Copper alloy plate processing device
By designing a copper alloy sheet processing device, and adopting an air flame cutting mechanism and a moving head, the problems of uneven cutting and high cost of traditional methods have been solved, achieving efficient and low-cost copper alloy sheet cutting.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-03-06
AI Technical Summary
Traditional manual cutting of copper alloy plates, especially wide plates, results in uneven cutting and high costs, while existing equipment increases processing costs.
Design a copper alloy sheet processing device, including a processing mechanism, a processing head, and a head connecting pipeline. It adopts an air flame cutting mechanism and a moving head. The lateral movement and height adjustment of the head are realized through a drive mechanism. Combined with the winding and unwinding of cables and air cables, it achieves efficient cutting.
It achieves efficient cutting of copper alloy plates, reduces equipment costs, has a simple structure, is easy to maintain, and is suitable for cutting plates of different widths.
Smart Images

Figure CN223970976U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of metal processing, and in particular to a copper alloy plate processing device. Background Technology
[0002] Copper alloy sheets are shipped in rolls. In actual use and processing, the rolls need to be cut. Since copper alloy sheets are designed in different widths, traditional manual cutting is fine for narrower sheets, but it becomes very troublesome when cutting wider sheets, and uneven cuts are likely to occur. If large cutting equipment is used, the processing cost will also increase. Therefore, a copper alloy sheet processing device is designed. Utility Model Content
[0003] The purpose of this utility model is to provide a copper alloy plate processing device to solve the above-mentioned technical problems. To achieve the above purpose, this utility model adopts the following technical solution:
[0004] A copper alloy sheet processing device includes a processing mechanism, a processing head, and a head connecting pipeline. The processing head is connected to the processing mechanism and can move laterally on the processing mechanism. The head connecting pipeline connects the processing mechanism and the processing head.
[0005] Based on the above technical solution, the processing mechanism consists of a drive mechanism, a plate bearing base, a plate bearing slider, a crossbeam, a cable self-retracting roller, and a wire self-retracting roller. The drive mechanism is located on the top side of the plate bearing base. Several sets of plate bearing sliders are arranged on the plate bearing base. The crossbeam is horizontally located on one side of the top of the drive mechanism and is parallel to the top side of the plate bearing base. The cutting clearance groove is located on the top side of the plate bearing base, and the crossbeam and the cutting clearance groove are correspondingly arranged. A horizontal cable passage groove is opened on the crossbeam. The cable self-retracting roller is located at one end of the cable passage groove. The wire self-retracting rollers are arranged side by side on the drive mechanism on both sides of the crossbeam. A machine head connecting tooth is provided on one side of the crossbeam. The processing machine head is connected to the crossbeam, and the processing machine head is engaged with the machine head connecting tooth.
[0006] Based on the above technical solution, the processing head is composed of a moving head and a flame cutting mechanism. The head connection pipeline is composed of a cable and an air cable. The flame cutting mechanism is connected to both sides of the moving head and can move up and down on both sides of the moving head. The cable passes through the cable groove and connects the moving head and the cable self-retracting roller. The air cable connects the cable self-retracting roller and the flame cutting mechanism.
[0007] Based on the above technical solution, the moving head comprises moving rollers, drive gears, transmission support arms, an electrical control box, side lifting sleeves, a transverse motor assembly, and a lifting motor assembly. The transmission support arms are arranged oppositely on both sides of the electrical control box. The moving rollers and drive gears are connected oppositely to the inner top of the transmission support arms. The side lifting sleeves are fixed oppositely to the outer sides of the transmission support arms. The transmission support arms, electrical control box, and side lifting sleeves are integrally fixed. The transverse motor assembly is fixed to the bottom side of the electrical control box, and its side end is connected to the drive gear via the transmission support arm. The lifting motor assembly... Fixed to one side of the electrical control box, the gas-fire cutting mechanism consists of a gas-fire mixing cutting nozzle, a gas-fire connecting pipe, an upper opening lifting frame, and lifting teeth. The gas-fire connecting pipe is connected in parallel to the top of the gas-fire mixing cutting nozzle. The upper opening lifting frame is fixed on both sides of the gas-fire mixing cutting nozzle. The lifting teeth are located on the inner side of one side of the upper opening lifting frame. The upper opening lifting frame is inserted into the side lifting sleeve, and the lifting teeth are connected to the lifting motor unit. The cable is connected to the electrical control box, the gas cable is connected to the gas-fire connecting pipe, and the moving roller and drive gear are connected to the crossbeam, with the drive gear meshing with the head connecting teeth.
