A copper material cutting apparatus

By designing a copper cutting device, a multi-directional fixing of the copper material and movement of the cutting wheel are achieved by using a motor-driven lead screw and push rod. This solves the problem of poor fixing during copper cutting, improves cutting stability and efficiency, adapts to copper cutting of different widths, and enhances the practicality of the equipment.

CN224543253UActive Publication Date: 2026-07-24JIANGXI YISHENG COPPER FINISHING PROCESSING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI YISHENG COPPER FINISHING PROCESSING CO LTD
Filing Date
2025-08-11
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing copper cutting equipment has poor fixation, which makes it easy to deviate during cutting, affecting the cutting effect and efficiency. Moreover, most of the equipment can only be used in one way, which is not very practical.

Method used

A copper cutting device was designed, which uses components such as a mounting platform, a work plate, a mounting frame, a force-bearing frame, and a cutting wheel. The device uses a motor to drive a lead screw and a push rod to achieve multi-directional fixation of the copper material and movement of the cutting wheel. Combined with a storage box to collect debris, the device improves the stability of fixation and cutting efficiency.

Benefits of technology

It achieves stable fixation of copper material during the cutting process, avoids displacement, improves cutting effect and efficiency, adapts to cutting copper material of different widths, reduces manual operation, and improves the practicality and work efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a copper material cutting equipment, its structure includes work board and installation frame, through placing copper material on work board top end input installation frame inside, when moving cutting position, can make both sides clamping plate to copper material side edge clamping fixed under the first screw rod rotation of second motor drive, and the fixed copper material upper end under the third electric push rod pushdown of compression plate can be down, to this realizes the fixation of side edge and upper and lower end, makes the copper material when cutting stability better, avoids the situation that the cutting effect is poor when cutting and shakes and shifts, and when cutting can cut the work of copper material of different thicknesses to second electric push rod downward, and make the movable plate drive cutting wheel left and right adjustment under the second screw rod of third motor drive can cut the copper material of different width, avoid the fixed point cutting practicability is not good, the cutting efficiency slow situation.
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Description

Technical Field

[0001] This utility model relates to the technical field of copper material production equipment, and in particular to a copper material cutting device. Background Technology

[0002] Copper materials, made from pure copper or copper alloys, come in various shapes including rods, wires, plates, strips, bars, tubes, and foils. Copper materials are processed using methods such as rolling, extrusion, and drawing. Plates and strips are available in hot-rolled and cold-rolled forms; strips and foils are cold-rolled; tubes and rods are divided into extruded and drawn products; and wires are all drawn. Copper materials include copper plates, copper rods, copper tubes, copper strips, copper wires, copper busbars, and copper components.

[0003] During the production of copper, it is cut. However, the current copper fixing effect is not good, which makes it easy to deviate during cutting and resulting in poor cutting effect. Moreover, most copper fixing equipment is a fixed tooling that can only be used in one way, which is not very practical and affects cutting efficiency.

[0004] Therefore, a copper cutting device that facilitates fixed cutting is proposed. Utility Model Content

[0005] (a) Technical problems to be solved To overcome the shortcomings of existing technologies, a copper cutting device is proposed to solve the problem that copper is unstable and prone to deviation during the current cutting process, resulting in poor cutting effect and efficiency.

[0006] (II) Technical Solution This utility model is achieved through the following technical solution: This utility model proposes a copper cutting device, including a work plate with a raised bottom and a mounting platform, and a mounting frame connected horizontally across the top of the work plate. A force-bearing frame is movably mounted in the middle of the mounting frame. A cutting wheel is mounted inside the force-bearing frame through a rotating transmission rod, and a first motor is mounted on the outside of the force-bearing frame and connected to the transmission rod. The force-bearing frame is equipped with fixing plates on both sides of the mounting frame. A third electric push rod is installed on the upper end of the fixing plate. The output end of the third electric push rod passes through the fixing plate and is connected to a clamping plate. The upper end of the working plate is symmetrically provided with downward-through pushing grooves located outside the fixed plate. The pushing groove is rotatably provided with a first lead screw with threads mirrored in the middle. Clamping plates are symmetrically installed on both sides of the pushing groove, and the bottom end of the clamping plates is provided with a threaded hole connected to the first lead screw. A second motor is installed on the outside of the working plate and connected to the first lead screw.

