Radiator device
By designing a radiator device with rotatable pluggable copper tube and radiator plate, the air duct design limitations caused by the single installation method of CPU radiator is solved, and the flexible installation and efficient heat dissipation of the radiator are achieved.
Patent Information
- Application Number
- CN202422413121.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The installation method of existing CPU radiators is single, which leads to the design of conventional chassis fan ducts that are highly restrictive and cannot be unified, affecting the cooling effect.
A radiator device including a thermally conductive aluminum plate, a radiator plate and a copper tube is designed. The copper tube can be rotatably plugged into the socket and slot of the thermally conductive aluminum plate, allowing the angle between the radiator plate and the thermally conductive aluminum plate to be adjusted, and matched with different chassis air duct designs.
It realizes flexible installation of the radiator device, adapts to different chassis air ducts, improves heat dissipation efficiency and compatibility, and optimizes the chassis air duct design.
Smart Images

Figure CN223140133U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to heat dissipation technology, and particularly relates to a rotatable radiator device. Background Art
[0002] At present in the market, most CPU radiators are installed in a single installation manner, that is, the radiator is directly installed above the CPU, and heat is dissipated through heat sinks, heat pipes or water cooling, etc. However, conventional computer cases need to design the air duct according to the motherboard CPU fan installation, which has great limitations, resulting in the inability to unify the air duct of the conventional computer case and the CPU fan on the market, and the CPU heat dissipation is not good. Summary of the Invention
[0003] To solve at least one of the foregoing technical problems, the utility model proposes a radiator device in the first aspect, including: a heat-conducting aluminum plate, which includes a jack and a slot; radiator fins, arranged above the heat-conducting aluminum plate, and the radiator fins are provided with a first opening and a second opening; copper tubes, including a first copper tube and a second copper tube, one end of the first copper tube is rotatably inserted into the jack, the other end of the first copper tube is inserted into the first opening, one end of the second copper tube is rotatably inserted into the slot, and the other end of the second copper tube is inserted into the second opening.
[0004] Preferably, the radiator fins and the heat-conducting aluminum plate are parallel or perpendicular to each other.
[0005] Preferably, the radiator fins include a third opening. When the radiator fins and the heat-conducting aluminum plate are perpendicular to each other, one end of the second copper tube is inserted into the slot, and the other end of the second copper tube is inserted into the third opening.
[0006] Preferably, the second copper tube includes a first section, a third section and a second section connecting the first section and the third section. The first section is inserted into the slot, the third section is inserted into the second opening, and the length of the first section is greater than the length of the third section.
[0007] Preferably, the first section is provided with a groove, a first elastic member is clamped in the groove, and a second elastic member is arranged on the periphery of the first section, and the second elastic member is blocked between the heat-conducting aluminum plate and the first elastic member.
[0008] Preferably, the first section is rotatably inserted into the slot, the third section is separated from the second opening, and the second elastic member is in a compressed state.
[0009] Preferably, it further includes a fixing member, the fixing member is sleeved on the periphery of the first section, and the fixing member inwardly blocks the radiator fins.
[0010] Preferably, there are two first copper tubes, which are respectively inserted into the radiator fins in the front and the radiator fins in the back, and there are two second copper tubes, which are respectively inserted into the radiator fins in the front and the radiator fins in the back.
[0011] Preferably, it further includes a first fan and a second fan. The first fan is placed on the radiator fins at the front, and the second fan is placed on the radiator fins at the back.
[0012] Preferably, both the first copper tube and the second copper tube are in a U shape.
