper heat dissipation tubes, in particular to a pure copper heat dissipation tube with circulating heat dissipation. Background Art

[0002] A pure copper heat dissipation tube is a heat dissipation device made of pure copper material, mainly used to improve the heat dissipation effect of electronic products.

[0003] With the upgrade of software, the hardware of computer electronic products will also be upgraded. When some high-performance desktop computer electronic products are in use, their CPUs will generate more heat, and relying solely on traditional fan heat dissipation can no longer meet the heat dissipation requirements.

[0004] Therefore, a pure copper heat dissipation tube with circulating heat dissipation for the CPU on a desktop computer electronic product is needed to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide a pure copper heat dissipation tube with circulating heat dissipation to solve the above-mentioned disadvantages in the prior art.

[0006] To achieve the above purpose, the utility model adopts the following technical scheme:

[0007] Design a pure copper heat dissipation tube with circulating heat dissipation, including a cooling copper tube and a circulating copper tube. A heat dissipation base is arranged outside the cooling copper tube and the circulating copper tube. The cooling copper tube and the circulating copper tube are inserted into the heat dissipation base. A heat insulation layer is arranged on the outer walls of the cooling copper tube and the circulating copper tube. A heat dissipation fan and a bottom support base are arranged on the heat dissipation base. An embedded groove is formed on the bottom support base. A heat conduction layer is arranged in the embedded groove. Heat dissipation fins are arranged on the bottom support base. A cooling pump and a water tank are arranged on the heat dissipation base. Heat dissipation strip grooves are formed on the heat dissipation base. A supplement pipe is arranged on the water tank. A valve is arranged on the supplement pipe.

[0008] Further, installation plates are arranged at both ends of the heat dissipation base. Installation holes are formed on the installation plates. One set of the installation plate and the installation hole is provided, and there are two sets in total which are symmetrically arranged.

[0009] Further, both the cooling copper tube and the circulating copper tube are in a U-shaped structure. Both the cooling copper tube and the circulating copper tube are made of pure copper material. Both the cooling copper tube and the circulating copper tube vertically penetrate the heat dissipation base. Inner rib plates are arranged on the inner tube walls at the bending parts of the cooling copper tube and the circulating copper tube.

[0010] Further, installation screws are arranged on the heat dissipation fan. The heat dissipation fan is fixedly connected to the heat dissipation base by screwing with the installation screws. The heat dissipation strip grooves are eighteen arranged vertically and penetrate the heat dissipation base from left to right.

[0011] Further, the heat insulation layer is evenly laid along the outer wall surfaces of the cooling copper tube and the circulating copper tube. The heat insulation layer is made of polystyrene foam plastic EPS, and the thickness of the heat insulation layer is twenty to thirty millimeters.

[0012] Further, the lower end of the cooling copper tube is communicated with the bottom support base and is also communicated with the circulating copper tube. The upper end of the cooling copper tube is connected to the cooling pump, the cooling pump is communicated with the water tank through a preset connecting pipe, and the upper end of the circulating copper tube is communicated with the water tank.

[0013] Further, the heat conducting layer is filled and arranged in the embedded groove. The heat conducting layer is made of silicone and does not exceed the embedded groove. The heat dissipating fins are symmetrically arranged in two groups, and each group has five arranged vertically.

[0014] A pure copper heat dissipation tube with circulating heat dissipation proposed by the present utility model has the following beneficial effects:

[0015] 1. By providing the cooling copper tube and the circulating copper tube structures with heat insulation layers, and setting the heat dissipation base with heat dissipation strip grooves and heat dissipation fans, and at the same time setting the bottom support base with a heat conducting layer and bottom heat dissipating fins, and setting a cooling pump and a water tank, the present utility model realizes the air cooling of the CPU on the desktop computer electronic product, as well as the heat conduction and circulating heat dissipation effect of the coolant copper tube, and improves the heat insulation property of the cooling copper tube and the circulating copper tube, and overall improves the circulating heat dissipation property of the pure copper heat dissipation tube for the CPU on the desktop computer electronic product.

[0016] 2. By providing a supplementary pipe structure with a valve on the water tank, the present utility model realizes the timely and convenient replenishment of the coolant in the water tank, thereby ensuring the circulating heat dissipation effect of the cooling copper tube and the circulating copper tube on the CPU of the desktop computer electronic product.

[0017] 3. By providing an inner rib plate structure on the inner wall of the bent part of the cooling copper tube and the circulating copper tube, the present utility model improves the structural stability of the bent part of the cooling copper tube and the circulating copper tube, avoids deformation, and ensures the normal circulating transportation of the coolant. Description of the Drawings

[0018] Figure 1 is the first - perspective three - dimensional view of the overall structure of the present utility model;

[0019] Figure 2 is the second - perspective three - dimensional view of the overall structure of the present utility model;

[0020] Figure 3 is the Figure 1 partial enlarged view of part A in the present utility model;

[0021] Figure 4 is the Figure 2 front - view schematic diagram of the overall structure in the present utility model;

[0022] Figure 5 This is for the Figure 4 Partial sectional enlarged view at B in the present utility model.

