An aluminum sheet assembly in a computer heat dissipation module

By designing detachable secondary aluminum sheets and snap-fit ​​components in the aluminum sheet assembly, the waste problem caused by fixed heat dissipation module specifications is solved, and the heat dissipation area is adjustable and the heat dissipation effect is improved.

CN224519261UActive Publication Date: 2026-07-17SUZHOU WANXIANG TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU WANXIANG TECH CO LTD
Filing Date
2025-07-09
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing cooling module specifications are fixed, which means that it needs to be replaced when the computer specifications change, resulting in waste.

Method used

An aluminum sheet assembly was designed. Insertion slots are provided on both sides of the aluminum sheet body. The auxiliary aluminum sheet is assembled with the aluminum sheet body through a snap-fit ​​assembly. The auxiliary aluminum sheet can be detachably expanded by using a 'T' block, a spring, a sliding block and an 'L' buckle to increase the heat dissipation area.

Benefits of technology

The area of ​​the heat dissipation module is adjustable, which improves the heat dissipation effect and avoids unnecessary waste.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224519261U_ABST
    Figure CN224519261U_ABST
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Abstract

This utility model provides an aluminum fin assembly for a computer heat dissipation module, relating to the technical field of computer heat dissipation modules. It includes an aluminum fin body with insertion slots on both outer walls. A secondary aluminum fin is mounted on the aluminum fin body through these slots. Both the secondary aluminum fin and the bottom surface of the aluminum fin body are provided with heat dissipation fins. A locking assembly is installed on the side wall of the secondary aluminum fin. Assembly holes are formed on both sides of the insertion slots on the side wall of the aluminum fin body. The secondary aluminum fin is assembled and installed with the aluminum fin body through the locking assembly. This aluminum fin assembly features a novel overall design and simple structure. The simple locking assembly enables the effective assembly of multiple heat dissipation modules, expanding the heat dissipation area and indirectly increasing the heat dissipation effect.
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Description

Technical Field

[0001] This utility model belongs to the technical field of computer heat dissipation module, and more specifically, it relates to an aluminum sheet assembly in a computer heat dissipation module. Background Technology

[0002] The heat dissipation module is an essential component of a computer. The heat sink is the core component of the heat dissipation module. The heat sink is installed on the CPU and has heat pipes on it to conduct heat away from the CPU. The heat is then dissipated through the fins in the heat dissipation module. The heat dissipation module also has a fan that exchanges heat between the cool air outside and the heat sink fins, thereby cooling the CPU.

[0003] Based on the above, the inventors have discovered the following problems: computer heat dissipation modules vary depending on the size of the computer. The overall specifications of existing heat dissipation modules are relatively fixed. When a computer needs better heat dissipation, it is usually necessary to replace the current heat dissipation module, which will cause unnecessary waste.

[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and provided an aluminum sheet component in a computer heat dissipation module in order to achieve a more practical value. Utility Model Content

[0005] The purpose and function of the aluminum sheet assembly in the computer heat dissipation module of this utility model are achieved by the following specific technical means:

[0006] An aluminum fin assembly in a computer heat dissipation module includes an aluminum fin body. Insertion slots are provided on both outer walls of the aluminum fin body. A secondary aluminum fin is assembled onto the aluminum fin body through the insertion slots. Both the secondary aluminum fin and the bottom surface of the aluminum fin body are provided with heat dissipation fins. A locking assembly is installed on the side wall of the secondary aluminum fin. Assembly holes are formed on both sides of the insertion slots on the side walls of the aluminum fin body, and the secondary aluminum fin is assembled and installed with the aluminum fin body through the locking assembly.

[0007] Furthermore, an insertion plate is installed on the side wall of the secondary aluminum sheet, and the size of the insertion plate is adapted to the size of the insertion slot.

[0008] Furthermore, the assembly hole group consists of a hole groove one and a hole groove two, wherein the size of hole groove one is larger than the size of hole groove two.

[0009] Furthermore, the engaging assembly includes a chamber formed on the side wall of the secondary aluminum sheet and an "L"-shaped buckle. A sliding groove is formed on one side of the chamber, and a sliding block is slidably installed in the chamber. A groove is formed on one side of the sliding block, and a limiting groove is formed in the groove. A "T"-shaped block is slidably installed in the limiting groove. A spring is installed on one side of the "T"-shaped block in the groove, and one end of the "T"-shaped block is connected to the side wall of the chamber.

[0010] Compared with the prior art, the present invention has the following beneficial effects:

[0011] This invention utilizes a T-shaped block in conjunction with a spring, a sliding block, an L-shaped buckle, and slots one and two. When an increased heat dissipation area is required, the secondary aluminum sheet is inserted into the side wall of the aluminum sheet body. First, the L-shaped buckles are moved closer together, and then the L-shaped buckles are inserted into slot one. As the L-shaped buckles move, the spring is compressed. After being inserted to a certain position, the L-shaped buckles are released, and the spring pushes the L-shaped buckles to move in the opposite direction. During this movement, the end of the L-shaped buckle engages in slot two, and the insertion slot and insertion plate are simultaneously connected and installed. Through the above operations, the area of ​​the heat dissipation module can be increased, indirectly improving the overall heat dissipation effect. Attached Figure Description

[0012] Figure 1 This is a three-dimensional schematic diagram of an aluminum sheet assembly in a computer heat dissipation module according to the present invention.

