Detachable novel material heat dissipation waistcoat for storage module

By introducing a composite thermal conductive layer and an aluminum alloy base reinforcement component into the solid-state drive heatsink, the problems of the traditional heatsink material structure being simple and having poor thermal conductivity are solved, achieving efficient heat dissipation and convenient installation and disassembly.

CN223526871UActive Publication Date: 2025-11-07SHANGHAI GUSHUOXIN CONTROL SEMICONDUCTOR TECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422788975.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-11-07
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Existing solid-state drive heatsinks have a simple material structure and poor thermal conductivity, resulting in low heat dissipation efficiency, complex installation, and inconvenient maintenance.

Method used

It adopts a composite thermal conductive layer structure, including liquid metal thermal paste, thermal pads, composite thermal pads and thermal gel, combined with an aluminum alloy base and reinforcement components, and is designed as a detachable heat dissipation heat shield assembly. The combination of multiple thermal conductive materials improves heat dissipation efficiency, and the snap-fit ​​rod and plug-in structure enable convenient installation and disassembly.

Benefits of technology

The heat dissipation efficiency of the heat sink has been improved, the installation and disassembly process has been simplified, and the convenience of user maintenance and the practicality of the device have been enhanced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223526871U_ABST
    Figure CN223526871U_ABST
Patent Text Reader

Abstract

The utility model discloses a detachable novel material heat dissipation waistcoat for a storage module, which relates to the field of heat dissipation waistcoats and comprises a heat dissipation waistcoat component, an aluminum alloy bottom cavity seat is arranged on one side of the heat dissipation waistcoat component, a reinforcing component is arranged between the heat dissipation waistcoat component and the aluminum alloy bottom cavity seat, and a solid state disk is arranged in the aluminum alloy bottom cavity seat. The number of the reinforcing assemblies is four, hole groove cavities are formed in the top face of the aluminum alloy bottom cavity base, through grooves are formed in the two sides of the aluminum alloy bottom cavity base, clamping rods are arranged on one side of the heat dissipation waistcoat assembly, the number of the clamping rods is four, and each clamping rod is matched with the corresponding hole groove cavity and connected with the corresponding hole groove cavity in a clamped mode. Two groups of insertion plates are arranged on one side of the inner wall of the cavity of the aluminum alloy bottom cavity seat, and the solid state disk is clamped and connected between the two groups of insertion plates; through the arrangement, the heat dissipation waistcoat assembly and the solid state disk are convenient to assemble and disassemble, a user can maintain the solid state disk conveniently, and the working efficiency of the device is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of heat dissipation waistcoat, concretely to a detachable novel material heat dissipation waistcoat for storage module. BACKGROUND

[0002] The storage module refers to the hardware device for storing data. The solid state disk is one of the storage modules. The solid state disk is a hard disk made of solid-state electronic storage chip array, which is the same as the traditional hard disk in interface specification, function and use method, but also has the same design as the traditional hard disk in product shape and size. With the continuous development of computer technology, the solid state disk has become one of the main storage devices of modern computers. However, with the application and popularization of solid state disks, the heat dissipation problem has gradually emerged. In the continuous high temperature environment, the performance of the solid state disk will be seriously affected, and even data loss may occur. The heat dissipation waistcoat for solid state disk is a heat dissipation device specially designed for solid state disk. The existing heat dissipation waistcoat for solid state disk has too complicated installation steps, and the operation is complicated during installation, which is not convenient for the installation of the heat dissipation waistcoat.

[0003] On this basis, through retrieval, the Chinese patent No. CN212061878U discloses a heat dissipation waistcoat for solid state disk convenient to install;

[0004] However, the patent application has the following deficiencies: the material structure of the traditional heat dissipation waistcoat is single, and the heat dissipation waistcoat made of ordinary pure copper material has poor heat conduction performance. The traditional heat dissipation waistcoat lacks optimized heat conduction material, which reduces the heat dissipation efficiency of the heat dissipation waistcoat for the storage module, and needs to be optimized by selecting the material and designing the structure to improve the heat dissipation efficiency of the heat dissipation waistcoat.

