Memory bank disassembling jig
By designing a memory module disassembly fixture with an arched and bayonet structure, and utilizing the principle of elastic deformation to assist the memory clips in detaching from the memory module, the problem of finger pain during memory module disassembly is solved, achieving a labor-saving and quick disassembly effect.
Patent Information
- Application Number
- CN202423226448.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2034-12-26
AI Technical Summary
The memory modules are tightly secured in the memory slots, requiring considerable force to remove them, which causes finger pain and affects the efficiency of batch removal.
A memory module disassembly fixture was designed, which adopts an arched structure and a bayonet structure. It uses the principle of elastic deformation to help the memory clips detach from the memory module, avoiding direct forced prying and using the lever principle to disassemble in a labor-saving manner.
It enables effortless and quick memory module removal, avoids finger pain for operators, improves removal efficiency, and protects the memory clips from damage.
Smart Images

Figure CN223863680U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of servers, specifically to the disassembly of server memory. Background Technology
[0002] In servers, memory modules are secured in memory slots on the motherboard, with latches on both sides of the slots. When a memory module is inserted into the slot, its base engages with the latches, causing them to move closer to the module. Once fully engaged, the latches lock into slots on the side of the memory module, securing it firmly in place. To remove a memory module, the operator uses their fingers to apply force to the latches, moving them away from the module. The base of the latches lifts the module, allowing it to detach from the slot. Because the memory modules are tightly secured, considerable force is required to remove them. For bulk removal of memory modules, this can cause finger pain and hinders the continuous removal process. Utility Model Content
[0003] The technical problem solved by this utility model is that because the memory modules are tightly secured in the memory slot, the operator needs to apply a large force to the memory clips to remove the memory modules from the memory slot. For batch disassembly of memory modules, the operator's hands and fingers will be sore, which is not conducive to the continuous disassembly work.
[0004] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a memory module disassembly fixture, including a strip-shaped main structure and a bayonet structure set at the front end of the main structure. The bayonet structure includes a pressing part formed by bending the main structure and a bending part welded to the main structure. The angle between the bending part and the main structure is less than 90 degrees, and the side of the bending part facing the pressing part is provided with a toothed structure.
[0005] According to the above technical solution, the latch structure engages with the pressing part of the memory card clip. That is, the latch structure is locked outside the pressing part of the memory card clip, the toothed structure of the prying part engages with the toothed structure on the pressing part, and the abutting part abuts against the part of the memory card clip located below the pressing part. Since the angle between the prying part and the main structure is less than 90 degrees, and the toothed structure of the prying part engages with the toothed structure on the pressing part, when the operator pries the main structure outward, that is, pries the disassembly fixture away from the memory module, the latch structure can pry the memory card clip away from the memory module, causing the memory card clip to disengage from the latching groove on the side of the memory module. Furthermore, the memory card clip pries up the memory module, lifting it out of the memory slot.
[0006] The operator uses two disassembly jigs, holding each jig with both hands. The two jigs work simultaneously on the memory clips on both sides of the memory module, prying them outward to allow the memory module to detach smoothly from the memory slot on the motherboard.
[0007] This utility model's disassembly fixture can assist operators in removing memory modules from the motherboard. It not only avoids injury to the operator's hands, but also uses the lever principle to pry open the memory clips, making it convenient, labor-saving, and quick, thus improving work efficiency.
[0008] The main structure is bent into an arch shape, with a latching structure located at one end of the arch. When the latching structure is engaged with the pressing part of the memory card, the operator applies force to the other end of the arch. The arch easily undergoes elastic deformation, causing the two ends of the arch to tend to move closer together, accumulating elastic potential energy. When this elastic potential energy overcomes the force between the memory card and the memory module, the memory card begins to move away from the memory module, and the memory module begins to rise and detach from the memory slot. This invention utilizes the elastic deformation of the arch structure to allow the entire latching structure to pry open the memory card, enabling the memory card to detach from the memory module along its own rotational path, rather than being forcibly or rigidly pried open. This effectively avoids damage to the memory card, such as breakage. If the main structure of this utility model does not have an arched structure but adopts a straight rod structure, then when the operator applies force to the main structure, the main structure may swing around the pressing part as the rotation center, the bending part acts on the pressing part of the memory card buckle, the memory card buckle as a whole does not move away from the memory stick, and the pressing part of the memory card buckle may be broken.
