A heat dissipation copper pipe assembly convenient to install

By incorporating a sealing shell and spring structure into the heat dissipation copper pipe assembly, the problems of inconvenient installation and poor sealing of the heat dissipation copper pipe are solved, achieving convenient installation and good sealing, and improving the heat dissipation efficiency and stability of the equipment.

CN224596786UActive Publication Date: 2026-08-04FOSHAN NANHAI DISTRICT JINGLIN HARDWARE PRODUCTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN NANHAI DISTRICT JINGLIN HARDWARE PRODUCTS CO LTD
Filing Date
2025-06-10
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

Existing copper heat dissipation pipe assemblies are inconvenient to install and have poor sealing performance, resulting in poor heat dissipation and affecting the working efficiency and stability of the equipment.

Method used

An easy-to-install heat dissipation copper pipe assembly was designed. By setting a sealing shell between the connecting block and the placement block, and utilizing the elastic potential energy of the spring to achieve stable installation of the sealing shell, combined with the threaded connection and the limiting fixation of the rotating block, a tight connection and good sealing between the heat dissipation copper pipe bodies are ensured.

Benefits of technology

This technology enables convenient installation and effective sealing of the heat dissipation copper pipes, preventing heat leakage and improving the equipment's heat dissipation efficiency and stable operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to heat dissipation copper pipe technical field discloses a heat dissipation copper pipe assembly convenient to install, including heat dissipation copper pipe body no.
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Description

Technical Field

[0001] This utility model relates to the field of heat dissipation copper pipe technology, specifically a heat dissipation copper pipe assembly that is easy to install. Background Technology

[0002] Copper heat pipes are a type of high-efficiency heat dissipation component, widely used in electronic devices and other fields, and are suitable for heat dissipation in mobile phones and computer hardware.

[0003] While existing heat dissipation copper pipes can dissipate heat during use, traditional heat dissipation copper pipes are inconvenient to assemble, requiring workers to spend a lot of time assembling them. In addition, the sealing effect of the assembled heat dissipation copper pipes is not good, resulting in poor heat dissipation during use and reducing the working efficiency of the equipment. To address this, a heat dissipation copper pipe assembly that is easy to install has been developed. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides an easy-to-install heat dissipation copper pipe assembly, which has the advantages of easy assembly of heat dissipation copper pipes and good sealing effect, thus solving the problems mentioned in the background art.

[0005] This utility model provides the following technical solution: a heat dissipation copper pipe assembly that is easy to install, including a heat dissipation copper pipe body one, a connecting component provided on the outer wall of the heat dissipation copper pipe body one, a sealing shell sleeved on the inner wall of the connecting component, a spring one provided on the inner wall of the connecting component, and a heat dissipation copper pipe body two provided on the outer wall of the connecting component.

[0006] As a preferred technical solution of this utility model: the connecting assembly includes a connecting block, the outer wall of the connecting block has a threaded groove, the outer wall of the threaded groove is threaded with a rotating block, the outer wall of the connecting block is provided with a placement block, the inner wall of the connecting block is provided with a spring, the outer wall of the spring is fixedly fitted with one end of a connecting plate, the other end of the connecting plate is fixedly fitted with a connecting shell, the end of the connecting shell away from the connecting plate is fixedly fitted with one end of a pressure plate, the other end of the pressure plate is fixedly fitted with a spring, and the outer wall of the placement block has a threaded groove.

[0007] As a preferred technical solution of this utility model: the second spring is fixedly assembled with the inner wall of the first heat dissipation copper pipe body, and the rotating block is threadedly connected to the inner wall of the second threaded groove.

[0008] As a preferred technical solution of this utility model: the spring three is fixedly assembled with the inner wall of the heat dissipation copper pipe body two, the sealing shell is adapted to the inner wall of the connecting block and the placement block, and the placement block is threadedly connected to the outer wall of the heat dissipation copper pipe body two.

[0009] As a preferred technical solution of this utility model: the spring is fixedly assembled with the inner wall of the connecting block, and the connecting block is in contact with the placement block.

[0010] As a preferred technical solution of this utility model: the pressure plate is adapted to the inner wall of the second heat dissipation copper pipe body, the connecting plate is adapted to the inner wall of the first heat dissipation copper pipe body, and the connecting block is threadedly connected to the outer wall of the first heat dissipation copper pipe body.

[0011] Compared with the prior art, the present invention has the following beneficial effects: 1. This easy-to-install heat dissipation copper pipe assembly, after the heat dissipation copper pipe body one and heat dissipation copper pipe body two are connected, uses a sealing shell placed on the inner wall of the connecting block and the placement block to seal the space between the connecting block and the placement block. This prevents heat leakage due to poor sealing between the heat dissipation copper pipe body one and heat dissipation copper pipe body two during use, which would directly affect the heat dissipation efficiency of the equipment, causing the equipment temperature to rise and affecting its stable operation and performance. Furthermore, the elastic potential energy of spring one causes spring one to apply pressure to the connecting plate and the connecting block, making the sealing shell more stable during placement, thereby achieving a good sealing effect.

