Device for reducing running temperature of SSD (Solid State Disk)
By increasing the spacing between the heatsink fins and using a limiting structure, the problem of dust accumulation on the fins was solved, resulting in more efficient heat dissipation and improved performance and stability of the solid-state drive.
Patent Information
- Application Number
- CN202520216367.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-11
AI Technical Summary
The tightly packed fins in existing heatsinks cause dust to accumulate and become difficult to clean, affecting heat dissipation efficiency and consequently impacting the performance and stability of solid-state drives.
The design allows for increased fin spacing to facilitate dust cleaning. A limiting structure maintains consistent fin spacing to ensure smooth airflow. Copper limiting cylinders and a magnetic structure enable the fins to be detachably expanded.
It effectively improves dust cleaning, ensures smooth heat dissipation from the radiator, and enhances the performance and stability of the solid-state drive.
Smart Images

Figure CN223857876U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a radiator technical field especially relates to a reduce the device of SSD operating temperature. BACKGROUND
[0002] SSD refers to solid state disk, and the device for reducing the operating temperature of the solid state disk is usually a radiator, and the more common radiator is composed of a heat pipe, fins and a fan, the heat of the solid state disk is conducted to the plurality of fins through the heat pipe, the effect of increasing the heat dissipation area of the solid state disk is achieved, and then the fan carries away the surface temperature of the fin, accelerates heat conduction to reduce the temperature of the solid state disk and improve the stability and prolong the life of the solid state disk.
[0003] In the existing radiator, the plurality of fins are usually arranged closely, which is to reduce the thermal resistance in the heat transfer process, so that the heat is transferred more quickly from the heat source to the surface of the radiator, and then dissipated to the surrounding environment, and the accumulation of heat in the radiator can also be reduced, and the heat retention in the fin gap is avoided to affect the heat dissipation effect, but since the fan is installed on one side of the fin, the air flow caused by the fan is easy to cause dust accumulation between the fins, the accumulation of dust will hinder the air flow, so that the air cannot flow smoothly through the fins, thereby reducing the heat dissipation efficiency of the radiator, which will cause the temperature of the solid state disk to rise, affect its performance and stability, but due to the close arrangement of the fins, the dust cleaning work is difficult, which brings trouble to the user. UTILITY MODEL CONTENTS
[0004] The utility model intends to provide a device for reducing the operating temperature of SSD to solve the problems in the above background technology, the spacing of the plurality of fins in the radiator for dissipating heat of SSD in the scheme can be expanded, so that the user can clean the dust in the expanded gap, which can effectively improve the cleaning effect, ensure that there is no dust between the adjacent fins after cleaning, and further ensure that the air can flow smoothly between the fins during the heat dissipation process, ensure the effective heat dissipation of the radiator to the SSD, and improve the performance and stability of the SSD during operation.
[0005] To achieve the above purpose, the utility model provides the following technical scheme:
[0006] The utility model provides a kind of reduce the device of SSD operating temperature, including aluminium block, bottom fin, top fin and multiple middle fins, the aluminium block top end is fixedly connected with a pair of mutually symmetrical heat pipe, top fin and multiple middle fins are all set with a pair of matching through-hole of heat pipe, a pair of heat pipe is respectively passed through multiple through-holes, bottom fin, top fin and multiple middle fins are equidistant arrangement, bottom fin is fixedly connected with heat pipe, bottom fin and multiple middle fins top end are all fixedly connected with a pair of limit cylinder, top fin and multiple middle fins bottom end are all fixedly connected with a pair of limit post, limit post is clamped in the inner chamber of limit cylinder, and the bottom end of limit post is fixedly connected with first magnet, the top end of bottom fin, top fin and multiple middle fins is all fixedly connected with a pair of metal sheet, and the metal sheet on bottom fin and multiple middle fins is set in the inside of limit cylinder.
[0007] Preferably, the top end of the plurality of limit cylinders respectively abuts with the bottom end of the top fin and the plurality of middle fins.