[0023] In the figure: 1 cooling copper tube; 2 circulating copper tube; 3 heat dissipation base; 31 heat dissipation fin groove; 32 mounting plate; 33 mounting hole; 4 bottom support base; 41 embedded groove; 42 heat conduction layer; 5 heat dissipation fins; 6 cooling pump; 7 water tank; 71 replenishing pipe; 72 valve; 8 cooling fan; 81 mounting screw; 9 heat insulation layer; 91 inner rib plate. Specific implementation manner

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments.

[0025] Referring to Figures 1-5 , a pure copper heat dissipation tube with circular heat dissipation, including a cooling copper tube 1 and a circulating copper tube 2. A heat dissipation base 3 is provided outside the cooling copper tube 1 and the circulating copper tube 2. The cooling copper tube 1 and the circulating copper tube 2 are inserted into the heat dissipation base 3. A heat insulation layer 9 is provided on the outer walls of the cooling copper tube 1 and the circulating copper tube 2. A cooling fan 8 and a bottom support base 4 are provided on the heat dissipation base 3. An embedded groove 41 is opened on the bottom support base 4. A heat conduction layer 42 is provided in the embedded groove 41. Heat dissipation fins 5 are provided on the bottom support base 4. A cooling pump 6 and a water tank 7 are provided on the heat dissipation base 3. A heat dissipation fin groove 31 is opened on the heat dissipation base 3. A replenishing pipe 71 is provided on the water tank 7. A valve 72 is provided on the replenishing pipe 71. The valve 72 is a common manual pipeline valve.

[0026] Specifically, mounting plates 32 are provided at both ends of the heat dissipation base 3. Mounting holes 33 are opened on the mounting plates 32. One set consists of a mounting plate 32 and a mounting hole 33, and there are two sets symmetrically arranged in total, realizing the stable installation of the heat dissipation base 3.

[0027] Furthermore, both the cooling copper tube 1 and the circulating copper tube 2 are in a U-shaped structure. Both the cooling copper tube 1 and the circulating copper tube 2 are made of pure copper. Both the cooling copper tube 1 and the circulating copper tube 2 vertically penetrate the heat dissipation base 3. The cooling copper tube 1, the circulating copper tube 2, the heat dissipation base 3 made of aluminum alloy, and the heat dissipation fins 5 all have high heat conduction efficiency.

[0028] Still further, mounting screws 81 are provided on the cooling fan 8. The cooling fan 8 is fixedly connected to the heat dissipation base 3 by screwing with the mounting screws 81. There are eighteen heat dissipation fin grooves 31 arranged vertically and penetrating the heat dissipation base 3 from left to right. Inner rib plates 91 are provided on the inner walls of the bending parts of the cooling copper tube 1 and the circulating copper tube 2. The inner rib plates 91 are made of red copper, with a triangular structure having high strength and no deformation.

[0029] More specifically, the thermal insulation layer 9 is evenly laid along the outer wall surfaces of the cooling copper tube 1 and the circulating copper tube 2. The thermal insulation layer 9 is made of polystyrene foam EPS, and the thickness of the thermal insulation layer 9 is twenty to thirty millimeters. The thermal insulation layer 9 prevents external heat from being transferred into the cooling copper tube 1 and the circulating copper tube 2, causing the coolant to heat up.

[0030] Generally speaking, the lower end of the cooling copper tube 1 communicates with the bottom support seat 4 and is connected to the circulating copper tube 2. The upper end of the cooling copper tube 1 is connected to the cooling pump 6. The cooling pump 6 is connected to the water tank 7 through a preset connecting pipe. The upper end of the circulating copper tube 2 is connected to the water tank 7. The cooling pump 6 is of a small volume type, which is an existing technology.

[0031] Finally, the heat conduction layer 42 is filled and arranged in the embedded groove 41. The heat conduction layer 42 is made of silicone and does not exceed the embedded groove 41. The silicone material has excellent heat conductivity. Combined with the bottom support seat made of aluminum alloy material, rapid heat conduction is achieved.

[0032] The design that does not exceed the embedded groove 41 ensures that the entire CPU is snapped into and embedded in the embedded groove 41.

[0033] The heat dissipation fins 5 are arranged in two symmetrically arranged groups, with five in each group arranged vertically, to effectively dissipate part of the heat.