[0008] Compared with the prior art, the present invention has the following advantages: The present invention optimizes the setting of the copper alloy plate processing device, changes the traditional cutting method, designs a simple cutting mechanism, and at the same time has a small structure, low cost, is not easy to damage, is easy to maintain and use, and is suitable for widespread use. Attached Figure Description
[0009] Figure 1 This is a general appearance diagram of the present utility model.
[0010] Figure 2 This is a schematic diagram of the processing mechanism of this utility model.
[0011] Figure 3 This is a schematic diagram of the machining head of this utility model.
[0012] Figure 4 This is a schematic diagram showing the disassembled processing head of this utility model.
[0013] In the diagram: 1. Processing mechanism; 2. Processing head; 3. Head connecting pipeline; 4. Drive mechanism; 5. Sheet metal bearing base; 6. Sheet metal bearing ball; 7. Crossbeam; 8. Cable self-retracting roller; 9. Cutting clearance groove; 10. Cable through groove; 11. Head connecting gear; 12. Moving head; 13. Gas flame cutting mechanism; 14. Cable; 15. Air cable; 16. Moving roller; 17. Drive gear; 18. Transmission support arm; 19. Electrical control box; 20. Side lifting sleeve; 21. Horizontal movement motor assembly; 22. Lifting motor assembly; 23. Gas flame mixing cutting nozzle; 24. Mixed gas connecting pipe fitting; 25. Top opening lifting frame; 26. Lifting gear; 27. Detailed Implementation
[0014] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0015] A copper alloy sheet processing device includes a processing mechanism 1, a processing head 2, and a head connecting pipeline 3. The processing head 2 is connected to the processing mechanism 1 and can move laterally on the processing mechanism 1. The head connecting pipeline 3 connects the processing mechanism 1 and the processing head 2.
[0016] The processing mechanism 1 consists of a drive mechanism 4, a plate bearing base 5, a plate bearing ball 6, a crossbeam 7, a cable self-retracting roller 8, and a cable self-retracting roller 9. The drive mechanism 4 is located on the top side of the plate bearing base 5. Several sets of plate bearing balls 6 are arranged on the plate bearing base 5. The crossbeam 7 is horizontally located on one side of the top of the drive mechanism 4 and is parallel to the top side of the plate bearing base 5. The cutting clearance groove 10 is located on the top side of the plate bearing base 5, and the crossbeam 7 and the cutting clearance groove 10 are correspondingly arranged. A horizontal cable passage groove 11 is opened on the crossbeam 7. The cable self-retracting roller 8 is located at one end of the cable passage groove 11. The cable self-retracting roller 9 is arranged in parallel on the drive mechanism 4 on both sides of the crossbeam 7. A machine head connecting tooth 12 is provided on one side of the crossbeam 7. The processing machine head 2 is connected to the crossbeam 7, and the processing machine head 2 is engaged with the machine head connecting tooth 12.
[0017] The processing head 2 consists of a moving head 13 and an air flame cutting mechanism 14. The head connecting pipeline 3 consists of a cable 15 and an air cable 16. The air flame cutting mechanism 14 is connected to both sides of the moving head 13 and can move up and down on both sides of the moving head 13. The cable 15 passes through the cable through groove 11 and connects the moving head 13 and the cable self-retracting roller 8. The air cable 16 connects the cable self-retracting roller 9 and the air flame cutting mechanism 14.