[0007] Furthermore, a movable plate is installed at the top center of the mounting frame, and a threaded hole is provided in the center of the movable plate. A second lead screw is rotatably installed at the top center of the mounting frame and connected to the threaded hole. A third motor is installed on the outside of the mounting frame and connected to the second lead screw. The force-bearing frame is installed and lifted at the lower end of the movable plate. Sliding holes are provided on both sides of the movable plate. A positioning slide rod is provided at the top center of the mounting frame and slidably connected to the sliding hole.

[0008] Furthermore, a second electric push rod is installed at the bottom of the movable plate, and the output end of the second electric push rod is connected to the mounting frame. Telescopic rods are provided on both sides of the movable plate and connected to the mounting frame.

[0009] Furthermore, a rubber layer is provided on both the inner side of the clamping plate and the bottom end of the pressing plate.

[0010] Furthermore, the mounting platform is equipped with a removable storage box, and the working plate is provided with a through cutting groove at the lower end of the cutting wheel, and several material leakage grooves are provided on both sides of the cutting groove through the working plate.

[0011] Furthermore, a side plate is provided on one side of the working plate, and a first electric push rod is installed on the outer side of the side plate, with the output end of the first electric push rod passing through the side plate and connected to a push plate.

[0012] Furthermore, a controller and an observation window are installed on the outside of the mounting frame.

[0013] (III) Beneficial Effects Compared with the prior art, this utility model has the following advantages: 1. In this utility model, after placing the copper material at the upper end of the working plate and pushing it into the interior of the mounting frame, the second motor drives the first lead screw to fix the sides of the copper material by moving the clamping plates on both sides inward. Then, the third electric push rod pushes the pressing plate downward to press and fix the upper end of the copper material, thereby achieving the fixed cutting of the copper material. This prevents the copper material from shifting or shaking during cutting, resulting in a better cutting effect. Furthermore, the copper material is fixed in all directions, making the fixing more stable.

[0014] 2. In this utility model, the third motor drives the second lead screw to rotate, which in turn causes the moving plate to move the cutting wheel left and right, thereby enabling it to cut copper materials of different widths, resulting in higher cutting effect and practicality, and avoiding the situation of poor efficiency in fixed-point cutting.

[0015] 3. In this utility model, by installing a storage box at the lower end of the work plate, the storage box can collect the debris generated during cutting inside the cutting groove, reducing subsequent cleaning time and making the work more efficient. Attached Figure Description

[0016] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a schematic diagram of the internal structure of the present invention from the front. Figure 2 This is a schematic diagram of the internal structure of the side of this utility model; Figure 3 This is a top view of the internal structure of this utility model; Figure 4 This is a schematic diagram of the side mounting structure of this utility model; In the diagram: Work plate-1, Mounting platform-2, Storage box-3, Side plate-4, Push plate-5, First electric push rod-6, Mounting frame-7, Moving plate-8, Second electric push rod-9, Force-bearing frame-10, Transmission rod-11, Cutting wheel-12, First motor-13, Threaded hole one-14, Sliding hole-15, Positioning slide rod-16, Fixing plate-17, Third electric push rod-18, Pressing plate-19, Cutting groove-110, Material leakage groove-111, Push slide groove-112, Clamping plate-113, Threaded hole two-114, First lead screw-115, Second motor-116, Second lead screw-117, Third motor-118, Telescopic rod-119, Controller-120, Observation window-121. Detailed Implementation