[0009] The connection between the arched structure and the bayonet structure is an arc-shaped structure. The arc-shaped structure is prone to elastic deformation. This elastic deformation helps the bayonet structure to pry open the memory card and make the memory card move away from the memory module along its original rotation trajectory.
[0010] The other end of the arched structure connects to the grip section, which has a handle. The handle is the part that the operator grips. The arched design allows for a sufficiently large space between the handle and the memory module, providing ample room for the operator's hands to operate. Attached Figure Description
[0011] The present invention will be further described below with reference to the accompanying drawings:
[0012] Figure 1 A schematic diagram of a jig for disassembling memory modules;
[0013] Figure 2 Front view of the memory module disassembly fixture;
[0014] Figure 3 for Figure 2 The right view;
[0015] Figure 4 A schematic diagram of a jig used to pry open the memory clip 60.
[0016] Explanation of symbols in the diagram:
[0017] 10. Bayonet structure; 11. Pressing part; 12. Bending part; 13. Toothed structure; A. Angle between the bending part and the main structure;
[0018] 20. Arched structure; 21. Arc-shaped structure;
[0019] 30. Holding part;
[0020] 40. Handle;
[0021] 50. Memory module; 51. SIM card slot;
[0022] 60. Memory clip; 61. Pressing part; 62. Toothed structure on the pressing part. Detailed Implementation
[0023] Combination Figure 1 , Figure 2 The memory module disassembly fixture includes a strip-shaped main structure and a bayonet structure 10 set at the front end of the main structure. The bayonet structure includes a pressing part 11 formed by bending the main structure and a bending part 12 welded to the main structure. The angle A between the bending part and the main structure is less than 90 degrees. A toothed structure 13 is provided on the side of the bending part facing the pressing part.
[0024] The main structure 13 is bent into an arched structure 20, and the bayonet structure 10 is located at one end of the arched structure.
[0025] The connection between the arched structure 20 and the bayonet structure 10 is an arc-shaped structure 21.
[0026] The other end of the arched structure 20 is connected to the grip portion 30, which has a handle 40.
[0027] The operator uses two disassembly jigs, holding the handles 40 of the two jigs with both hands. The two jigs simultaneously act on the memory clips 60 on both sides of the memory module 50.
[0028] refer to Figure 4In any disassembly fixture, the latch structure 10 engages with the pressing portion 61 of the memory clip, that is, the latch structure 10 is locked outside the pressing portion 61 of the memory clip. The toothed structure 13 of the prying part engages with the toothed structure 62 on the pressing portion, and the pressing portion 11 abuts against the portion of the memory clip 60 located below the pressing portion 61. Then, the operator pries the main structure outward, that is, pries the disassembly fixture away from the memory module 50. The arched structure 20 undergoes elastic deformation, and the elastic deformation causes the two ends of the arched structure to tend to move closer together, accumulating elastic potential energy. When the elastic potential energy overcomes the force between the memory clip 60 and the memory module 50, the memory clip 60 begins to move away from the memory module 50, and the memory module begins to rise and detach from the memory slot. This utility model uses an arched structure 20 that undergoes elastic deformation, causing the entire latch structure 10 to bend the memory clip 60. This allows the memory clip 60 to detach from the memory module 50 along its own rotational path, rather than forcibly or rigidly bending the memory clip 60. This effectively prevents damage to the memory clip 60.
[0029] The latch structure 10 moves the memory clip 60 away from the memory module 50, disengages the memory clip from the latching slot 51 on the side of the memory module, and pries up the memory module 50, causing the memory module to be lifted and disengaged from the memory slot.
[0030] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A memory module disassembly fixture, comprising a strip-shaped main structure and a bayonet structure (10) disposed at the front end of the main structure, characterized in that: The bayonet structure includes a pressing part (11) formed by bending the main structure and a bending part (12) welded to the main structure. The angle (A) between the bending part and the main structure is less than 90 degrees, and the side of the bending part facing the pressing part is provided with a toothed structure (13).
2. The memory module disassembly fixture as described in claim 1, characterized in that: The main structure is bent into an arched structure (20), and the bayonet structure (10) is located at one end of the arched structure.
3. The memory module disassembly fixture as described in claim 2, characterized in that: The connection between the arched structure (20) and the bayonet structure (10) is an arc-shaped structure (21).
4. The memory module disassembly fixture as described in claim 2, characterized in that: The other end of the arched structure (20) is connected to the grip part (30), which is provided with a handle (40).