[0008] Preferably, the material of the limit cylinder is copper.
[0009] Preferably, the top end of the pair of heat pipes is fixedly connected with a positioning block, the pair of positioning blocks are mutually symmetrical, and the bottom end of the pair of positioning blocks is fixedly connected with a second magnet, the second magnet and the metal sheet are in the same vertical position.
[0010] Preferably, the top end of the top fin and the plurality of middle fins is fixedly connected with a pair of limit rings, the limit rings are wrapped outside the through-hole, and the inner diameter of the limit ring is consistent with the through-hole.
[0011] Preferably, a damping pad is installed around the inner wall of the limit ring.
[0012] Compared with the prior art, the technical scheme has the beneficial effects that:
[0013] In the present scheme, the spacing of the plurality of fins in the heat sink for dissipating heat from the SSD can be expanded, thereby facilitating the user to clean the dust in the expanded gap, effectively improving the cleaning effect, ensuring that there is no dust between adjacent fins after cleaning, and thereby ensuring that air can flow smoothly between the fins during the heat dissipation process, ensuring effective heat dissipation of the heat sink for the SSD, and improving the performance and stability of the SSD during operation. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 The utility model provides the structure schematic diagram of bottom fin, top fin, middle fin under the state of superposition;
[0015] Figure 2The utility model provides a bottom fin, top fin, middle fin structure schematic diagram under the unfolded state of bottom fin, top fin, middle fin.
[0016] Figure 3 The utility model provides a bottom fin, top fin, middle fin top sectional structure schematic diagram.
[0017] Figure 4 The utility model provides a bottom fin, top fin, middle fin bottom sectional structure schematic diagram.
[0018] Fig. 1, aluminium block;2, heat pipe;3, bottom fin;4, top fin;5, middle fin;6, limit cylinder;7, limit column;8, metal sheet;9, first magnet;10, through -hole;11, limit ring;12, damping pad;13, positioning block;14, second magnet. DETAILED DESCRIPTION
[0019] The utility model makes further detailed explanation in combination with the drawings and embodiment:
[0020] As Figures 1-4 The utility model provides a reduce the device of SSD operating temperature, including aluminium block 1, bottom fin 3, top fin 4 and multiple middle fins 5, aluminium block 1 top end fixedly connected with a pair of mutually symmetrical heat pipe 2, and top fin 4 and multiple middle fins 5 all are set up with a pair of with heat pipe 2 matching through -hole 10, a pair of heat pipe 2 respectively passes through multiple through -hole 10, and bottom fin 3, top fin 4 and multiple middle fins 5 are equidistant arrangement, and bottom fin 3 is fixedly connected with heat pipe 2, and bottom fin 3 and multiple middle fins 5 top end all are fixedly connected with a pair of limit cylinder 6, and top fin 4 and multiple middle fins 5 bottom end all are fixedly connected with a pair of limit column 7, and limit column 7 is clamped in the inner chamber of limit cylinder 6, and the bottom end of limit column 7 is fixedly connected with first magnet 9, and the top end of bottom fin 3, top fin 4 and multiple middle fins 5 all are fixedly connected with a pair of metal sheet 8, and the metal sheet 8 on bottom fin 3 and multiple middle fins 5 is set up in the inside of limit cylinder 6.
[0021] SSD refers to solid state disk, and the device for reducing the operating temperature of solid state disk is usually a radiator, and the more common radiator is composed of heat pipe, fin and fan, heat pipe is used to conduct the heat of solid state disk to multiple fins, so as to increase the heat dissipation area of solid state disk, then the fan is used to take away the temperature on the surface of fin, accelerates heat conduction to reduce the temperature of solid state disk, improves the stability of solid state disk and prolongs the life, in the existing radiator, since the fan is installed on one side of fin, the air flow caused by the fan is easy to cause dust accumulation between fins, since the fins are closely arranged, the dust cleaning work is difficult, which causes the trouble of users.
