Multi-station cutting equipment for aluminum-based copper-clad plate

By integrating components such as a fixed plate, motor, worm gear, worm wheel, dust collection box, and exhaust fan, the multi-station cutting equipment solves the dust collection problem, achieves stable equipment operation and health protection, and improves production efficiency.

CN224254723UActive Publication Date: 2026-05-19ZHONGSHAN JUMEIXIN ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN JUMEIXIN ELECTRONIC TECH CO LTD
Filing Date
2025-06-13
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing aluminum-based copper clad laminate cutting equipment has difficulty effectively collecting the dust generated during cutting and grinding, leading to unstable equipment operation and health risks.

Method used

A multi-station cutting device was designed, integrating a fixed plate, motor, worm gear, worm wheel, dust collection box, exhaust fan, conveying pipe and collection box. The motor drives the worm gear to rotate, which in turn moves the arc plate and dust collection box. Combined with the exhaust fan, dust is sucked in and transported to the collection box, thus achieving centralized dust collection.

Benefits of technology

Effectively prevents dust diffusion, ensures stable equipment operation, reduces health risks, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224254723U_ABST
Patent Text Reader

Abstract

The utility model provides multi-station cutting equipment for an aluminum-based copper-clad plate, and relates to the field of copper-clad plate cutting. Comprising a base, a first fixing column is fixedly connected to the upper surface of the base, a cutting machine is fixedly connected to the inner side of the first fixing column, and a grinding machine is fixedly connected to the inner side of the first fixing column. According to the multi-station cutting equipment, the fixing plate, the motor, the worm, the arc-shaped plate, the worm gear, the dust collecting box, the exhaust fan, the conveying pipe and the collecting box are used in cooperation, the motor drives the worm to rotate, the worm and the worm gear are in meshing transmission, the arc-shaped plate and the dust collecting box fixed to the lower surface of the arc-shaped plate are driven to rotate or move, and therefore the position of the dust collecting box can be flexibly adjusted; the dust collection device is accurately positioned near the working area of the cutting machine and the grinding machine, it is ensured that dust is sucked in time when generated, the dust is prevented from being diffused into air or accumulated on the surface of equipment, the situation that dust accumulation affects equipment operation is prevented, the health risk is reduced, and dust generated during cutting and grinding is collected.
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Description

Technical Field

[0001] This utility model relates to a multi-station cutting device, specifically a multi-station cutting device for aluminum-based copper-clad laminates, belonging to the field of copper-clad laminate cutting technology. Background Technology

[0002] Aluminum-based copper clad laminate, also known as aluminum substrate, is a type of raw material. It is a plate-shaped material made by impregnating electronic fiberglass cloth or other reinforcing materials with resin or single resin as an insulating adhesive layer, covering one or both sides with copper foil, and then hot-pressing it. It is called copper foil laminated aluminum substrate, or simply aluminum-based copper clad laminate.

[0003] A search revealed a multi-station cutting device for aluminum-based copper clad laminates disclosed in Chinese Patent Publication No. CN210819789U. This device, through a drive assembly, a cutting and grinding assembly, and a limiting assembly mounted on the support frame surface, facilitates the precise cutting, grinding, and transportation of the copper clad laminate edges, improving cutting efficiency. Simultaneously, a pressure-limiting belt fitted onto the outer surface of the driven pressure-limiting roller increases the contact area between the pressure-limiting belt and the upper surface of the copper clad laminate as it moves along the drive roller, enhancing transportation stability and facilitating cutting and grinding of the moving copper clad laminate.

[0004] While the above solutions facilitate the cutting, grinding, and transportation of copper-clad laminate edges to a fixed length, thus improving the efficiency of copper-clad laminate cutting, the cutting equipment in the aforementioned patents has difficulty collecting the dust generated during cutting and grinding. The accumulation of metal dust on the equipment surface during cutting and grinding may affect the operation of the equipment and even pose health risks to workers. Therefore, we provide a multi-station cutting equipment for aluminum-based copper-clad laminates to solve the above problems. Utility Model Content

[0005] The purpose of this invention is to provide a multi-station cutting device for aluminum-based copper-clad laminates to solve the above-mentioned problems, thereby addressing the difficulty in collecting dust generated during cutting and grinding in the prior art.

[0006] This utility model is achieved through the following technical solution: a multi-station cutting device for aluminum-based copper-clad laminates, including a base, a first fixing column fixedly connected to the upper surface of the base, a cutting machine fixedly connected to the inner side of the first fixing column, and a grinding machine fixedly connected to the inner side of the first fixing column.