[0005] In view of the above problems, a detachable novel material heat dissipation waistcoat for storage module is proposed. Utility model content

[0006] The utility model aims at providing a detachable novel material heat dissipation waistcoat for storage module, which solves the problem of single material structure of the traditional heat dissipation waistcoat, poor heat conduction performance of the heat dissipation waistcoat made of ordinary pure copper material, lack of optimized heat conduction material of the traditional heat dissipation waistcoat, and reduction of the heat dissipation efficiency of the heat dissipation waistcoat for the storage module, which needs to be optimized by selecting the material and designing the structure to improve the heat dissipation efficiency of the heat dissipation waistcoat.

[0007] To achieve the above object, the utility model provides the following technical scheme: A detachable novel material heat dissipation waistcoat for storage module, including heat dissipation waistcoat subassembly, one side of heat dissipation waistcoat subassembly is provided with aluminium alloy bottom cavity seat, be provided with reinforcing assembly between heat dissipation waistcoat subassembly with Aluminium alloy bottom cavity seat, the inside of aluminium alloy bottom cavity seat is provided with solid state disk, and the reinforcing assembly is provided with four groups, the top of aluminium alloy bottom cavity seat is provided with hole groove cavity, and the hole groove cavity is provided with four groups, both sides of aluminium alloy bottom cavity seat are provided with through groove, one side of heat dissipation waistcoat subassembly is provided with the clamping rod, and the clamping rod is provided with four groups, and every group the clamping rod with every group the hole groove cavity is matched and is clamped and is connected, one side of aluminium alloy bottom cavity seat cavity inner wall is provided with the plugboard, and the plugboard is provided with two groups, and the solid state disk is clamped and is connected between two groups the plugboard, the reinforcing assembly includes the hole groove ring body of fixed connection one side of aluminium alloy bottom cavity seat, and one side of heat dissipation waistcoat subassembly is fixedly connected with fixed ring body, and the fixed ring body middle part is fixedly connected with cavity rod.

[0008] Preferably, the heat dissipation waistcoat assembly is provided with a first heat-conducting silica gel sheet on one side, the aluminum alloy bottom cavity seat cavity bottom is provided with a second heat-conducting silica gel sheet, the solid state disk is arranged between the second heat-conducting silica gel sheet and the first heat-conducting silica gel sheet, and the upper and lower sides of the solid state disk are respectively tightly attached to the first heat-conducting silica gel sheet and the second heat-conducting silica gel sheet.

[0009] Preferably, the reinforcing assembly further comprises a connecting disc provided on one side of the cavity rod, and a sliding rod is slidingly connected to one side of the cavity rod, and the sliding rod is fixedly connected to the connecting disc.

[0010] Preferably, the sliding rod is fixedly connected to a long insertion rod at an end away from the connecting disc.

[0011] Preferably, the long insertion rod is slidingly connected to the cavity rod, and the long insertion rod extends to the outside of the cavity rod at one end.

[0012] Preferably, the long insertion rod is matched with the hole groove ring body at a corresponding position and is clamped and connected.