[0013] Figure 2 This utility model relates to an aluminum sheet assembly in a computer heat dissipation module. Figure 1 A magnified diagram of point A in the diagram.

[0014] Figure 3 This is a planar schematic diagram of the aluminum sheet assembly locking component in a computer heat dissipation module according to this utility model.

[0015] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0016] 1. Aluminum sheet body; 2. Heat dissipation fins; 3. Secondary aluminum sheet; 4. Hole slot two; 5. Hole slot one; 6. "L" shaped buckle; 7. Insertion slot; 8. Insertion plate; 9. Chamber; 10. "T" shaped block; 11. Sliding block; 12. Spring; 13. Sliding groove. Detailed Implementation

[0017] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0018] In the description of this utility model, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. In addition, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0019] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0020] Example:

[0021] As attached Figure 1 To be continued Figure 3 As shown:

[0022] This utility model provides an aluminum sheet assembly in a computer heat dissipation module, including an aluminum sheet body 1. The outer walls on both sides of the aluminum sheet body 1 are respectively provided with insertion slots 7. The aluminum sheet body 1 is equipped with a secondary aluminum sheet 3 through the insertion slots 7. Both the secondary aluminum sheet 3 and the bottom end face of the aluminum sheet body 1 are provided with heat dissipation fins 2. A locking assembly is installed on the side wall of the secondary aluminum sheet 3. Assembly holes are opened on both sides of the insertion slots 7 on the side wall of the aluminum sheet body 1. The secondary aluminum sheet 3 is assembled and installed with the aluminum sheet body 1 through the locking assembly.

[0023] The auxiliary aluminum sheet 3 is provided with an insertion plate 8 on its side wall, and the size of the insertion plate 8 is adapted to the size of the insertion slot 7.

[0024] The assembly hole group consists of hole slot 5 and hole slot 4, wherein the size of hole slot 5 is larger than the size of hole slot 4.

[0025] The engaging assembly includes a chamber 9 and an "L"-shaped buckle 6 formed on the side wall of the secondary aluminum sheet 3. A sliding groove 13 is formed on one side of the chamber 9. A sliding block 11 is slidably installed inside the chamber 9. A groove is formed on one side of the sliding block 11, and a limiting groove is formed within the groove. A "T"-shaped block 10 is slidably installed within the limiting groove. A spring 12 is installed on one side of the "T"-shaped block 10 within the groove, and one end of the "T"-shaped block 10 is connected to the side wall of the chamber 9. The "T"-shaped block 10 works in conjunction with the spring 12, the sliding block 11, the "L"-shaped buckle 6, the first hole groove 5, and the second hole groove 4. When it is necessary to expand the heat dissipation area, insert the secondary aluminum sheet 2 into the side wall of the aluminum sheet body 1. First, move the "L" shaped buckles 6 closer together, and then insert the "L" shaped buckles 6 into the slot 1 5. When the "L" shaped buckles 6 move, the spring 12 will be compressed. When it is inserted to a certain position, release the "L" shaped buckles 6. At this time, the spring 12 will push the "L" shaped buckles 6 to move in the opposite direction. During the movement, the end of the "L" shaped buckles 6 will engage in the slot 2 4. At the same time, the insertion slot 7 and the insertion plate 8 are connected and installed. Through the above operation, the area of ​​the heat dissipation module can be expanded, which can indirectly improve the overall heat dissipation effect.

[0026] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. An aluminum fin assembly in a computer heat dissipation module, comprising an aluminum fin body (1), characterized in that: The aluminum sheet body (1) has insertion slots (7) on both sides of its outer wall. The aluminum sheet body (1) is fitted with a secondary aluminum sheet (3) through the insertion slots (7). Both the secondary aluminum sheet (3) and the aluminum sheet body (1) have heat dissipation fins (2) on their bottom surfaces. The secondary aluminum sheet (3) is fitted with a snap-fit ​​assembly on its side wall. The two sides of the insertion slots (7) are provided with assembly holes on the side walls of the aluminum sheet body (1). The secondary aluminum sheet (3) is assembled and installed with the aluminum sheet body (1) through the snap-fit ​​assembly.

2. The aluminum sheet assembly in a computer heat dissipation module as described in claim 1, characterized in that: An insertion plate (8) is installed on the side wall of the secondary aluminum sheet (3), and the size of the insertion plate (8) is adapted to the size of the insertion slot (7).

3. The aluminum sheet assembly in a computer heat dissipation module as described in claim 1, characterized in that: The assembly hole group consists of hole slot one (5) and hole slot two (4), and the size of hole slot one (5) is larger than the size of hole slot two (4).

4. The aluminum sheet assembly in a computer heat dissipation module as described in claim 1, characterized in that: The engaging assembly includes a chamber (9) and an "L"-shaped buckle (6) formed on the side wall of the secondary aluminum sheet (3). A sliding groove (13) is formed on one side of the chamber (9). A sliding block (11) is slidably installed in the chamber (9). A groove is formed on one side of the sliding block (11). A limiting groove is formed in the groove. A "T"-shaped block (10) is slidably installed in the limiting groove. A spring (12) is installed on one side of the "T"-shaped block (10) in the groove. One end of the "T"-shaped block (10) is connected to the side wall of the chamber (9).