[0013] Some technical effects of the present utility model are as follows: A radiator device includes: a heat-conducting aluminum plate, which includes a jack and a slot; radiator fins, arranged above the heat-conducting aluminum plate, and the radiator fins are provided with a first opening and a second opening; copper tubes, including a first copper tube and a second copper tube, one end of the first copper tube is rotatably inserted into the jack, the other end of the first copper tube is inserted into the first opening, one end of the second copper tube is rotatably inserted into the slot, and the other end of the second copper tube is inserted into the second opening. The components are integrally produced or transported, saving time and money, and the installation method of the fan can be adjusted. It is compatible with the conventional chassis air duct, with multiple uses. The copper tube has efficient heat transfer, and it also cooperates with the support to adjust the radiator fins, optimizing the chassis air duct and being compatible with the positions of the heat dissipation holes of any chassis. Description of the Drawings
[0014] To better understand the technical solution of the present utility model, the following drawings can be referred to, which are used to assist in explaining the prior art or embodiments. These drawings will selectively show the products or methods involved in the prior art or some embodiments of the present utility model. The basic information of these drawings is as follows:
[0015] Figure 1 Is a three-dimensional schematic diagram of the radiator device of the present utility model;
[0016] Figure 2 Is a three-dimensional schematic diagram of another perspective of the radiator device of the present utility model;
[0017] Figure 3 Is a three-dimensional exploded view of the radiator device of the present utility model;
[0018] Figure 4 Is a partial three-dimensional exploded view of the radiator device of the present utility model;
[0019] Figure 5 Is a partial three-dimensional schematic diagram of another perspective of the radiator device of the present utility model;
[0020] Figure 6 Is a three-dimensional schematic diagram of the radiator device of the present utility model in another state.
[0021] Description of the Reference Numerals:
[0022] Radiator device 100 Thermal conductive aluminum plate 1 First boss 11 Jack 12 Second boss 13 Slot 14 Radiator fin 2 First opening 21 Second opening 22 Third opening 23 Copper tube 3 First copper tube 31 Second copper tube 32 First section 321 Groove 322 Second section 323 Third section 324 Fan 4 First fan 41 Second fan 42 Fastener 5 First elastic member 6 Second elastic member 7 Detailed Description of the Embodiment
[0023] The technical means or technical effects related to the present utility model will be further described below. Obviously, the provided embodiments (or implementation manners) are only some of the implementation manners covered by the intention of the present utility model, rather than all. Based on the embodiments in the present utility model and the explicit or implicit disclosure of the drawings and texts, all other embodiments that those skilled in the art can obtain without creative labor will fall within the scope of protection claimed by the present utility model.
[0024] As Figures 1 - 6 , a radiator device 100 includes: a circuit board, a central processing unit, a heat-conducting aluminum plate 1, radiator fins 2, a copper tube 3, and a fan 4.
[0025] The central processing unit (hereinafter referred to as CPU) is installed on the circuit board.
[0026] The heat-conducting aluminum plate 1 is in a flat plate shape. It is installed above the CPU and closely attached to the CPU to effectively conduct the heat generated by the CPU. Use screws to fix the heat-conducting aluminum plate 1 on the circuit board. During the fixing process, pay attention to the appropriate tightening force of the screws to avoid damage to the CPU or the motherboard caused by over-tightening. At the same time, ensure that the radiator fins 2 are firmly fixed and will not loosen during use.
[0027] The heat-conducting aluminum plate 1 includes a bottom plate and a boss extending upward from the bottom plate. The boss is in an L shape. The boss includes a longer first boss 11 extending front and back at the edge of the bottom plate and a shorter second boss 13 extending front and back inside the first boss 11. The first boss 11 includes a through hole 12 penetrating front and back, and the second boss 13 includes a slot 14 penetrating front and back. There is an L-shaped boss on each side of the bottom plate. The two L-shaped bosses are centrosymmetric.
[0028] The radiator fins 2 are placed above the heat-conducting aluminum plate 1. The lower edge of the radiator fins 2 is concavely provided with two notches on the left and right. The bosses on the left and right sides of the heat-conducting aluminum plate 1 are respectively buckled with the two notches on the left and right of the radiator fins 2. The radiator fins 2 include a first opening 21, a second opening 22, and a third opening 23 penetrating front and back. There are multiple radiator fins 2, which are sequentially covered above the heat-conducting aluminum plate 1 from front to back. A buckling member is provided in the middle of the upper edge of each radiator fin 2 and is buckled with the buckling member of the adjacent radiator fin 2.