[0012] 2. This easy-to-install heat dissipation copper pipe assembly is installed by having the connecting block and the placement block threaded onto the outer walls of heat dissipation copper pipe body one and heat dissipation copper pipe body two, respectively. Then, the worker moves heat dissipation copper pipe body one and heat dissipation copper pipe body two to fit together. When heat dissipation copper pipe body one and heat dissipation copper pipe body two are fitted together, the connecting shell and the sealing shell will slide from the inner wall of the placement block, so that the connecting shell applies pressure to the pressure plate. After the connecting block and the placement block are fully fitted together, the worker rotates the rotating block to limit and fix the connecting block and the placement block. The elastic potential energy of springs two and three is released to support heat dissipation copper pipe body one and heat dissipation copper pipe body two, thereby realizing the connection of heat dissipation copper pipe body one and heat dissipation copper pipe body two. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the sealing shell structure of this utility model; Figure 3 This is a schematic diagram of the placement block structure of this utility model; Figure 4 This is a schematic diagram of the connecting shell structure of this utility model; Figure 5 This utility model Figure 3 Enlarged structural diagram at point A in the middle.

[0014] In the diagram: 1. Heat dissipation copper pipe body one; 2. Heat dissipation copper pipe body two; 3. Connecting assembly; 4. Sealing shell; 5. Spring one; 301. Connecting block; 302. Placement block; 303. Rotating block; 304. Spring 2; 305. Connecting plate; 306. Connecting shell; 307. Pressure plate; 308. Spring 3; 309. Threaded groove 1; 310. Threaded groove 2. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0016] Please see Figure 1 - Figure 5 A heat dissipation copper pipe assembly that is easy to install includes a heat dissipation copper pipe body 1, a connecting component 3 on the outer wall of the heat dissipation copper pipe body 1, a sealing shell 4 sleeved on the inner wall of the connecting component 3, a spring 5 on the inner wall of the connecting component 3, and a heat dissipation copper pipe body 2 on the outer wall of the connecting component 3. In the above structure, after connecting the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2, the sealing shell 4 is placed on the inner wall of the connecting block 301 and the placement block 302 to seal the space between the connecting block 301 and the placement block 302. This is intended to prevent heat leakage caused by insufficient sealing performance of the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2 during operation, thereby hindering the effective transfer of heat through the heat dissipation copper pipe. This will directly affect the heat dissipation efficiency of the equipment, causing the equipment temperature to rise, and thus affecting the stable operation and performance of the equipment. In addition, the elastic potential energy of the spring 5 is used to apply pressure to the connecting plate 305 and the connecting block 301 to ensure the stability of the sealing shell 4 during installation, thereby achieving a better sealing effect.

[0017] In a preferred embodiment: the connecting component 3 includes a connecting block 301, the outer wall of the connecting block 301 is provided with a threaded groove 309, the outer wall of the threaded groove 309 is threadedly connected to a rotating block 303, the outer wall of the connecting block 301 is provided with a placement block 302, the inner wall of the connecting block 301 is provided with a spring 304, the outer wall of the spring 304 is fixedly fitted with one end of a connecting plate 305, the other end of the connecting plate 305 is fixedly fitted with a connecting shell 306, the end of the connecting shell 306 away from the connecting plate 305 is fixedly fitted with one end of a pressure plate 307, the other end of the pressure plate 307 is fixedly fitted with a spring 308, and the outer wall of the placement block 302 is provided with a threaded groove 310. In the above structure, the technician connects the connecting block 301 and the placement block 302 to the outer walls of the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2 via threads. Then, the technician is guided to make the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2 fit tightly together. During the process of fitting the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2, the connecting shell 306 and the sealing shell 4 will slide along the inner wall of the placement block 302, thereby applying pressure to the pressure plate 307. After the connecting block 301 and the placement block 302 are completely fitted together, the technician rotates the rotating block 303 to limit and fix the connecting block 301 and the placement block 302. At the same time, the elastic potential energy of the spring 2 304 and the spring 3 308 is released to provide support for the heat dissipation copper pipe body 1, thereby completing the connection of the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2.

[0018] In a preferred embodiment: the second spring 304 is fixedly assembled with the inner wall of the heat dissipation copper pipe body 1, and the rotating block 303 is threadedly connected to the inner wall of the threaded groove 310. In the above structure, the heat dissipation copper pipe body 1 limits the spring 304, and the rotating block 303 limits the placement block 302 and the threaded groove 310, making the placement block 302 and the connecting block 301 more stable when placed and preventing them from separating.

[0019] In a preferred embodiment: the spring 308 is fixedly assembled with the inner wall of the heat dissipation copper pipe body 2, the sealing shell 4 is adapted to the inner wall of the connecting block 301 and the placement block 302, and the placement block 302 is threadedly connected to the outer wall of the heat dissipation copper pipe body 2. In the above structure, the heat dissipation copper pipe body 2 limits the spring 308, so that the spring 308 will not detach when releasing elastic potential energy. The sealing shell 4 is adapted to the inner wall of the connecting block 301 and the placement block 302, so that the sealing shell 4 will seal the connecting component 3 when placed on the inner wall of the connecting block 301 and the placement block 302.

