Modularized radiator convenient to maintain
Through modular design and specific structural improvements, the problem of difficult disassembly of traditional radiators has been solved, enabling convenient maintenance and improving the stability and safety of the device.
Patent Information
- Application Number
- CN202520445616.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2035-03-14
AI Technical Summary
Traditional radiators use an integrated design, which makes disassembly and maintenance difficult, increasing maintenance costs and the risk of damage.
It adopts a modular design, including a water pump, heat-conducting copper sheet, water inlet pipe, water outlet pipe, fan, limit slider, connecting block, limit seat, heat dissipation shell and heat dissipation pipe. The fan can be detached by sliding and the heat dissipation shell can be separated by pushing the elastic buckle. Combined with the design of rubber conical plug and friction block, it can be easily disassembled.
It enables easy and quick disassembly and maintenance, improving maintenance efficiency and enhancing the stability and safety of the device.
Smart Images

Figure CN223626217U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a radiator, and more particularly to a modular radiator that is easy to maintain. Background Technology
[0002] A heat sink is a device used to transfer heat from a heat-generating element to the surrounding environment. It is commonly used in the heat dissipation of electronic equipment. It can effectively dissipate heat into the air or transfer it to other cooling media to ensure the normal operation of electronic equipment and prevent overheating damage.
[0003] Traditional cooling systems typically employ an integrated design for all components or use complex methods such as screws for fixing. This structural design not only consumes installation time but also makes disassembly extremely cumbersome during later maintenance, such as cleaning dust or replacing faulty fans, significantly increasing maintenance costs and difficulty. Furthermore, considering the aging and damage of internal heat pipes, this structure leads to complex maintenance operations and poses a risk of damaging other components.
[0004] Therefore, a modular and easy-to-maintain heat sink needs to be designed. Utility Model Content
[0005] In order to overcome the shortcomings of traditional heat dissipation devices, which are mostly integrated designs, difficult to disassemble and maintain, the technical problem to be solved by this utility model is to provide a modular heat dissipation device that is easy to maintain.
[0006] The technical implementation scheme of this utility model is as follows: a modular and easy-to-maintain radiator includes a water pump, a thermally conductive copper sheet, an inlet pipe, an outlet pipe, a fan, a limiting slider, a connecting block, a limiting seat, a heat dissipation shell, and heat dissipation pipes. A thermally conductive copper sheet is fixedly connected to one end of the water pump. The outlet and inlet pipes of the water pump are respectively connected to the outlet pipe and the inlet pipe. A heat dissipation shell is provided at the end of the outlet pipe and the inlet pipe away from the water pump. A heat dissipation pipe is provided inside the heat dissipation shell. The outlet pipe and the inlet pipe extend into the heat dissipation shell and are connected to the heat dissipation pipe. A fan is provided on the top of the heat dissipation shell. A limiting slider and a connecting block are fixedly connected to both sides of the fan. The fan slides in contact with the limiting seat fixed to the top of the heat dissipation shell through the limiting slider and the connecting block. A vent is provided on the top of the heat dissipation shell corresponding to the fan.
[0007] More preferably, the heat dissipation housing consists of an upper housing and a lower housing, with the upper housing and the lower housing being movably connected.
[0008] More preferably, the connection points of the water outlet pipe and the water inlet pipe with the heat dissipation pipe are equipped with conical plugs to increase stability, and the conical plugs have through holes.
[0009] More preferably, a sealing block is provided at the end of the motion limiting seat, a lever is fixedly connected to the top of the sealing block, and a magnet is fixedly connected to the motion limiting seat near the sealing block.
[0010] More preferably, a friction block for increasing friction is fixedly connected to the upper shell of the heat dissipation shell.
[0011] More preferably, the inner wall of the upper shell of the heat dissipation shell is fixedly connected with an elastic buckle, and the lower shell of the heat dissipation shell is provided with a snap-fit corresponding to the elastic buckle.
[0012] Compared with the prior art, the present invention has the following advantages: 1. The present invention has a modular design that allows users to easily and quickly disassemble the entire device by sliding to remove the fan and pushing the elastic buckle to separate the heat dissipation shell, which greatly facilitates subsequent maintenance work and improves maintenance efficiency.
[0013] 2. This utility model uses a rubber conical plug to ensure that when the inlet and outlet pipes are connected to the heat dissipation pipe, the conical plug can fit tightly inside the heat dissipation pipe, effectively preventing coolant leakage during circulation and improving the stability and safety of the device operation.