[0007] A second fixed column is fixedly connected to the upper surface of the first fixed column, and a fixed frame is fixedly connected to the upper surface of the second fixed column. A second conveying roller is rotatably connected to the lower surface of the fixed frame. A dust collection mechanism is provided on one side of the fixed frame. The dust collection mechanism includes a fixed plate fixedly connected to one side of the fixed frame. A motor is fixedly connected to the lower surface of the fixed plate. A worm gear is fixedly connected to the output shaft of the motor. A worm wheel meshes with the outer surface of the worm gear. An arc-shaped plate is fixedly connected to the lower surface of the worm wheel. A dust collection box is fixedly connected to the lower surface of the arc-shaped plate.

[0008] Preferably, a first baffle is fixedly connected to the upper surface of the base, and a first conveying roller is rotatably connected to the inner wall of the first baffle. The first conveying roller can drive the aluminum-based copper-clad laminate to move, and the first baffle can block one side of the aluminum-based copper-clad laminate, which facilitates the cutting and polishing of the aluminum-based copper-clad laminate.

[0009] Preferably, the lower surface of the fixed plate is slidably connected to the outer surface of the arc plate, and the outlet of the dust collection box is fixedly connected to an exhaust fan, which can extract the dust inside the dust collection box and then transport the dust.

[0010] Preferably, the outlet of the exhaust fan is fixedly connected to a conveying pipe, and the outlet of the conveying pipe is fixedly connected to a collection box. The dust drawn by the exhaust fan is transferred to the collection box through the conveying pipe for convenient centralized collection.

[0011] Preferably, the lower surface of the fixed plate is rotatably connected to one end of the worm gear, the lower surface of the collection box is fixedly connected to the upper surface of the base, the worm gear is installed inside the fixed plate, and the worm gear can rotate inside the fixed plate to facilitate adjustment of the dust collection angle of the dust collection box.

[0012] Preferably, a groove is provided on the inner side of the second fixing column, and a second baffle is slidably connected inside the groove. The groove provided on the inner side of the second fixing column allows the second baffle to slide back and forth inside the groove.

[0013] Preferably, an electric telescopic rod is fixedly connected to one side of the second baffle. The fixed end of the electric telescopic rod is fixedly connected to the upper surface of the base. The electric telescopic rod is installed on the base. The electric telescopic rod can push the second baffle to squeeze the aluminum-based copper-clad laminate, preventing loosening during cutting.

[0014] This utility model provides a multi-station cutting device for aluminum-based copper-clad laminates, which has the following beneficial effects:

[0015] 1. This multi-station cutting equipment utilizes a combination of a fixed plate, motor, worm gear, arc plate, worm wheel, dust collection box, exhaust fan, conveying pipe, and collection box. The motor drives the worm gear to rotate, and the worm gear meshes with the worm wheel to drive the arc plate and the dust collection box fixed on its lower surface to rotate or move. This allows the position of the dust collection box to be flexibly adjusted and precisely positioned near the working areas of the cutting and grinding machines, ensuring that dust is promptly sucked in when it is generated, preventing dust from spreading into the air or accumulating on the equipment surface. This prevents dust accumulation from affecting equipment operation and reduces health risks, thus achieving the collection of dust generated during cutting and grinding.

[0016] 2. This multi-station cutting equipment utilizes a combination of a first fixed column, a first baffle, a cutting machine, a grinding machine, a first conveying roller, a second fixed column, a chute, an electric telescopic rod, a second baffle, a fixed frame, and a second conveying roller. A closed-loop transmission system is constructed using double-layer conveying rollers and adjustable baffles to ensure the entire process of material handling is controlled. The second baffle, driven by the electric telescopic rod, achieves dynamic clamping, directly solving stability issues during cutting and grinding, reducing process changeover time, avoiding manual repositioning, and ensuring precise clamping to reduce cutting errors. Attached Figure Description

[0017] Figure 1 This is a frontal three-dimensional structural diagram of the present invention;

[0018] Figure 2 This is a schematic diagram of the overall three-dimensional structure of the rear view of this utility model;

[0019] Figure 3 This is a three-dimensional structural diagram of the cutting device of this utility model;

[0020] Figure 4 This is a three-dimensional structural diagram of the conveying device of this utility model;

[0021] Figure 5 This is a three-dimensional structural diagram of the dust collection mechanism of this utility model;

[0022] Figure 6 This is an exploded structural diagram of the angle adjustment device of this utility model.