[0013] Preferably, the heat dissipation waistcoat assembly comprises a heat dissipation plate body and a composite heat-conducting layer, the composite heat-conducting layer is arranged on one side of the heat dissipation plate body, and the composite heat-conducting layer is a component made of a first heat-conducting layer, a second heat-conducting layer, a third heat-conducting layer, a fourth heat-conducting layer and a fifth heat-conducting layer.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] 1. The utility model proposes a kind of detachable novel material heat-dissipating waistcoat for storage module, when solid state hard disk needs passive heat dissipation, solid state hard disk can be assembled with matching heat-dissipating waistcoat component, solid state hard disk is placed between two groups of plug-in boards, and two groups of plug-in boards are stably limited at the two sides of solid state hard disk, at this time, solid state hard disk is installed inside aluminum alloy bottom cavity seat, and the bottom surface of solid state hard disk is tightly attached to the top surface of second heat-conducting silica gel sheet, subsequent user can cover heat-dissipating waistcoat component on the top surface of aluminum alloy bottom cavity seat, each group of clamping rod is matched with each group of hole groove cavity, clamping rod is inserted into the inside of corresponding position hole groove cavity, heat-dissipating waistcoat component is initially fixed on the top surface of aluminum alloy bottom cavity seat by the positioning effect of hole groove cavity and clamping rod, and the first heat-conducting silica gel sheet of heat-dissipating waistcoat component side wall is tightly attached to the top surface of solid state hard disk;To reinforce the assembly between heat-dissipating waistcoat component and aluminum alloy bottom cavity seat, multiple reinforcement components can be used, after heat-dissipating waistcoat component is covered on the top surface of aluminum alloy bottom cavity seat, cavity rod of heat-dissipating waistcoat component one side is in the directly above of corresponding position group hole groove ring body, user simultaneously presses four groups of connecting disc downward, connecting disc pushes its one side sliding rod and long insertion rod to move towards hole groove ring body, until long insertion rod is inserted and passes through the hole cavity of hole groove ring body middle part, and long insertion rod and hole groove ring body are fixedly connected, the installation between heat-dissipating waistcoat component and aluminum alloy bottom cavity seat is reinforced using multiple long insertion rods, this setting makes heat-dissipating waistcoat component and solid state hard disk between easy to install and disassemble, it is convenient for user to maintain solid state hard disk, improve the working efficiency of device.

[0016] 2, The utility model provides a detachable novel material heat dissipation waistcoat for storage module, the material structure of traditional heat dissipation waistcoat is single, has reduced the heat dissipation efficiency of heat dissipation waistcoat to storage module, needs to select and structure design to optimize to improve the heat dissipation efficiency of heat dissipation waistcoat component, the heat dissipation waistcoat component in the utility model is composed of radiating plate and composite heat conduction layer, and the composite heat conduction layer is the component made of first heat conduction layer, second heat conduction layer, third heat conduction layer, fourth heat conduction layer and fifth heat conduction layer member, the first heat conduction layer is the component made of liquid metal heat conduction paste, and the liquid metal heat conduction paste is pure metal thermal interface material in paste form at normal temperature, and its most prominent feature is that the heat conductivity is far superior to traditional silicon oil based thermal interface material, and the performance advantage is obvious, the second heat conduction layer is the component made of liquid metal heat conduction sheet, and the liquid metal heat conduction sheet is a solid pure metal interface material product, the first heat conduction layer and the second heat conduction layer belong to liquid metal thermal interface material, and the liquid metal thermal interface material has excellent heat conduction capacity, and is convenient to operate, and is a high-end heat conduction interface material without smearing process, which is a breakthrough innovation in the international heat dissipation field in recent years, and its operation process is convenient, the heat conductivity is high, the exclusion advantage, the stable materialization performance, the liquid metal melting point and viscosity can be adjusted, can be applied to different heat conductivity demand scenes, and can effectively prevent overflow and dripping, and the liquid metal heat conductivity is high, the third heat conduction layer is the component made of composite heat conduction gasket, the fourth heat conduction layer is the component made of composite heat conduction gel, and the fifth heat conduction layer is the component made of composite heat conduction silicone grease, and the third heat conduction layer, the fourth heat conduction layer and the fifth heat conduction layer belong to liquid metal composite heat conduction interface material product, which adopts the composite technology of high heat conduction liquid metal and polymer matrix on the basis of traditional polymer thermal interface material, and prepares flexible heat conduction products with more excellent heat conduction performance and insulation, and the product form has gasket, silicone grease and gel, and its operation process is convenient, the heat conductivity is high, the chemical performance is stable, and it is beneficial to improve the heat conduction efficiency of the heat dissipation waistcoat component, the heat dissipation waistcoat of the novel material is set up through the design, the heat dissipation efficiency of the heat dissipation waistcoat to storage module is improved, the poor heat conduction performance of the traditional single pure copper material heat dissipation waistcoat is avoided, the heat dissipation efficiency of the heat dissipation waistcoat component is improved through the selection and structure design of material, and the practicability of the device is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the overall structure diagram of the utility model;

