Copper-clad plate carrying tool

By designing a copper-clad laminate handling tool with a multi-handled PVC pad and a grid-like reinforcing rib structure, the problems of bending, friction, and slippage of copper-clad laminates during handling were solved, enabling single-person operation and safe handling.

CN224257272UActive Publication Date: 2026-05-19Q & D CIRCUITS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Q & D CIRCUITS CO LTD
Filing Date
2025-05-23
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Copper-clad laminates are easily bent and rubbed during handling, which can cause scratches on the surface. Manual handling is time-consuming and labor-intensive, and there is a risk that the copper-clad laminates will slip off.

Method used

Design a copper-clad laminate handling tool that uses a multi-handle PVC pad and a grid-like reinforcing rib structure, and is equipped with anti-slip components to ensure single-person operation and prevent the copper-clad laminate from slipping and being damaged by friction.

Benefits of technology

This technology enables single-person operation for handling copper-clad laminates, avoiding bending and friction damage, improving handling stability and safety, and reducing labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a copper-clad plate carrying tool, which relates to the technical field of copper-clad plate production, and comprises a backing plate tool, a copper-clad plate carrying tool and a copper-clad plate carrying tool, the two anti-sliding assemblies are arranged at the two ends of the bottom of the base plate tool correspondingly; the base plate tool is formed by combining internal reinforcing ribs and an external base plate body, the size of the base plate body is smaller than that of a copper-clad plate body, the base plate body is a PVC plate, handle areas are integrally arranged at the two ends of the base plate body, and the two ends of the reinforcing ribs are located in the handle areas. When the copper-clad plate carrying tool is used, a copper-clad plate is directly borne, the copper-clad plate carrying tool can be operated by a single person, the problem that the copper-clad plate is bent and the plate surface is scratched due to friction between the copper-clad plates is solved, a high-strength supporting structure is formed, even if a heavy-weight copper-clad plate is carried, effective supporting can be provided, the problem that a copper-clad plate body slides off the whole carrying tool can be prevented, and the copper-clad plate is prevented from being damaged.
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Description

Technical Field

[0001] This utility model relates to the field of copper clad laminate production technology, and in particular to a copper clad laminate handling tool. Background Technology

[0002] Copper clad laminate (CCL) refers to a substrate coated with a single layer of copper. Common types include single-sided and double-sided CCLs. CCLs are widely used in electronics, communication equipment, and computers. The production process of CCLs requires the transfer and transportation of pre-cut or processed CCL materials.

[0003] Currently, copper clad laminates are typically produced by stacking multiple laminates together, and the handling process is mostly done manually. However, this requires two people to lift them, which wastes manpower. Furthermore, due to the large size of the copper clad laminates, they are prone to bending. The weight of several laminates stacked together is also considerable, and friction between the laminates can easily cause scratches on the surface, leading to the scrapping of the laminates. Therefore, there is an urgent need to design a copper clad laminate handling tool to solve these problems. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies by providing a copper-clad laminate (CCL) handling tool. Its advantages include single-person operation, prevention of CCL bending and friction-induced scratches on the board surface, and prevention of the CCL slipping off the tool, thus avoiding damage to the CCL.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A copper-clad laminate handling tool, comprising:

[0007] A backing plate tool used to support the copper-clad laminate body;

[0008] Two anti-slip components are respectively installed at both ends of the bottom of the pad tool;

[0009] The pad tool is composed of an internal reinforcing rib and an external pad body. The size of the pad body is smaller than that of the copper-clad laminate body. The pad body is made of PVC board. Both ends of the pad body are integrated with handle areas, and both ends of the reinforcing rib are located within the handle areas. A handle area is integrated in the middle of one side of the pad body, and the middle of one side of the reinforcing rib is located within the handle area.

[0010] The above technical solutions result in a multi-handle copper-clad laminate handling tool that can directly support the copper-clad laminate and can be operated by a single person.

[0011] The present invention is further configured such that the reinforcing rib has a grid-like structure, and the reinforcing rib is formed by interlacing and welding transverse reinforcing rods, and the edge of the reinforcing rib is fixed to the inner wall of the pad body.

[0012] The above technical solutions enable the entire copper-clad laminate handling tool to form a high-strength support structure.

[0013] The present invention is further configured such that a protruding strip is fixed on the other side of the pad body, and the thickness of the protruding strip is the same as the thickness of the pad body, and the cross section of the protruding strip is designed as a semi-circle.

