一种用于纤维丝的散热网结构
By using components such as inserts, springs, and positioning bolts for rapid splicing, the health hazards and insufficient connection strength caused by welding in fiber filament heat dissipation mesh structures are solved, achieving efficient installation and improved stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUZHOU STEITE INTELLIGENT EQUIPMENT CO LTD
- Filing Date
- 2025-07-10
- Publication Date
- 2026-07-17
AI Technical Summary
Existing fiber filament heat dissipation mesh structures rely on welding processes during manufacturing, which leads to health hazards and insufficient connection strength and disassembly capability.
The connecting components, consisting of inserts, springs, push rods, and positioning bolts, enable rapid assembly via slots and guide bevels, avoiding welding and improving installation efficiency and stability.
It achieves weld-free connection, improves installation efficiency and stability, reduces health hazards, and facilitates the disassembly and replacement of heat dissipation mesh.
Smart Images

Figure CN224513693U_ABST
Abstract
Claims
1. A heat dissipation mesh structure for fiber filaments, comprising a heat dissipation mesh body (1), wherein a frame body (2) is provided on one side of the heat dissipation mesh body (1), and the frame body (2) is arranged adjacent to the heat dissipation mesh body (1), characterized in that: The frame body (2) is provided with an installation groove, and the heat dissipation mesh body (1) is installed in the installation groove; a connecting block (3) is provided between adjacent frame bodies (2), and a connecting component (4) is provided on the connecting block (3), and the connecting component (4) is used to connect two adjacent frame bodies (2).
2. The heat sink structure for a fiber according to claim 1, wherein: The connecting component (4) includes a plug (31), and a slot (32) is formed on the frame body (2). One end of the plug (31) is connected to the connecting block (3), and the other end is inserted into the slot (32) of the frame body (2). One end of the plug (31) is formed with a first guide slope (33), which faces the side closer to the frame body (2).
3. The heat sink structure for a fiber according to claim 2, wherein: The insert (31) has a through groove (34), and a spring piece (41) is provided on the side of the insert (31) near the through groove (34). One end of the spring piece (41) is connected to the insert (31), and a positioning block (42) is provided on the spring piece (41). One end of the positioning block (42) is connected to the spring piece (41), and the other end passes through the through groove (34) and abuts against the frame body (2).
4. The heat sink structure for a fiber according to claim 3, wherein: A push rod (43) is provided on the inner side of the insert (31). The push rod (43) is slidably installed in the insert (31). A first push block (44) is provided at one end of the push rod (43) near the spring piece (41), and a second push block (45) is provided at the other end of the push rod (43). A positioning bolt (46) is provided on the insert (31), and one end of the positioning bolt (46) abuts against the second push block (45).
5. The heat sink structure for a fiber according to claim 4, wherein: A positioning plate (47) is provided inside the insert block (31), and a tension spring (471) is provided between the positioning plate (47) and the first push block (44). The two ends of the tension spring (471) are respectively connected to the first push block (44) and the positioning plate (47).
6. The heat sink structure for a fiber according to claim 4, wherein: The second push block (45) has a second guide slope (451) formed on it, and the second guide slope (451) faces the side close to the positioning bolt (46).
7. The heat sink structure for fiber filaments according to claim 1, wherein: A limiting groove (21) is formed on the frame body (2), and a positioning strip (22) is provided in the limiting groove (21). One end of the positioning strip (22) abuts against the heat dissipation mesh body (1). A fixing bolt (23) is provided on the frame body (2), and the fixing bolt (23) is threadedly connected to the frame body (2), and one end of the fixing bolt (23) abuts against the positioning strip (22).