[0022] In the scheme, the top fin 4 and the limiting column 7 at the bottom end of the plurality of middle fins 5 are adsorbed on the metal sheet 8 at the top end of the plurality of middle fins 5 and the bottom fin 3 by the first magnet 9, so as to fix the bottom fin 3, the top fin 4 and the plurality of middle fins 5 together and arrange them closely, the bottom end of the solid state disk is provided with the aluminum block 1, the heat generated by the solid state disk is conducted to the pair of heat pipes 2 through the aluminum block 1, and then conducted to the bottom fin 3, the top fin 4 and the plurality of middle fins 5 through the heat pipes 2, so as to greatly improve the heat dissipation area of the solid state disk, and then the heat on the bottom fin 3, the top fin 4 and the plurality of middle fins 5 is taken away through the fan, so as to reduce the temperature of the solid state disk, the material of the heat pipe 2 can be set as copper, and the material of the bottom fin 3, the top fin 4 and the plurality of middle fins 5 can be set as aluminum, copper and aluminum both have excellent heat conduction performance, in the actual use process, dust is easy to accumulate between the bottom fin 3, the top fin 4 and the plurality of middle fins 5, which is difficult to clean, in the scheme, the user can pull the top fin 4 upward, so that the top fin 4 slides on the pair of heat pipes 2 through the pair of through holes 10, and then drives the plurality of middle fins 5 to move upward, so that the plurality of first magnets 9 are separated from the metal sheet 8, the limiting column 7 slides in the inner cavity of the limiting cylinder 6, and the bottom fin 3 remains stationary, so as to make the bottom fin 3, the top fin 4 and the plurality of middle fins 5 move away from each other and expand the distance between each other, so as to facilitate the user to clean the dust in the gap, and at the same time, the limiting effect of the limiting cylinder 6 and the limiting column 7 ensures that the distance between the top fin 4 and the plurality of middle fins 5 is consistent after being stretched to the limit.
[0023] The top end of the plurality of limiting cylinders 6 respectively abuts against the bottom end of the top fin 4 and the plurality of middle fins 5, and the material of the limiting cylinder 6 is set as copper.
[0024] In the scheme, when the bottom fin 3, the top fin 4 and the plurality of middle fins 5 are in the stacked state, the limiting cylinder 6 abuts between the adjacent bottom fin 3, top fin 4 and middle fin 5, and plays a supporting role, and the copper limiting cylinder 6 can have better heat conduction effect, so as to promote faster heat conduction between the bottom fin 3, the top fin 4 and the plurality of middle fins 5.
[0025] The top end of the pair of heat pipes 2 is fixedly connected with the positioning block 13, the pair of positioning blocks 13 are symmetrical to each other, and the bottom end of the pair of positioning blocks 13 is fixedly connected with the second magnet 14, and the second magnet 14 and the metal sheet 8 are at the same vertical position.
[0026] In the scheme, when the top fin 4 is pulled to the limit height, the pair of metal sheets 8 at the top end of the top fin 4 can be adsorbed with the second magnet 14, so as to fix the top fin 4, and ensure that the bottom fin 3, the top fin 4 and the plurality of middle fins 5 remain in the unfolded state, so as to facilitate the user to clean.
[0027] The top fin 4 and the top ends of the plurality of middle fins 5 are fixedly connected with a pair of limiting rings 11, the limiting rings 11 are arranged outside the through holes 10, the inner diameters of the limiting rings 11 are consistent with the through holes 10, and the inner walls of the limiting rings 11 are arranged with damping pads 12.
[0028] In the scheme, the limiting rings 11 can increase the contact area of the top fin 4 and the plurality of middle fins 5 with the heat pipes 2, thereby improving the stability of the connection of the top fin 4 and the plurality of middle fins 5 with the heat pipes 2, avoiding shaking of the top fin 4 and the middle fins 5 during use, improving the overall stability of the device, the material of the damping pads 12 can be rubber, the damping pads 12 can fill the gap between the damping pads 12 and the heat pipes 2, further improving the stability of the top fin 4 and the middle fins 5, and at the same time, the damping feeling when the top fin 4 and the middle fins 5 slide can be improved, and the user experience is optimized.