[0014] The above technical solution reduces resistance when the tool contacts the bottom of the copper-clad laminate, making it easier to insert the tool and preventing scratches on the board surface.

[0015] The present invention is further configured such that the pad body has multiple hollow grooves, and the position of the hollow grooves is misaligned with the position of the reinforcing rib.

[0016] The above technical solutions reduce the overall weight and decrease the burden of handling.

[0017] The present invention is further configured such that the anti-slip assembly includes a T-shaped plate and an anti-slip frame, and the T-shaped plate is fixed to the inner wall of one end of the reinforcing rib. The T-shaped plate extends out of the pad body into the handle area. The bottom middle of the anti-slip frame is provided with an insertion hole for the T-shaped plate to pass through, and a positioning component is provided between the anti-slip frame and the T-shaped plate.

[0018] The present invention is further configured such that the positioning component includes a cavity formed at the top center of the anti-slip frame, and a vertical hole communicating with the cavity and the insertion port is formed through the middle of the anti-slip frame. A pin is inserted into the inner wall of the vertical hole, a handle is fixed to the top of the pin, and a fixing ring inserted into the cavity is fixed to the outer wall of the pin. A spring is installed at the top of the fixing ring and the top of the cavity. A first positioning hole and a second positioning hole are formed on the T-shaped plate, and the position of the pin corresponds to the position of the first positioning hole and the position of the second positioning hole.

[0019] The above technical solutions aim to prevent the copper-clad laminate from slipping during handling.

[0020] The present invention is further configured such that corner cover plates are fixed to the top of the inner walls at both ends of the anti-slip frame, and the bottom surface of the corner cover plate is clearance-fitted with the upper surface of the copper-clad laminate body.

[0021] The above technical solutions utilize clearance fit to prevent the board from moving up and down, thus improving the anti-slip effect.

[0022] The present invention is further provided that the outer surfaces of the handle area and the pull handle area are provided with anti-slip textures, and the anti-slip textures are in a wavy structure.

[0023] Through the above technical solutions: the anti-slip texture increases hand friction, improves handling stability, and reduces the risk of slipping out of hand.

[0024] The beneficial effects of this utility model are as follows:

[0025] 1. This utility model has handle areas at both ends of the pad body and a pull handle area in the middle of one side, and the outer surface is provided with a wave-shaped anti-slip texture, forming a copper-clad laminate handling tool with a multi-handle design. When in use, it directly supports the copper-clad laminate, can be operated by a single person, and will not cause the copper-clad laminate to bend or the surface of the board to be scratched due to friction between the copper-clad laminates.

[0026] 2. This utility model, through the grid-like reinforcing ribs formed by interlaced welding of transverse reinforcing rods, enables the entire copper-clad laminate handling tool to form a high-strength support structure, which can provide effective support even when handling heavy copper-clad laminates. In addition, the pad body is made of PVC board, which combines lightweight and a certain degree of rigidity, and the overall strength is further improved in conjunction with the reinforcing ribs.

[0027] 3. This utility model, through the provided anti-slip component and positioning component, can adjust the position of the anti-slip frame. When the copper-clad laminate body is on the entire handling tool, the anti-slip frame is adjusted to be close to the copper-clad laminate body to prevent the copper-clad laminate body from slipping off the entire handling tool and avoid damage to the copper-clad laminate. Attached Figure Description

[0028] Figure 1 This is a perspective view of a copper-clad laminate handling tool proposed in this utility model;

[0029] Figure 2 This is a diagram illustrating the usage state of a copper-clad laminate handling tool proposed in this utility model;

[0030] Figure 3 This is a schematic diagram of the reinforcing ribs and T-shaped plate structure of a copper-clad laminate handling tool proposed in this utility model;

[0031] Figure 4 This is a schematic diagram of the anti-slip drop frame and corner cover plate structure of a copper-clad laminate handling tool proposed in this utility model;

[0032] Figure 5 This is a schematic diagram of the cavity and spring structure of a copper-clad laminate handling tool proposed in this utility model.