[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0018] Please see Figures 1-4This utility model provides a copper cutting device, including a work plate 1 with a raised mounting platform 2 at the bottom. The mounting platform 2 raises the upper part, making it easier for workers to place copper materials during cutting. A mounting frame 7 is horizontally connected to the top of the work plate 1, allowing copper materials to pass through on both sides. A controller 120 and an observation window 121 are installed on the outside of the mounting frame 7. The externally purchased controller 120 facilitates the operation of the electrical components in the device, making operation more convenient. The observation window 121 allows for observation of the internal cutting process, facilitating timely adjustments. A force-bearing frame 10 is movably installed in the middle of the mounting frame 7. A cutting wheel 12 is installed inside the force-bearing frame 10 via a rotating transmission rod 11. A first motor 13 is installed on the outside of the force-bearing frame 10 and connected to the transmission rod 11. The first motor 13 drives the transmission rod 11 to rotate the cutting wheel. The cutting wheel 12 can rotate for cutting. The mounting platform 2 has a removable storage box 3 inside, which collects the cutting debris at the bottom, avoiding the tedious cleaning and wasting time. The working plate 1 has a through cutting groove 110 at the lower end of the cutting wheel 12. The cutting groove 110 facilitates the cutting wheel 12 to cut downwards and allows the debris to fall downwards during cutting. Several material leakage grooves 111 are provided on both sides of the cutting groove 110, which pass through the working plate 1. The material leakage grooves 111 facilitate the downward cleaning and collection of debris, thus speeding up the work. The working plate 1 has a side plate 4 on one side. A first electric push rod 6 is installed on the outside of the side plate 4. The output end of the first electric push rod 6 passes through the side plate 4 and is connected to a push plate 5. When needed, the first electric push rod 6 can push the inner push plate 5 to push the copper material, which can reduce manual pushing and make the work more efficient.

[0019] A fixed plate 17 is installed on both sides of the mounting frame 7 in the force-bearing frame 10. A third electric push rod 18 is installed on the upper end of the fixed plate 17. The output end of the third electric push rod 18 passes through the fixed plate 17 and is connected to a clamping plate 19. When the third electric push rod 18 pushes the clamping plate 19 downward, it can fix the upper end of the copper material, thereby preventing it from tilting upward during cutting and facilitating the fixing of plate-shaped copper materials, resulting in better fixing effect and reducing displacement. A movable plate 8 is installed in the middle of the top of the mounting frame 7. The movable plate 8 has a threaded hole 14 in the middle. A second lead screw 117 is rotatably installed in the middle of the top of the mounting frame 7 and connected to the threaded hole 14. A third motor 118 is installed on the outside of the mounting frame 7 and connected to the second lead screw 117. When the third motor 118 drives the second lead screw 117 to rotate, the movable plate 8 can be moved left and right under the force, so that the cutting wheel 12 at the bottom can cut left and right, thereby increasing the cutting width. The multiple cutting options allow for better work efficiency, avoiding single-point cutting or manual adjustment of copper material cutting, thus increasing work efficiency. This enables the cutting of copper materials of different widths, making it more practical. The force-bearing frame 10 is installed and lifted at the lower end of the moving plate 8. The moving plate 8 has sliding holes 15 on both sides. The top center of the mounting frame 7 has a positioning slide rod 16 that is slidably connected to the sliding holes 15. Under the action of the sliding holes 15 and the positioning slide rod 16, the lateral stability of the moving plate 8 is enhanced, reducing the possibility of excessive force on the second lead screw 117, which could lead to a short service life. The bottom of the moving plate 8 is equipped with a second electric push rod 9, and the output end of the second electric push rod 9 is connected to the mounting frame 7. This allows the cutting wheel 12 to be pushed up and down to cut the copper material under the action of the second electric push rod 9, reducing the need for manual pushing. The moving plate 8 has telescopic rods 119 on both sides that are connected to the mounting frame 7. The telescopic rods 119 can enhance the stability of the force-bearing frame 10. The upper end of the working plate 1 is symmetrically provided with downward-through pushing grooves 112 on the outer side of the fixed plate 17. The pushing groove 112 is rotatably provided with a first lead screw 115 with threads mirrored in the middle. This allows the first lead screw 115 to rotate so that both sides can work inward or outward at the same time, resulting in better clamping and loosening effects. Clamping plates 113 are symmetrically installed on both sides of the pushing groove 112, and the bottom end of the clamping plate 113 is provided with a threaded hole 114 connected to the first lead screw 115. A second motor 116 is installed on the outer side of the working plate 1 and connected to the first lead screw 115. When the second motor 116 drives the first lead screw 115 to rotate, the clamping plates 113 on both sides clamp the copper material inward under the action of the threaded hole 114. This can improve the clamping effect on round or rectangular copper materials, fix both sides, prevent left and right shaking during cutting, and thus improve the cutting effect and stability.

[0020] Preferably, a rubber layer is provided on the inner side of the clamping plate 113 and the bottom surface of the pressure plate 19. The friction force can be enhanced under the rubber layer, making the stability stronger when clamping and fixing, and avoiding damage to the copper material during clamping, and reducing the situation of excessive force pressure.