[0029] The copper tube 3 includes a first copper tube 31 and a second copper tube 32. Both the first copper tube 31 and the second copper tube 32 are in a U shape. One end of the first copper tube 31 is rotatably inserted into the through hole 12, and the other end of the first copper tube 31 is inserted into the first opening 21. The end of the first copper tube 31 inserted into the through hole 12 can rotate within the through hole 12. The end of the first copper tube 31 inserted into the through hole 12 extends out of the through hole 12 of the heat-conducting aluminum plate 1, and a threaded member is provided around it and fixed with a bolt. The bolt stops the radiator fins 2 inside.
[0030] One end of the second copper tube 32 is rotatably inserted into the slot 14, and the other end of the second copper tube 32 is inserted into the second opening 22. One end of the second copper tube 32 inserted into the slot 14 extends out of the slot 14. A second elastic member 7 is sleeved around a part of the copper tube 3 extending out of the slot 14. The second elastic member 7 can be a spring. The spring blocks the radiator fins 2 outward. A groove 322 is further provided at the end of the copper tube 3 extending out of the slot 14. The U-shaped second elastic member 7 is arranged in the groove 322. The second elastic member 7 extends out of the groove 322 and blocks the first elastic member 6 sleeved around a part of the copper tube 3 extending out of the slot 14.
[0031] The radiator fins 2 are installed on the heat-conducting aluminum plate 1 to further enhance the heat dissipation effect and ensure that heat-generating components such as the CPU can work stably. Select a suitable radiator fin 2 according to the size of the heat-conducting aluminum plate 1 and the heat generation of the CPU. The radiator fin 2 should have good heat dissipation performance and an interface matching the heat-conducting aluminum plate 1.
[0032] Use screws or other fixing members 5 to fix the radiator fins 2 on the heat-conducting aluminum plate 1. During the fixing process, pay attention that the tightening force of the screws should be moderate to avoid deformation of the heat-conducting aluminum plate 1 or the radiator fins due to over-tightening. At the same time, ensure that the radiator fins are firmly fixed and will not loosen during use.
[0033] The radiator fins 2 and the heat-conducting aluminum plate 1 are parallel or perpendicular to each other. The second copper tube 32 includes a first section 321, a third section 324, and a second section 323 connecting the first section 321 and the third section 324. The first section 321 is inserted into the slot 14, the third section 324 is inserted into the second opening 22, and the length of the first section 321 is greater than the length of the third section 324.
[0034] When it is necessary to convert the state between the radiator fins 2 and the heat-conducting aluminum plate 1 from parallel to perpendicular, pull the second copper tube 32 outwards until the third section 324 of the second copper tube 32 disengages from all the second openings 22 of the radiator fins 2. At this time, the spring sleeved around the first section 321 is in a compressed state. Keep the second copper tube 32 in this outwardly pulled state, and then rotate the radiator fins 2 around one end of the first copper tube 31 inserted into the jack 12 until the radiator fins 2 reach the position perpendicular to the heat-conducting aluminum plate 1. Rotate the second copper tube 32 around the slot 14 until the end of the third section 324 of the second copper tube 32 is aligned with the third opening 23 of the radiator fins 2, and then release the second copper tube 32. Under the action of the second elastic member 7, the third section 324 of the second copper tube 32 is inserted into the third opening 23 of the radiator fins 2. When the radiator fins 2 and the heat-conducting aluminum plate 1 are perpendicular to each other, one end of the second copper tube 32 is inserted into the slot 14, and the other end of the second copper tube 32 is inserted into the third opening 23.
[0035] The first section 321 is provided with a groove 322, and a first elastic member 6 is clamped in the groove 322. A second elastic member 7 is provided on the periphery of the first section 321, and the second elastic member 7 is blocked between the heat-conducting aluminum plate 1 and the first elastic member 6.
[0036] The first section 321 is rotationally inserted into the slot 14, the third section 324 is disengaged from outside the second opening 22, and the second elastic member 7 is in a compressed state.
[0037] A fixing member 5 is sleeved on the first section 321 of the second copper tube 32. The fixing member 5 blocks the radiator fins 2 inwardly, and the fixing member 5 can be a bolt-nut assembly.