[0018] Figure 2 It is the heat dissipation waistcoat component, aluminum alloy bottom cavity seat and solid state disk structure diagram of the utility model;

[0019] Figure 3 It is the aluminum alloy bottom cavity seat and solid state disk structure diagram of the utility model;

[0020] Figure 4The utility model discloses a reinforcing assembly structure diagram;

[0021] Figure 5 The utility model discloses reinforcing assembly split component structure diagram;

[0022] Figure 6 The utility model discloses long insertion rod structure diagram;

[0023] Figure 7 The utility model discloses the composite heat conduction layer structure diagram in the heat dissipation waistcoat.

[0024] In the drawing: 1, heat dissipation waistcoat assembly;111, first heat conduction layer;112, second heat conduction layer;113, third heat conduction layer;114, fourth heat conduction layer;115, fifth heat conduction layer;11, the rod of engaging;12, first heat conduction silica gel sheet;2, aluminum alloy bottom cavity seat;21, hole groove cavity;22, through groove;23, second heat conduction silica gel sheet;24, plugboard;3, reinforcing assembly;31, hole groove ring body;32, fixed ring body;33, cavity rod;34, long insertion rod;35, sliding rod;36, connecting disc;4, solid state hard drive. Specific implementation

[0025] The technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the range of the utility model protection.

[0026] In order to further understand the content of the utility model, the utility model will be described in detail in combination with the drawings.

[0027] In combination with Figures 1-7 A detachable novel material heat dissipation waistcoat for storage module, including heat dissipation waistcoat assembly 1, heat dissipation waistcoat assembly 1 one side is provided with aluminum alloy bottom cavity seat 2, heat dissipation waistcoat assembly 1 with aluminum alloy bottom cavity seat 2 between being provided with reinforcing assembly 3, aluminum alloy bottom cavity seat 2 inside is provided with solid state hard drive 4, and reinforcing assembly 3 is provided with four groups, aluminum alloy bottom cavity seat 2 top is provided with hole groove cavity 21, and hole groove cavity 21 is provided with four groups, aluminum alloy bottom cavity seat 2 both sides are provided with through groove 22, heat dissipation waistcoat assembly 1 one side is provided with the rod of engaging 11, and the rod of engaging 11 is provided with four groups, and every group of the rod of engaging 11 with every group hole groove cavity 21 is matched and is engaged with connection, aluminum alloy bottom cavity seat 2 cavity inner wall one side is provided with plugboard 24, and plugboard 24 is provided with two groups, and solid state hard drive 4 is engaged with connection between two groups of plugboard 24;Reinforcing assembly 3 includes the hole groove ring body 31 of fixed connection in aluminum alloy bottom cavity seat 2 one side, and heat dissipation waistcoat assembly 1 one side is fixedly connected with fixed ring body 32, and fixed ring body 32 middle part is fixedly connected with cavity rod 33.

[0028] The utility model will be further described below in combination with the embodiments. Embodiment one

[0029] Please refer to Figures 1-6 , the heat dissipation waistcoat assembly 1 one side is provided with the first heat conduction silica gel piece 12, the aluminum alloy bottom cavity seat 2 cavity bottom is provided with the second heat conative silica gel piece 23, solid state hard disk 4 is set up between the second heat conative silica gel piece 23 and the first heat conduction silica gel piece 12, and the solid state hard disk 4 upper and lower sides are respectively with the first heat conduction silica gel piece 12 and the second heat conduction silica gel piece 23 and each other tightly, the reinforcement assembly 3 still includes the connecting disc 36 of setting up in the cavity rod 33 one side, the cavity rod 33 one side is slidably connected with the sliding rod 35, and the sliding rod 35 is fixedly connected with the connecting disc 36, the one end of the sliding rod 35 away from the connecting disc 36 is fixedly connected with the long insertion rod 34, the long insertion rod 34 is slidably connected with the cavity rod 33, and the long insertion rod 34 one end extends to the cavity rod 33 outside, and the long insertion rod 34 and the corresponding position hole groove ring body 31 are matched with each other, and are clamped and connected. Embodiment two