[0029] The specific implementation process is as follows:
[0030] When the user cleans the dust between the bottom fin 3, the top fin 4 and the plurality of middle fins 5, first pull the top fin 4 upwards, so that the top fin 4 slides on the pair of heat pipes 2 through the pair of through holes 10, thereby driving the plurality of middle fins 5 to move upwards, so that the plurality of first magnets 9 are separated from the metal sheets 8, the limiting columns 7 slide in the inner cavities of the limiting cylinders 6, and the bottom fin 3 remains stationary, thereby making the bottom fin 3, the top fin 4 and the plurality of middle fins 5 move away from each other and expand the distance between them, when the top fin 4 is pulled to the limit height, the user fixes the top fin 4 by attracting the pair of metal sheets 8 at the top end of the top fin 4 to the second magnets 14, thereby ensuring that the bottom fin 3, the top fin 4 and the plurality of middle fins 5 remain in the expanded state, and the user can conveniently clean the dust in the expanded gap.
[0031] The above is only an embodiment of the present application, and the specific technical solutions and / or common knowledge of the scheme are not described in detail. It should be noted that for those skilled in the art, without departing from the technical solutions of the present application, a number of modifications and improvements can be made, which should also be considered as the protection scope of the present application, and these will not affect the effect and practicality of the present application. The protection scope of the present application should be subject to the content of its claims, and the specific implementation mode and the like in the specification can be used to explain the content of the claims.
Claims
1. A device for reducing the operating temperature of an SSD, characterized in that: The application relates to a heat dissipation device, which comprises an aluminum block (1), a bottom fin (3), a top fin (4) and a plurality of middle fins (5), a pair of symmetrical heat pipes (2) are fixedly connected to the top end of the aluminum block (1), a pair of through holes (10) matched with the heat pipes (2) are formed in the top fin (4) and the plurality of middle fins (5), the heat pipes (2) respectively pass through the plurality of through holes (10), the bottom fin (3), the top fin (4) and the plurality of middle fins (5) are equidistantly arranged, the bottom fin (3) is fixedly connected with the heat pipes (2), a pair of limiting cylinders (6) are fixedly connected to the top end of the bottom fin (3) and the plurality of middle fins (5), a pair of limiting columns (7) are fixedly connected to the bottom end of the top fin (4) and the plurality of middle fins (5), the limiting columns (7) are clamped in the inner cavities of the limiting cylinders (6), the bottom end of the limiting columns (7) is fixedly connected with first magnets (9), a pair of metal sheets (8) are fixedly connected to the top end of the bottom fin (3), the top fin (4) and the plurality of middle fins (5), and the metal sheets (8) on the bottom fin (3) and the plurality of middle fins (5) are arranged in the limiting cylinders (6).
2. The device for reducing the operating temperature of the SSD according to claim 1, wherein: The top end of the plurality of limiting cylinders (6) is in abutment with the bottom end of the top fin (4) and the plurality of middle fins (5).
3. The device for reducing the operating temperature of the SSD according to claim 1, wherein: The material of the limiting cylinder (6) is copper.
4. The device for reducing the operating temperature of the SSD of claim 1, wherein: The top end of the pair of heat pipes (2) is fixedly connected with a positioning block (13), the pair of positioning blocks (13) are symmetrical to each other, the bottom end of the pair of positioning blocks (13) is fixedly connected with second magnets (14), and the second magnets (14) and the metal sheets (8) are located at the same vertical position.
5. The device for reducing the operating temperature of an SSD of claim 1, wherein: The top end of the top fin (4) and the plurality of middle fins (5) is fixedly connected with a pair of limiting rings (11), the limiting rings (11) surround the outer side of the through holes (10), and the inner diameter of the limiting rings (11) is consistent with the through holes (10).
6. The device for reducing the operating temperature of the SSD according to claim 5, characterized in that: The inner wall of the limiting ring (11) is mounted with a damping pad (12).