[0038] The radiator fins 2 are evenly distributed on two sides that are centrosymmetric. There are two first copper tubes 31, which are respectively inserted into half of the radiator fins 2 and the other half of the radiator fins 2. There are two second copper tubes 32, which are also respectively inserted into half of the radiator fins 2 and the other half of the radiator fins 2. Half of the radiator fins 2 and the other half of the radiator fins 2 are centrosymmetric. The two first copper tubes 31 are centrosymmetric, and the two second copper tubes 32 are also centrosymmetric.
[0039] When the radiator fins 2 are perpendicular to the heat-conducting aluminum plate 1, the radiator fins 2 in the front and the radiator fins 2 in the back both open outward. The fan 4 further includes a first fan 41 and a second fan 42. The first fan 41 is placed outside the radiator fins 2 in the front, and the second fan 42 is placed outside the radiator fins 2 in the back.
[0040] Within the scope of the knowledge and ability level of those skilled in the art, various embodiments or technical features mentioned in this article can be combined with each other as other alternative embodiments without conflict. These limited numbers of alternative embodiments formed by the combination of a limited number of technical features, which are not listed one by one, still fall within the technical scope disclosed by the present utility model and can also be understood or inferred by those skilled in the art in combination with the drawings and the above text.
[0041] In addition, the descriptions of most embodiments are developed based on different focuses. For further understanding of the unelaborated parts, reasonable inferences can be made by referring to the relevant content of the prior art, other relevant descriptions in this article, or the intention of the utility model.
[0042] It is emphasized again that the embodiments listed above are relatively typical and preferred embodiments of the present utility model, which are only used to explain and illustrate the technical solutions of the present utility model in detail for the convenience of readers to understand, and are not used to limit the scope of protection or application of the present utility model. Any technical solutions obtained by making modifications, equivalent replacements, improvements, etc. within the spirit and principles of the present utility model should be covered within the scope of protection requested by the present utility model.
Claims
1. A radiator device, characterized in that, Comprising: A heat-conducting aluminum plate, which includes insertion holes and slots; Heat sink fins, arranged above the heat-conducting aluminum plate, and the heat sink fins are provided with first openings and second openings; Copper tubes, including a first copper tube and a second copper tube. One end of the first copper tube is rotatably inserted into the insertion hole, the other end of the first copper tube is inserted into the first opening, one end of the second copper tube is rotatably inserted into the slot, and the other end of the second copper tube is inserted into the second opening.
2. The device according to claim 1, wherein The heat sink fins and the heat-conducting aluminum plate are parallel or perpendicular to each other.
3. The device according to claim 2, characterized in that The heat sink fins include a third opening. When the heat sink fins and the heat-conducting aluminum plate are perpendicular to each other, one end of the second copper tube is inserted into the slot, and the other end of the second copper tube is inserted into the third opening.
4. The device according to claim 1, characterized in that, The second copper tube includes a first section, a third section, and a second section connected between the first section and the third section. The first section is inserted into the slot, the third section is inserted into the second opening, and the length of the first section is greater than the length of the third section.
5. The device according to claim 4, characterized in that, The first section is provided with a groove, and a first elastic member is clamped in the groove. A second elastic member is arranged on the periphery of the first section, and the second elastic member is blocked between the heat-conducting aluminum plate and the first elastic member.
6. The device according to claim 4, characterized in that, The first section is rotatably inserted into the slot, the third section is separated from the second opening, and the second elastic member is in a compressed state.
7. The device according to claim 4, characterized in that It further includes a fixing member, which is sleeved on the periphery of the first section, and the fixing member inwardly blocks the heat sink fins.
8. The device according to claim 1, characterized in that There are two first copper tubes, which are respectively inserted into the heat sink fins at the front and the heat sink fins at the back. There are two second copper tubes, which are respectively inserted into the heat sink fins at the front and the heat sink fins at the back.
9. The device according to claim 8, characterized in that, It further includes a first fan and a second fan. The first fan is placed on the heat sink fins at the front, and the second fan is placed on the heat sink fins at the back.
10. The device according to claim 1, characterized in that, Both the first copper tube and the second copper tube are in a U shape.