[0030] Please refer to Figures 1-2 and Figure 7 , the heat dissipation waistcoat assembly 1 includes the heat dissipation plate body and composite heat conduction layer, and the composite heat conduction layer is set up in one side of the heat dissipation plate body, and the composite heat conduction layer is the component made of the first heat conduction layer 111, the second heat conduction layer 112, the third heat conduction layer 113, the fourth heat conduction layer 114 and the fifth heat conduction layer 115.

[0031] In summary: the utility model provides a kind of detachable new material heat dissipation waistcoat for storage module, when solid state disk 4 needs passive heat dissipation, solid state disk 4 can be assembled with matching heat dissipation waistcoat component 1, solid state disk 4 is placed between two groups of plugboard 24, two groups of plugboard 24 are limited and stable on the both sides of solid state disk 4, at this time, solid state disk 4 is installed inside aluminum alloy bottom cavity seat 2, and the bottom surface of solid state disk 4 is tightly attached to the top surface of second heat-conducting silica gel sheet 23, subsequent user can cover heat dissipation waistcoat component 1 on the top surface of aluminum alloy bottom cavity seat 2, match each group of clamping rod 11 with each group of hole groove cavity 21, clamping rod 11 is inserted into the inside of corresponding position hole groove cavity 21, heat dissipation waistcoat component 1 is initially fixed on the top surface of aluminum alloy bottom cavity seat 2 by the positioning effect of hole groove cavity 21 and clamping rod 11, and first heat-conducting silica gel sheet 12 of heat dissipation waistcoat component 1 side wall is tightly attached to the top surface of solid state disk 4;In order to reinforce the assembly between heat dissipation waistcoat component 1 and aluminum alloy bottom cavity seat 2, multiple reinforcement components 3 can be used, after heat dissipation waistcoat component 1 is covered on the top surface of aluminum alloy bottom cavity seat 2, cavity rod 33 of one side of heat dissipation waistcoat component 1 is directly above corresponding position group hole groove ring body 31, user simultaneously presses four groups of connecting disc 36 downward, connecting disc 36 pushes its one side sliding rod 35 and long insertion rod 34 to move towards hole groove ring body 31, until long insertion rod 34 is inserted and passes through the hole cavity in the middle of hole groove ring body 31, and long insertion rod 34 and hole groove ring body 31 are clamped and fixedly connected, multiple long insertion rods 34 reinforce the installation between heat dissipation waistcoat component 1 and aluminum alloy bottom cavity seat 2;If solid state disk 4 needs to be maintained, solid state disk 4 needs to be taken out from the inside of aluminum alloy bottom cavity seat 2, and multiple connecting discs 36 are pulled upward at the same time, connecting disc 36 drives long insertion rod 34 to move away from hole groove ring body 31, and long insertion rod 34 shrinks towards the inner cavity of cavity rod 33, until long insertion rod 34 and hole groove ring body 31 completely move away, heat dissipation waistcoat component 1 is pulled away from aluminum alloy bottom cavity seat 2, multiple clamping rods 11 are pulled out from the inside of multiple hole groove cavities 21 respectively, clamping rod 11 and hole groove cavity 21 move away from each other, and heat dissipation waistcoat component 1 is detached from one side of aluminum alloy bottom cavity seat 2, and then user pulls solid state disk 4 in the direction of vertical upward, until solid state disk 4 is detached from the inside of aluminum alloy bottom cavity seat 2, and the disassembly work of aluminum alloy bottom cavity seat 2 is completed, which is convenient for user to maintain, this setting makes heat dissipation waistcoat component 1 and solid state disk 4 easy to install and disassemble, which is convenient for user to maintain solid state disk 4, and improves the working efficiency of the device;