[0034] Working method: The entire heat dissipation base 3 is installed and fixed to the motherboard of the desktop computer through preset bolts, and it is ensured that the CPU on the motherboard is just inserted into the embedded groove 41. The preset four-pin wires of the heat dissipation fan 8 and the cooling pump 6 are plugged into the preset extended four-pin connectors on the motherboard to achieve power supply. At this time, the heat generated by the CPU during operation is quickly transferred to the bottom support seat 4 through the heat conduction layer 42. Part of the heat will be dissipated through the heat dissipation fins 5. At the same time, the cooling pump 6 will pump the coolant in the water tank 7 into the cooling copper tube 1. At this time, the cooling copper tube 1 inserted on the bottom support seat 4 will take away the heat, and through heat exchange, the coolant will form a high-temperature liquid. Then the high-temperature liquid will flow into the circulating copper tube 2. The high-temperature liquid flows upward along the circulating copper tube 2. At this time, the circulating copper tube 2 passing through the heat dissipation base 3 will conduct the heat of the high-temperature liquid to the heat dissipation base 3 and accumulate in the heat dissipation strip groove 31. At the same time, the heat dissipation fan 8 will blow towards the heat dissipation strip groove 31 and dissipate the accumulated heat to the outside. Moreover, the coolant in the circulating copper tube 2 will be cooled down and circulate back into the water tank 7 again. Through this cycle of heat dissipation, the air-cooled heat dissipation and the heat conduction and circulating heat dissipation effect of the coolant copper tube on the CPU of the desktop computer electronic product are achieved, and the thermal insulation of the cooling copper tube 1 and the circulating copper tube 2 is improved, and the overall circulating heat dissipation performance of the pure copper heat dissipation tube used for the CPU of the desktop computer electronic product is improved.

[0035] Moreover, during long-term use, the coolant will evaporate and decrease. By opening the valve 72 and replenishing the coolant through the replenishing pipe 71, it is convenient to replenish the coolant, thereby ensuring the circulating heat dissipation effect of the cooling copper pipe 1 and the circulating copper pipe 2 on the CPU of the desktop computer electronic product.

[0036] In addition, by providing the inner rib plate 91 structure on the inner pipe wall of the bent parts of the cooling copper pipe 1 and the circulating copper pipe 2, the structural stability of the bent parts of the cooling copper pipe 1 and the circulating copper pipe 2 is improved, avoiding deformation and ensuring the normal circulating transportation of the coolant.

[0037] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent replacements or changes, and should be covered within the protection scope of the present invention.

Claims

1. A pure copper heat dissipation pipe with cyclic heat dissipation, comprising a cooling copper pipe (1) and a cyclic copper pipe (2), characterized in that: A heat dissipation base (3) is provided around the cooling copper pipe (1) and the circulating copper pipe (2). The cooling copper pipe (1) and the circulating copper pipe (2) are inserted into the heat dissipation base (3). A heat insulation layer (9) is provided on the outer walls of the cooling copper pipe (1) and the circulating copper pipe (2). A heat dissipation fan (8) and a bottom support base (4) are provided on the heat dissipation base (3). An embedded groove (41) is provided on the bottom support base (4). A heat conduction layer (42) is provided in the embedded groove (41). Heat dissipation fins (5) are provided on the bottom support base (4). A cooling pump (6) and a water tank (7) are provided on the heat dissipation base (3). Heat dissipation strip grooves (31) are provided on the heat dissipation base (3). A replenishing pipe (71) is provided on the water tank (7). A valve (72) is provided on the replenishing pipe (71).

2. The pure copper heat dissipation tube with cyclic heat dissipation according to claim 1, wherein: Mounting plates (32) are provided at both ends of the heat dissipation base (3). Mounting holes (33) are provided on the mounting plates (32). One set consists of the mounting plate (32) and the mounting hole (33), and there are two sets symmetrically arranged in total.

3. A pure copper heat dissipation tube with cyclic heat dissipation according to claim 1, characterized in that: Both the cooling copper pipe (1) and the circulating copper pipe (2) are U-shaped structures. Both the cooling copper pipe (1) and the circulating copper pipe (2) are made of pure copper. Both the cooling copper pipe (1) and the circulating copper pipe (2) vertically penetrate the heat dissipation base (3). Inner rib plates (91) are provided on the inner pipe walls at the bending parts of the cooling copper pipe (1) and the circulating copper pipe (2).

4. A pure copper heat dissipation pipe with cyclic heat dissipation according to claim 1, characterized in that: Mounting screws (81) are provided on the heat dissipation fan (8). The heat dissipation fan (8) is fixedly connected to the heat dissipation base (3) by screwing with the mounting screws (81). There are eighteen heat dissipation strip grooves (31) arranged vertically and penetrating the heat dissipation base (3) from left to right.

5. A pure copper heat dissipation tube with cyclic heat dissipation according to claim 1, characterized in that: The heat insulation layer (9) is evenly laid along the outer wall surfaces of the cooling copper pipe (1) and the circulating copper pipe (2). The heat insulation layer (9) is made of polystyrene foam plastic EPS. The thickness of the heat insulation layer (9) is twenty to thirty millimeters.

6. A pure copper heat dissipation tube with cyclic heat dissipation according to claim 1, characterized in that: The lower end of the cooling copper pipe (1) is communicated with the bottom support base (4) and is also communicated with the circulating copper pipe (2). The upper end of the cooling copper pipe (1) is connected to the cooling pump (6). The cooling pump (6) is communicated with the water tank (7) through a preset connecting pipe. The upper end of the circulating copper pipe (2) is communicated with the water tank (7).

7. A pure copper heat dissipation tube with cyclic heat dissipation according to claim 1, characterized in that: The heat conduction layer (42) is filled in the embedded groove (41). The heat conduction layer (42) is made of silicone and does not protrude above the embedded groove (41). The heat dissipation fins (5) are arranged in two sets symmetrically, and each set consists of five arranged vertically.