[0021] Working principle: In use, first connect the first electric push rod 6, the second electric push rod 9, the first motor 13, the third electric push rod 18, the second motor 116, and the third motor 118 to the controller 120 and connect them to an external power supply. After placing the copper material on the upper end of the work plate 1, the first electric push rod 6 can push the push plate 5 to push the copper material into the mounting frame 7. After reaching the cutting position, the second motor 116 can drive the first lead screw 115 to rotate through the threaded hole 114, causing the clamping plates 113 on both sides to clamp the copper material inward. Furthermore, the upper clamping plate 19 and the clamping plate 113 are offset. Then, under the downward push of the third electric push rod 18, the clamping plate 19 can be pushed downward to press and fix the upper end of the copper material. Subsequently, the first motor 13 drives the cutting wheel 12 to rotate, and under the action of the second electric push rod 9 pushing the force frame 10 downward, the cutting wheel 12 cuts the copper material. Under the action of the third motor 118 driving the second lead screw 117, the moving plate 8 can drive the cutting wheel 12 to move left and right to cut the copper material of different widths. After cutting, it is loosened and fixed so that the copper material can be pushed out, thus completing the work.

[0022] 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 preferred examples and are not intended to limit the 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 claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A copper cutting device, comprising a work plate (1) with a raised mounting platform (2) at the bottom, and a mounting frame (7) horizontally connected to the top of the work plate (1), a force-bearing frame (10) movably mounted in the middle of the mounting frame (7), a cutting wheel (12) mounted inside the force-bearing frame (10) via a rotating transmission rod (11), and a first motor (13) mounted on the outside of the force-bearing frame (10) and connected to the transmission rod (11), characterized in that... ; The force-bearing frame (10) is equipped with a fixing plate (17) on both sides of the mounting frame (7). A third electric push rod (18) is installed on the upper end of the fixing plate (17). The output end of the third electric push rod (18) passes through the fixing plate (17) and is connected to a clamping plate (19). The upper end of the working plate (1) is symmetrically provided with a downward-through push groove (112) located outside the fixed plate (17). The push groove (112) is rotatably provided with a first lead screw (115) with a threaded hole mirrored in the middle. Clamping plates (113) are symmetrically installed on both sides of the push groove (112), and the bottom end of the clamping plate (113) is provided with a threaded hole (114) connected to the first lead screw (115). A second motor (116) is installed on the outside of the working plate (1) and connected to the first lead screw (115).

2. The copper cutting equipment according to claim 1, characterized in that: A movable plate (8) is installed at the top center of the mounting frame (7). A threaded hole (14) is provided in the middle of the movable plate (8). A second lead screw (117) is rotatably installed at the top center of the mounting frame (7) and connected to the threaded hole (14). A third motor (118) is installed on the outside of the mounting frame (7) and connected to the second lead screw (117). The force-bearing frame (10) is installed and lifted at the lower end of the movable plate (8). Sliding holes (15) are provided on both sides of the movable plate (8). A positioning slide rod (16) is provided at the top center of the mounting frame (7) and is slidably connected to the sliding hole (15).

3. The copper cutting equipment according to claim 2, characterized in that: The bottom end of the movable plate (8) is equipped with a second electric push rod (9), and the output end of the second electric push rod (9) is connected to the mounting frame (7). The movable plate (8) is provided with telescopic rods (119) on both sides, which are connected to the mounting frame (7).

4. The copper cutting equipment according to claim 1, characterized in that: The inner side of the clamping plate (113) and the bottom surface of the pressing plate (19) are both provided with rubber layers.

5. The copper cutting equipment according to claim 1, characterized in that: The mounting platform (2) is equipped with a removable storage box (3). The working plate (1) is provided with a through cutting groove (110) at the lower end of the cutting wheel (12), and several material leakage grooves (111) are provided on both sides of the cutting groove (110) through the working plate (1).

6. The copper cutting equipment according to claim 1, characterized in that: The working plate (1) has a side plate (4) on one side, and a first electric push rod (6) is installed on the outside of the side plate (4), and the output end of the first electric push rod (6) passes through the side plate (4) and is connected to a push plate (5).

7. The copper cutting equipment according to claim 1, characterized in that: The controller (120) and the observation window (121) are installed on the outside of the mounting frame (7).