[0032] The traditional heat dissipation waistcoat has single material structure, and the heat dissipation waistcoat made of pure copper has poor heat conduction performance, which reduces the heat dissipation efficiency of the heat dissipation waistcoat on the storage module, and the heat dissipation efficiency of the heat dissipation waistcoat assembly 1 needs to be optimized through the selection of material and the design of structure to improve the heat dissipation efficiency of the heat dissipation waistcoat assembly 1; the heat dissipation waistcoat assembly 1 in the utility model is composed of a heat dissipation plate and a composite heat conduction layer, and the composite heat conduction layer is a component made of a first heat conduction layer 111, a second heat conduction layer 112, a third heat conduction layer 113, a fourth heat conduction layer 114 and a fifth heat conduction layer 115; the first heat conduction layer 111 is a component made of liquid metal heat conduction paste, the liquid metal heat conduction paste is a pure metal thermal interface material in paste form at room temperature, and the most remarkable feature is that the thermal conductivity is much better than that of traditional silicon oil-based thermal interface materials, and the performance advantage is obvious. Based on the metal material and process patented by platinum new material, the platinum new material R&D team has developed a series of liquid metal heat conduction paste products with different thermal conductivities and different viscosities, which can meet the different needs of various high-end heat dissipation fields; the second heat conduction layer 112 is a component made of liquid metal heat conduction sheet, and the liquid metal heat conduction sheet is a solid pure metal interface material product. Based on the advanced material technology of platinum new material, the liquid metal heat conduction sheet has excellent heat conduction capacity, and is convenient to operate and does not need a coating process.The first and second heat-conducting layers 111 and 112 are liquid metal heat-conducting interface materials. The liquid metal heat-conducting interface material has excellent heat conduction capacity, is convenient to operate, and is a high-end heat-conducting interface material without a coating process. It is a breakthrough innovation in the international heat dissipation field in recent years. The operation process is convenient, the heat conductivity is high, the exclusive advantage is stable, the physical and chemical properties are stable, the melting point and viscosity of the liquid metal can be adjusted, it can be applied to different heat conductivity demand scenes, and can effectively prevent overflow and dripping. The liquid metal has high heat conductivity, which is 5-10 times that of traditional silicone oil-based materials, and has obvious performance advantages. There is no organic volatile matter, and the high-temperature resistance can reach 500 DEG C, which is much higher than that of existing heat interface materials. The third heat-conducting layer 113 is a component made of a composite heat-conducting gasket, the fourth heat-conducting layer 114 is a component made of a composite heat-conducting gel, and the fifth heat-conducting layer 115 is a component made of a composite heat-conducting silicone grease. The third, fourth and fifth heat-conducting layers 113, 114 and 115 are liquid metal composite heat-conducting interface material products. On the basis of traditional polymer heat interface materials, a composite technology of high-heat-conducting liquid metal and polymer matrix is adopted to prepare a flexible heat-conducting product with excellent heat-conducting performance and insulation. The product has the forms of gasket, silicone grease and gel, and the operation process is convenient, the heat conductivity is high, the chemical properties are stable, and the heat dissipation jacket assembly 1 is beneficial to improve the heat dissipation efficiency. The working principle of the heat dissipation jacket assembly 1 is mainly to reduce the surface temperature of the solid state hard disk 4 through heat-conducting materials and air convection. Specifically, the first and second heat-conducting silicone gaskets 12 and 23 are tightly attached to the upper and lower surfaces of the solid state hard disk 4 to rapidly conduct the heat generated by the solid state hard disk 4 to the heat dissipation jacket assembly 1 and the aluminum alloy bottom cavity seat 2, and then the heat is dissipated through air convection, thereby achieving the purpose of reducing the temperature of the solid state hard disk 4. This setting improves the heat dissipation efficiency of the heat dissipation jacket on the storage module by designing a new type of heat dissipation jacket accessory, avoids the poor heat-conducting performance of the traditional single pure copper heat dissipation jacket, and optimizes the heat dissipation efficiency of the heat dissipation jacket assembly 1 through material selection and structure design to improve the practicability of the device.