[0014] 3. The design of the friction block in this utility model increases the friction between the user's fingers and the heat sink shell, making it easier to disassemble the heat sink shell and improving the convenience of operation. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0016] Figure 2 This is a three-dimensional structural diagram of the water pump, heat-conducting copper sheet, and conical plug of this utility model.
[0017] Figure 3 This is a three-dimensional structural diagram of the fan and connecting block of this utility model.
[0018] Figure 4 This is an exploded view of the motion-limiting seat, sealing block, and limiting slider of this utility model.
[0019] Figure 5 This is an exploded view of the heat dissipation shell, elastic buckle, and heat dissipation pipe of this utility model.
[0020] The meanings of the labels in the attached diagram are as follows: 1-Water pump, 2-Heat-conducting copper sheet, 3-Inlet pipe, 4-Outlet pipe, 5-Conical plug, 6-Fan, 7-Limit slider, 8-Connecting block, 9-Limit seat, 10-Sealing block, 11-Pulling block, 12-Magnetic block, 13-Heat dissipation shell, 14-Ventilation vent, 15-Friction block, 16-Elastic buckle, 17-Heat pipe. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Example: A modular, easy-to-maintain radiator, such as... Figure 1 and Figure 3 As shown, the device includes a water pump 1, a heat-conducting copper sheet 2, an inlet pipe 3, an outlet pipe 4, a fan 6, a limiting slider 7, a connecting block 8, a limiting seat 9, a heat dissipation shell 13, and a heat dissipation pipe 17. One end of the water pump 1 is fixedly connected to the heat-conducting copper sheet 2. The output end and input end of the water pump 1 are respectively connected to the outlet pipe 4 and the inlet pipe 3. A heat dissipation shell 13 is located at the end of the outlet pipe 4 and the inlet pipe 3 furthest from the water pump 1. A heat dissipation pipe 17 is installed inside the heat dissipation shell 13. The outlet pipe 4 and the inlet pipe 3 extend into the heat dissipation shell 13 and connect to the heat dissipation pipe 17. A fan 6 is located on the top of the heat dissipation shell 13. Limiting sliders 7 and connecting blocks 8 are fixedly connected to both sides respectively. Fan 6 is slidably connected to the limiting seat 9 fixed to the top of heat dissipation shell 13 through limiting sliders 7 and connecting blocks 8. A vent 14 is provided on the top of heat dissipation shell 13 corresponding to the fan 6. Here, heat dissipation shell 13 is composed of an upper shell and a lower shell. The upper shell and the lower shell of heat dissipation shell 13 are movably connected. When water pump 1 is started, the input end of water pump 1 draws the coolant inside heat dissipation pipe 17 through water inlet pipe 3. Then it is output from the output end of water pump 1 and enters heat dissipation pipe 17 again through water outlet pipe 4, thereby forming a circulation of coolant.
[0023] like Figure 2 As shown, a conical plug 5 is provided at the connection between the water outlet pipe 4 and the water inlet pipe 3 and the heat dissipation pipe 17 to increase stability. The conical plug 5 has a through hole. Here, the conical plug 5 is made of rubber. When the water inlet pipe 3 and the water outlet pipe 4 are connected to the heat dissipation pipe 17, the conical plug 5 extends into the heat dissipation pipe 17. At the same time, the conical plug 5 is deformed by the pressure of the heat dissipation pipe 17 when it enters the heat dissipation pipe 17, so that the conical plug 5 and the heat dissipation pipe 17 are tightly connected, effectively preventing the coolant from leaking during the circulation process and improving the stability of the device operation.
[0024] like Figure 4As shown, a sealing block 10 is provided at the end of the limiting seat 9. A lever 11 is fixedly connected to the top of the sealing block 10. A magnet 12 is fixedly connected to the limiting seat 9 near the sealing block 10. Here, the sealing block 10 is a metal block, so that the sealing block 10 can be attracted and fixed by the magnet 12. The sealing block 10 is rotatably connected to the limiting seat 9. When the lever 11 is moved, the lever 11 drives the connected sealing block 10 to rotate, so that the sealing block 10 is separated from the magnet 12 connected to the limiting seat 9. The magnet 12 no longer attracts and fixes the sealing block 10 by its own magnetic force, and the sealing block 10 releases its blocking effect on the limiting seat 9.
[0025] like Figure 5 As shown, a friction block 15 for increasing friction is fixedly connected to the upper shell of the heat dissipation shell 13. Here, the design of the friction block 15 can increase the friction between the user's fingers and the heat dissipation shell 13, so that the user can more easily disassemble the heat dissipation shell 13 and improve work efficiency.