[0033] In the diagram: 1. Pad tool; 101. Pad body; 102. Reinforcing rib; 103. Raised strip; 104. Hollowed-out groove; 105. Handle area; 106. Handle area; 2. Anti-slip assembly; 201. T-shaped plate; 202. First positioning hole; 203. Second positioning hole; 204. Anti-slip frame; 205. Pin; 206. Handle rod; 207. Socket; 208. Corner cover plate; 209. Cavity; 210. Fixing ring; 211. Spring; 3. Copper-clad laminate body. Detailed Implementation

[0034] The technical solution of this utility model will be further described in detail below with reference to specific embodiments.

[0035] Reference Figures 1-5 This utility model provides a copper-clad laminate handling tool, comprising:

[0036] Pad tool 1, which is used to support the copper clad laminate body 3;

[0037] Two anti-slip components 2 are respectively installed at both ends of the bottom of the pad tool 1;

[0038] The pad tool 1 is composed of an internal reinforcing rib 102 and an external pad body 101. The size of the pad body 101 is smaller than that of the copper-clad laminate body 3. The pad body 101 is made of PVC board. Both ends of the pad body 101 have integrated handle areas 105, and both ends of the reinforcing rib 102 are located within the handle areas 105. A handle area 106 is integrated in the middle of one side of the pad body 101, and the middle of one side of the reinforcing rib 102 is located within the handle area 106. The outer surfaces of the handle areas 105 and 106 are provided with anti-slip textures, and the anti-slip textures have a wavy structure. The reinforcing rib 102 has a mesh structure, which consists of transverse reinforcing bars and transverse reinforcing rods. The copper-clad laminate is constructed by staggered welding, with the edges of the reinforcing ribs 102 fixed to the inner wall of the pad body 101. Handle areas 105 are provided at both ends of the pad body 101, and a pull handle area 106 is provided in the middle of one side, forming a multi-handle copper-clad laminate handling tool. When in use, it directly supports the copper-clad laminate, can be operated by a single person, and will not cause the copper-clad laminate to bend or the surface of the board to be scratched due to friction between the copper-clad laminates. The grid-like reinforcing ribs 102 make the entire copper-clad laminate handling tool form a high-strength support structure, which can provide effective support even when handling heavy copper-clad laminates. Furthermore, the pad body 101 is made of PVC board, which combines lightweight and a certain degree of rigidity, and together with the reinforcing ribs 102, it further enhances the overall strength.

[0039] To ensure the tool can be smoothly inserted under the copper-clad board, refer to... Figure 3A protrusion 103 is fixed on the other side of the pad body 101, and the thickness of the protrusion 103 is the same as the thickness of the pad body 101. The cross section of the protrusion 103 is designed as a semi-circle. The protrusion 103 is made of rubber material. When the tool contacts the bottom of the copper-clad board, the resistance can be reduced by the protrusion 103, making it easier to insert the entire handling tool and avoiding scratching the board surface.

[0040] To reduce the burden of handling, refer to Figure 1 and Figure 3 The pad body 101 has multiple hollow grooves 104, and the position of the hollow grooves 104 is offset from the position of the reinforcing ribs 102, which reduces the overall weight and the burden of handling without affecting the structural strength.

[0041] To prevent the copper-clad laminate from slipping, refer to... Figures 1-5 The anti-slip assembly 2 includes a T-shaped plate 201 and an anti-slip frame 204. The T-shaped plate 201 is fixed to the inner wall of one end of the reinforcing rib 102. The T-shaped plate 201 extends from the pad body 101 into the handle area 105. The bottom center of the anti-slip frame 204 has an insertion slot 207 for the T-shaped plate 201 to pass through. A positioning assembly is provided between the anti-slip frame 204 and the T-shaped plate 201. The positioning assembly includes a cavity 209 opened at the top center of the anti-slip frame 204. A vertical hole is opened through the center of the anti-slip frame 204, connecting the cavity 209 and the insertion slot 207. A pin 205 is inserted into the inner wall of the vertical hole. A handle 206 is fixed to the top of the pin 205. A retaining ring 210 is fixed to the outer wall of the pin 205 and inserted into the cavity 209. A spring 2 is installed on the top of the retaining ring 210 and the top of the cavity 209. 11. The T-shaped plate 201 is provided with a first positioning hole 202 and a second positioning hole 203, and the position of the pin 205 corresponds to the position of the first positioning hole 202 and the position of the second positioning hole 203. The top of the inner walls of both ends of the anti-slip bracket 204 are fixed with corner cover plates 208, and the bottom surface of the corner cover plate 208 is in clearance fit with the upper surface of the copper-clad laminate body 3. Pulling up the handle 206 in the anti-slip assembly 2 will cause the pin 205 to disengage from the positioning hole on the T-shaped plate 201. The anti-slip bracket 204 is slid left and right along the T-shaped plate 201. After adjusting to a suitable height, the handle 206 is released. The spring 211 pushes the fixing ring 210 and the pin 205 to reset and insert into the corresponding first positioning hole 202 or second positioning hole 203 to fix the position of the anti-slip bracket 204 and prevent the copper-clad laminate from slipping during transportation.