[0033] It should be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0034] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A detachable new material heat dissipation waistcoat for a storage module, comprising a heat dissipation waistcoat assembly (1), characterized in that: The heat dissipation jacket assembly (1) is provided with an aluminum alloy bottom cavity seat (2) on one side, a reinforcing assembly (3) is arranged between the heat dissipation jacket assembly (1) and the aluminum alloy bottom cavity seat (2), a solid state hard disk (4) is arranged inside the aluminum alloy bottom cavity seat (2), and the reinforcing assembly (3) is provided with four groups, the aluminum alloy bottom cavity seat (2) is provided with a hole groove cavity (21) on the top surface, and the hole groove cavity (21) is provided with four groups, the aluminum alloy bottom cavity seat (2) is provided with a through groove (22) on both sides, the heat dissipation jacket assembly (1) is provided with a clamping rod (11) on one side, and the clamping rod (11) is provided with four groups, each group of the clamping rod (11) is matched with and clampedly connected with each group of the hole groove cavity (21), the aluminum alloy bottom cavity seat (2) is provided with an insertion plate (24) on one side of the cavity inner wall, and the insertion plate (24) is provided with two groups, and the solid state hard disk (4) is clampedly connected between the two groups of insertion plates (24).

2. The detachable new material heat-dissipation waistcoat for a storage module according to claim 1, characterized in that: The heat dissipation jacket assembly (1) is provided with a first heat-conducting silica gel sheet (12) on one side, the aluminum alloy bottom cavity seat (2) is provided with a second heat-conducting silica gel sheet (23) on the bottom of the cavity, the solid state hard disk (4) is arranged between the second heat-conducting silica gel sheet (23) and the first heat-conducting silica gel sheet (12), and the upper and lower sides of the solid state hard disk (4) are tightly attached to the first heat-conducting silica gel sheet (12) and the second heat-conducting silica gel sheet (23), respectively.

3. The detachable new material heat-dissipation waistcoat for a storage module according to claim 2, characterized in that: The reinforcing assembly (3) further comprises a connecting disc (36) arranged on one side of the cavity rod (33), and a sliding rod (35) is slidably connected to one side of the cavity rod (33), and the sliding rod (35) is fixedly connected with the connecting disc (36).

4. The detachable new material heat-dissipation waistcoat for a storage module according to claim 3, characterized in that: One end of the sliding rod (35) away from the connecting disc (36) is fixedly connected with a long insertion rod (34).

5. The detachable new material heat-dissipation waistcoat for a storage module according to claim 4, characterized in that: The long insertion rod (34) is slidably connected with the cavity rod (33), and one end of the long insertion rod (34) extends to the outside of the cavity rod (33).

6. The detachable new material heat-dissipation waistcoat for a memory module according to claim 5, characterized in that: The long insertion rod (34) is matched with the hole groove ring body (31) at the corresponding position and is clampedly connected.

7. The detachable new material heat-dissipation waistcoat for a memory module according to claim 6, characterized in that: The heat dissipation jacket assembly (1) comprises a heat dissipation plate body and a composite heat-conducting layer, the composite heat-conducting layer is arranged on one side of the heat dissipation plate body, and the composite heat-conducting layer is a component made of a first heat-conducting layer (111), a second heat-conducting layer (112), a third heat-conducting layer (113), a fourth heat-conducting layer (114) and a fifth heat-conducting layer (115).

Citation Information

Patent Citations

  • Convenient-to-install heat dissipation waistcoat for solid state disk

    CN212061878U