[0026] like Figure 5 As shown, an elastic buckle 16 is fixedly connected to the inner side wall of the upper outer shell of the heat dissipation shell 13, and a slot corresponding to the elastic buckle 16 is provided on the lower outer shell of the heat dissipation shell 13. Here, by pushing the elastic buckle 16 at the slot on the lower outer shell of the heat dissipation shell 13, the elastic buckle 16 is deformed under force, causing the elastic buckle 16 to deviate from its original position, thereby pushing the elastic buckle 16 away, thereby separating the upper outer shell and the lower outer shell of the heat dissipation shell 13 from each other, thereby disassembling the heat dissipation shell 13.
[0027] This device functions as a normal radiator. When maintenance is required, it can be quickly disassembled. First, move the lever 11. Lever 11 moves the connected sealing block 10, separating it from the magnet 12 connected to the limiting seat 9. The magnet 12 no longer holds the sealing block 10 in place, releasing it from its obstruction of the limiting seat 9. Then, slide the fan 6, separating the limiting slider 7 and connecting block 8 from the limiting seat 9, allowing the fan 6 to be slid out, completing the disassembly. Afterward, pull the inlet pipe 3 and outlet pipe... 4. Disengage the conical plugs 5 on the inlet pipe 3 and outlet pipe 4 from the heat dissipation pipe 17, thereby separating the inlet pipe 3 and outlet pipe 4, and further separating the water pump 1 from the heat dissipation pipe 17. Then, push the elastic buckle 16 at the opening of the lower shell of the heat dissipation shell 13. The elastic buckle 16 deforms under force, causing it to deviate from its original position, thereby pushing the elastic buckle 16 away from the opening of the lower shell of the heat dissipation shell 13. Next, move the upper shell of the heat dissipation shell 13 upward, thereby disassembling the heat dissipation shell 13 into multiple parts. This completes the disassembly of the device, facilitating the maintenance of the device's components.
[0028] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A modular and easy-to-maintain radiator, comprising a water pump (1), a thermally conductive copper sheet (2), an inlet pipe (3), an outlet pipe (4), a heat dissipation shell (13), and a heat dissipation pipe (17), wherein the water pump (1) is fixedly connected to the thermally conductive copper sheet (2) at one end, and the outlet end and the inlet end of the water pump (1) are respectively connected to the outlet pipe (4) and the inlet pipe (3), and the outlet pipe (4) and the inlet pipe (3) are provided with a heat dissipation shell (13) at the end away from the water pump (1), and a heat dissipation pipe (17) is provided inside the heat dissipation shell (13), and the outlet pipe (4) and the inlet pipe (3) extend into the heat dissipation shell (13) and are connected to the heat dissipation pipe (17), characterized in that, It also includes a fan (6), a limiting slider (7), a connecting block (8) and a limiting seat (9). The top of the heat dissipation shell (13) is provided with a fan (6). The limiting slider (7) and the connecting block (8) are fixedly connected to both sides of the fan (6). The fan (6) is slidably connected to the limiting seat (9) fixed to the top of the heat dissipation shell (13) through the limiting slider (7) and the connecting block (8). A vent (14) is provided on the top of the heat dissipation shell (13) corresponding to the fan (6).
2. The modular and easy-to-maintain radiator as described in claim 1, characterized in that, The heat dissipation shell (13) consists of an upper shell and a lower shell, and the upper shell and the lower shell are movably connected.
3. The modular and easy-to-maintain radiator as described in claim 2, characterized in that, The connection between the water outlet pipe (4) and the water inlet pipe (3) and the heat dissipation pipe (17) is provided with a conical plug (5) to increase stability, and a through hole is provided on the conical plug (5).
4. A modular and easy-to-maintain radiator as described in claim 3, characterized in that, A sealing block (10) is provided at the end of the motion limiting seat (9), and a lever (11) is fixedly connected to the top of the sealing block (10). A magnet (12) is fixedly connected to the motion limiting seat (9) near the sealing block (10).
5. A modular and easy-to-maintain radiator as described in claim 4, characterized in that, A friction block (15) for increasing friction is fixedly connected to the upper shell of the heat dissipation shell (13).
6. A modular and easy-to-maintain radiator as described in claim 5, characterized in that, The inner wall of the upper shell of the heat dissipation shell (13) is fixedly connected with an elastic buckle (16), and the lower shell of the heat dissipation shell (13) is provided with a buckle corresponding to the elastic buckle (16).