[0042] Working principle: When using, first determine the number of copper-clad laminates to be moved, then lift one corner of each laminate, and slowly insert the tool under the laminate. Then pull the handle area 106 to pull the tool and the laminate out together. Next, move the entire tool and laminate through the handle area 105. Before moving, pull the handle rod 206 in the anti-slip assembly 2 upwards to disengage the pin 205 from the first positioning hole 202 on the T-shaped plate 201. Slide the anti-slip bracket 204 left and right along the T-shaped plate 201 and adjust it to the position of the second positioning hole 203. Then release the handle rod 206. The spring 211 pushes the fixing ring 210 and the pin 205 to reset, causing the pin 205 to insert into the second positioning hole 203, preventing the copper-clad laminate from slipping during the moving process.

[0043] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A copper-clad board handling tool, characterized by, include: A pad tool (1) is used to support the copper clad laminate body (3). Two anti-slip components (2) are respectively disposed at the bottom ends of the pad tool (1); The pad tool (1) is composed of an internal reinforcing rib (102) and an external pad body (101). The size of the pad body (101) is smaller than that of the copper-clad laminate body (3). The pad body (101) is made of PVC board. Both ends of the pad body (101) are integrated with handle areas (105), and both ends of the reinforcing rib (102) are located in the handle areas (105). A handle area (106) is integrated in the middle of one side of the pad body (101), and the middle of one side of the reinforcing rib (102) is located in the handle area (106).

2. The copper-clad board handling tool according to claim 1, wherein The reinforcing rib (102) has a grid structure and is formed by interlacing horizontal reinforcing bars. The edge of the reinforcing rib (102) is fixed to the inner wall of the pad body (101).

3. The copper-clad board handling tool of claim 2, wherein, A protruding strip (103) is fixed on the other side of the pad body (101), and the thickness of the protruding strip (103) is the same as the thickness of the pad body (101). The cross section of the protruding strip (103) is designed as a semi-circle.

4. The copper-clad board handling tool of claim 3, wherein The pad body (101) has multiple hollow grooves (104), and the position of the hollow grooves (104) is misaligned with the position of the reinforcing ribs (102).

5. The copper-clad board handling tool of claim 1, wherein, The anti-slip assembly (2) includes a T-shaped plate (201) and an anti-slip frame (204). The T-shaped plate (201) is fixed to the inner wall of one end of the reinforcing rib (102). The T-shaped plate (201) extends out of the pad body (101) into the handle area (105). The bottom middle of the anti-slip frame (204) is provided with an insertion slot (207) for the T-shaped plate (201) to pass through. A positioning component is provided between the anti-slip frame (204) and the T-shaped plate (201).

6. The copper-clad board handling tool of claim 5, wherein, The positioning component includes a cavity (209) formed at the top of the middle of the anti-slip frame (204), and a vertical hole is formed through the middle of the anti-slip frame (204) to connect the cavity (209) and the socket (207). A pin (205) is inserted into the inner wall of the vertical hole. A handle (206) is fixed to the top of the pin (205), and a fixing ring (210) is fixed to the outer wall of the pin (205) and inserted into the cavity (209). A spring (211) is installed on the top of the fixing ring (210) and the top of the cavity (209). A first positioning hole (202) and a second positioning hole (203) are formed on the T-shaped plate (201), and the position of the pin (205) corresponds to the position of the first positioning hole (202) and the position of the second positioning hole (203).

7. The copper-clad board handling tool of claim 6, wherein, The top of the inner walls at both ends of the anti-slip drop frame (204) is fixed with corner cover plates (208), and the bottom surface of the corner cover plate (208) is fitted with the upper surface of the copper clad laminate body (3) with a clearance.

8. The copper-clad board handling tool of claim 5, wherein, The outer surfaces of the handle area (105) and the pull handle area (106) are provided with anti-slip textures, and the anti-slip textures have a wavy structure.