[0023] [Explanation of Key Component Symbols]

[0024] 1. Base; 2. First fixed column; 3. First baffle; 4. Cutting machine; 5. Grinding machine; 6. First conveying roller;

[0025] 7. Dust collection mechanism; 701. Fixing plate; 702. Motor; 703. Worm gear; 704. Curved plate; 705. Worm wheel; 706. Dust collection box; 707. Exhaust fan; 708. Conveying pipe; 709. Collection box;

[0026] 8. Second fixed column; 9. Slide groove; 10. Electric telescopic rod; 11. Second baffle; 12. Fixed frame; 13. Second conveying roller. Detailed Implementation

[0027] This utility model embodiment provides a multi-station cutting device for aluminum-based copper-clad laminates.

[0028] Please see Figure 1 and Figure 3 The system includes a base 1, a first baffle 3 fixedly connected to the upper surface of the base 1, a first conveying roller 6 rotatably connected to the inner wall of the first baffle 3, and the first baffle 3 installed on the base 1. When the aluminum-based copper-clad laminate is conveyed, the first baffle 3 can block one side of the aluminum-based copper-clad laminate. The first conveying roller 6 is installed on the first baffle 3 and drives the aluminum-based copper-clad laminate on the first conveying roller 6 to be conveyed. A first fixing column 2 is fixedly connected to the upper surface of the base 1, a cutting machine 4 is fixedly connected to the inner side of the first fixing column 2, and a grinding machine 5 is fixedly connected to the inner side of the first fixing column 2.

[0029] Please see Figure 2 A second fixed post 8 is fixedly connected to the upper surface of the first fixed post 2. A sliding groove 9 is provided on the inner side of the second fixed post 8. A second baffle 11 is slidably connected inside the sliding groove 9. The sliding groove 9 inside the second fixed post 8 allows the second baffle 11 to slide back and forth inside it, which can block the other side of the aluminum-based copper-clad laminate and prevent the aluminum-based copper-clad laminate from loosening during cutting and grinding, thus playing a fixing role. An electric telescopic rod 10 is fixedly connected to one side of the second baffle 11. The fixed end of the electric telescopic rod 10 is fixedly connected to the upper surface of the base 1. Both ends of the electric telescopic rod 10 are installed on the second baffle 11 and the base 1, which plays a fixing role. The electric telescopic rod 10 can push the second baffle 11 to block the other side of the aluminum-based copper-clad laminate, which is suitable for different sizes of aluminum-based copper-clad laminate.

[0030] Please see Figure 4 A fixing frame 12 is fixedly connected to the upper surface of the second fixing column 8, and a second conveying roller 13 is rotatably connected to the lower surface of the fixing frame 12. A dust collection mechanism 7 is provided on one side of the fixing frame 12. The dust collection mechanism 7 includes a fixing plate 701 fixedly connected to one side of the fixing frame 12. The lower surface of the fixing plate 701 is rotatably connected to one end of the worm gear 703. The lower surface of the collection box 709 is fixedly connected to the upper surface of the base 1. The worm gear 703 is installed in the fixing plate 701. When the worm gear 703 rotates, the dust collection box 706 can be angled. The collection box 709 is installed on the base 1. The collection box 709 can collect dust and play a fixing role.

[0031] Please see Figure 5The lower surface of the fixed plate 701 is slidably connected to the outer surface of the arc plate 704. The outlet of the dust collection box 706 is fixedly connected to the exhaust fan 707. The arc plate 704 is installed on the fixed plate 701. Under the action of the motor 702, the angle of the arc plate 704 can be adjusted. The exhaust fan 707 is installed on the dust collection box 706. The exhaust fan 707 can extract the collected dust, which is convenient for transportation. The outlet of the exhaust fan 707 is fixedly connected to the conveying pipe 708. The outlet of the conveying pipe 708 is fixedly connected to the collection box 709. The conveying pipe 708 is installed on the exhaust fan 707. The dust extracted by the exhaust fan 707 is transported to the collection box 709 through the conveying pipe 708. The collection box 709 can collect the transported dust.

[0032] Please see Figure 6 A motor 702 is fixedly connected to the lower surface of the fixed plate 701. A worm gear 703 is fixedly connected to the output shaft of the motor 702. A worm wheel 705 meshes with the outer surface of the worm gear 703. An arc-shaped plate 704 is fixedly connected to the lower surface of the worm wheel 705. A dust collection box 706 is fixedly connected to the lower surface of the arc-shaped plate 704. Aluminum-based copper-clad laminates are prone to generating a large amount of dust during cutting and grinding. The dust can easily cause harm to the health of surrounding workers when it floats in the air. The dust collection mechanism 7 can collect the generated dust, prevent the dust from floating in the air, and help improve production efficiency.