[0020] In a preferred embodiment: the spring 5 is fixedly assembled with the inner wall of the connecting block 301, and the connecting block 301 is in contact with the placement block 302; In the above structure, the connecting block 301 is used to limit the spring 5 so that the spring 5 will not fall off when the elastic potential energy is released. When the connecting block 301 and the placement block 302 are in contact, the connection space between the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2 is sealed.

[0021] In a preferred embodiment: the pressure plate 307 is adapted to the inner wall of the heat dissipation copper pipe body 2, the connecting plate 305 is adapted to the inner wall of the heat dissipation copper pipe body 1, and the connecting block 301 is threadedly connected to the outer wall of the heat dissipation copper pipe body 1. In the above structure, the pressure plate 307 is limited by the heat dissipation copper pipe body 2 and the placement block 302, so that the pressure plate 307 will not move out of the inner wall of the heat dissipation copper pipe body 2 when the connecting component 3 is fixed, and the connecting plate 305 is limited by the heat dissipation copper pipe body 1.

[0022] Working principle: By connecting the heat dissipation copper pipe body 1 and the heat dissipation copper pipe body 2, and installing the sealing shell 4 on the inner wall of the connecting block 301 and the placement block 302, the sealing shell 4 effectively seals the space between the connecting block 301 and the placement block 302, preventing heat leakage due to poor sealing during use. This ensures that heat can be effectively transferred through the heat dissipation copper pipe, which is crucial to the heat dissipation efficiency of the equipment. If the sealing effect is poor, it will directly affect the heat dissipation of the equipment, leading to an increase in temperature, which in turn affects the stable operation and performance of the equipment. In addition, the elastic potential energy of the spring 5 applies pressure to the connecting plate 305 and the connecting block 301, making the sealing shell 4 more stable during installation, thereby achieving a good sealing effect. The operator will connect the... Block 301 and placement block 302 are threaded to the outer walls of heat dissipation copper pipe body 1 and heat dissipation copper pipe body 2, respectively. Then, they drive heat dissipation copper pipe body 1 and heat dissipation copper pipe body 2 to fit together. When heat dissipation copper pipe body 1 and heat dissipation copper pipe body 2 are tightly fitted together, the connecting shell 306 will slide from the inner wall of placement block 302 and apply pressure to the pressure plate 307. After the connecting block 301 and placement block 302 are fully fitted together, the operator rotates the rotating block 303 to limit and fix the connecting block 301 and placement block 302. Finally, by releasing the elastic potential energy of spring 2 304 and spring 3 308, support is provided for heat dissipation copper pipe body 1 and heat dissipation copper pipe body 2, thereby realizing the connection between heat dissipation copper pipe body 1 and heat dissipation copper pipe body 2.

[0023] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A heat dissipating copper pipe assembly for easy installation comprising a heat dissipating copper pipe body one (1) characterized by: The outer wall of the heat dissipation copper pipe body one (1) is provided with a connecting component (3), the inner wall of the connecting component (3) is fitted with a sealing shell (4), the inner wall of the connecting component (3) is provided with a spring one (5), and the outer wall of the connecting component (3) is provided with a heat dissipation copper pipe body two (2).

2. The easy-to-mount copper heat sink pipe assembly of claim 1, wherein: The connecting component (3) includes a connecting block (301), the outer wall of the connecting block (301) is provided with a threaded groove (309), the outer wall of the threaded groove (309) is threadedly connected to a rotating block (303), the outer wall of the connecting block (301) is provided with a placement block (302), the inner wall of the connecting block (301) is provided with a spring (304), the outer wall of the spring (304) is fixedly fitted with one end of a connecting plate (305), the other end of the connecting plate (305) is fixedly fitted with a connecting shell (306), the end of the connecting shell (306) away from the connecting plate (305) is fixedly fitted with one end of a pressure plate (307), the other end of the pressure plate (307) is fixedly fitted with a spring (308), and the outer wall of the placement block (302) is provided with a threaded groove (310).

3. A heat dissipating copper tube assembly for easy installation according to claim 2, wherein: The second spring (304) is fixedly assembled with the inner wall of the first heat dissipation copper pipe body (1), and the rotating block (303) is threadedly connected to the inner wall of the second threaded groove (310).

4. The easy-to-mount copper heat sink pipe assembly of claim 2, wherein: The spring three (308) is fixedly assembled with the inner wall of the heat dissipation copper pipe body two (2), the sealing shell (4) is adapted to the inner wall of the connecting block (301) and the placement block (302), and the placement block (302) is threadedly connected to the outer wall of the heat dissipation copper pipe body two (2).

5. The easy-to-mount copper heat sink tube assembly of claim 2, wherein: The spring (5) is fixedly assembled with the inner wall of the connecting block (301), and the connecting block (301) is in contact with the placement block (302).

6. The easy-to-mount copper heat sink tube assembly of claim 2, wherein: The pressure plate (307) is adapted to the inner wall of the heat dissipation copper pipe body 2 (2), the connecting plate (305) is adapted to the inner wall of the heat dissipation copper pipe body 1 (1), and the connecting block (301) is threadedly connected to the outer wall of the heat dissipation copper pipe body 1 (1).