[0033] The cutting machine 4, grinding machine 5, motor 702, exhaust fan 707 and electric telescopic pole 10 in this application are all common electrical devices in the prior art, and their models or specific structures will not be described in detail in this application.

[0034] Working principle: The aluminum-based copper-clad laminate is placed on the first conveyor roller 6, and the first baffle 3 constrains its lateral position. Under the action of an external power source, the first conveyor roller 6 can be driven to rotate, pushing the board towards the cutting area. After the board enters the area of ​​the first fixed column 2, the cutting machine 4 cuts the board, and the grinding machine 5 immediately grinds the cut edges, realizing multi-process continuous processing. The electric telescopic rod 10 pushes the second baffle 11 to slide along the slide groove 9, pressing the board from the other side to prevent deviation during processing. The cut and ground board is received by the second conveyor roller 13 and continues to be conveyed backward. The material is fed in and discharged. The dust generated during cutting and grinding can be collected by the dust collection mechanism 7. The worm gear 703 is driven to rotate by the motor 702, and the worm wheel 705 drives the arc plate 704 to slide on the lower surface of the fixed plate 701, so that the dust collection box 706 is precisely moved to the position directly below the cutting and grinding position. The exhaust fan 707 generates negative pressure in the dust collection box 706, sucking in the metal dust generated during cutting and grinding. The dust is transported to the collection box 709 through the conveying pipe 708 for centralized storage, avoiding pollution of equipment and environment, and realizing the collection of dust generated during cutting and grinding.

[0035] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A multi-station cutting device for aluminum-based copper-clad laminates, comprising a base (1), characterized in that: The upper surface of the base (1) is fixedly connected to a first fixed column (2), the inner side of the first fixed column (2) is fixedly connected to a cutting machine (4), and the inner side of the first fixed column (2) is fixedly connected to a grinding machine (5). A second fixed column (8) is fixedly connected to the upper surface of the first fixed column (2), and a fixed frame (12) is fixedly connected to the upper surface of the second fixed column (8). A second conveying roller (13) is rotatably connected to the lower surface of the fixed frame (12). A dust collection mechanism (7) is provided on one side of the fixed frame (12). The dust collection mechanism (7) includes a fixed plate (701) fixedly connected to one side of the fixed frame (12). A motor (702) is fixedly connected to the lower surface of the fixed plate (701). A worm gear (703) is fixedly connected to the output shaft of the motor (702). A worm wheel (705) meshes with the outer surface of the worm gear (703). An arc plate (704) is fixedly connected to the lower surface of the worm wheel (705). A dust collection box (706) is fixedly connected to the lower surface of the arc plate (704).

2. The multi-station cutting equipment for aluminum-based copper-clad laminates according to claim 1, characterized in that: The upper surface of the base (1) is fixedly connected to a first baffle (3), and the inner wall of the first baffle (3) is rotatably connected to a first conveying roller (6).

3. The multi-station cutting equipment for aluminum-based copper-clad laminates according to claim 1, characterized in that: The lower surface of the fixed plate (701) is slidably connected to the outer surface of the arc plate (704), and the outlet of the dust collection box (706) is fixedly connected to the exhaust fan (707).

4. The multi-station cutting equipment for aluminum-based copper-clad laminates according to claim 3, characterized in that: The outlet of the exhaust fan (707) is fixedly connected to a conveying pipe (708), and the outlet of the conveying pipe (708) is fixedly connected to a collection box (709).

5. The multi-station cutting equipment for aluminum-based copper-clad laminates according to claim 4, characterized in that: The lower surface of the fixing plate (701) is rotatably connected to one end of the worm gear (703), and the lower surface of the collection box (709) is fixedly connected to the upper surface of the base (1).

6. The multi-station cutting equipment for aluminum-based copper-clad laminates according to claim 1, characterized in that: The inner side of the second fixed column (8) is provided with a sliding groove (9), and a second baffle (11) is slidably connected inside the sliding groove (9).

7. The multi-station cutting equipment for aluminum-based copper-clad laminates according to claim 6, characterized in that: An electric telescopic rod (10) is fixedly connected to one side of the second baffle (11), and the fixed end of the electric telescopic rod (10) is fixedly connected to the upper surface of the base (1).