[0018] The moving head 13 consists of a moving roller 17, a drive gear 18, a transmission support arm 19, an electrical control box 20, a side lifting sleeve 21, a transverse motor assembly 22, and a lifting motor assembly 23. The transmission support arm 19 is arranged oppositely on both sides of the electrical control box 20. The moving roller 17 and the drive gear 18 are oppositely connected to the inner top of the transmission support arm 19. The side lifting sleeve 21 is oppositely fixed to the outer side of the transmission support arm 19. The transmission support arm 19, the electrical control box 20, and the side lifting sleeve 21 are integrally fixed. The transverse motor assembly 22 is fixed to the bottom side of the electrical control box 20, and its side end is connected to the drive gear 18 through the transmission support arm 19. The lifting motor assembly 23 is fixed to the electrical control box 20. On one side of the housing 20, the flame cutting mechanism 14 consists of a flame mixing cutting nozzle 24, a mixed gas connecting pipe 25, an upper opening lifting frame 26, and lifting teeth 27. The mixed gas connecting pipe 25 is connected in parallel to the top of the flame mixing cutting nozzle 24. The upper opening lifting frame 26 is fixed on both sides of the flame mixing cutting nozzle 24. The lifting teeth 27 are located on the inner side of one side of the upper opening lifting frame 26. The upper opening lifting frame 26 is inserted into the side lifting sleeve 21, and the lifting teeth 27 are connected to the lifting motor assembly 23. The cable 15 is connected to the electrical control housing. The air cable 16 is connected to the mixed gas connecting pipe 25. The moving roller 17 and the drive gear 18 are connected to the crossbeam 7, and the drive gear 18 and the head connecting teeth 12 are meshed.
[0019] The working principle of this utility model is as follows: This structure is simple to use. When the coiled copper alloy plate is released, it can be placed horizontally on the plate bearing ball 6 on the plate bearing base 5. The plate bearing ball 6 can slide the plate horizontally. When cutting is required, the horizontal movement motor 22 drives the drive gear 18 to move the overall processing head 2 along the direction of the horizontal cantilever beam 7. During the movement, the cable 15 and air cable 16 can be dragged out from the cable self-retracting roller 8 and the cable self-retracting roller 9.
[0020] Before cutting, the flame mixing cutting nozzle 24 needs to be ignited on its bottom side for flame cutting, because the bottom side cutting avoidance groove 10 prevents the flame from cutting into the plate support base 5. During the cutting process, the cutting height of the flame mixing cutting nozzle 24 can be adjusted in real time. The adjustment process is achieved by the lifting motor group 23 driving and engaging with the lifting gear 27 to realize the overall lifting and lowering of the flame mixing cutting nozzle 24, the mixed gas connecting pipe 25, and the upper opening lifting frame 26.
[0021] The above description is a preferred embodiment of the present utility model. For those skilled in the art, any changes, modifications, substitutions and variations made to the implementation methods without departing from the principles and spirit of the present utility model, based on the teachings of the present utility model, still fall within the protection scope of the present utility model.
Claims
1. A copper alloy plate processing apparatus characterized by comprising: Including processing mechanism (1), processing machine head (2), machine head connecting pipeline (3), the processing machine head (2) is connected on processing mechanism (1), and processing machine head (2) can move laterally on processing mechanism (1), and machine head connecting pipeline (3) connects processing mechanism (1) and processing machine head (2), the processing mechanism (1) is composed of drive mechanism (4), plate bearing base (5), plate bearing sliding ball (6), cross beam (7), cable self-recovery roller (8), cable self-recovery roller (9), the drive mechanism (4) is arranged at the side end top side of plate bearing base (5), the plate bearing sliding ball (6) is provided with several groups, several groups of plate bearing sliding ball (6) are arranged on plate bearing base (5), the cross beam (7) is transversely arranged at the top end side of drive mechanism (4), and the cross beam (7) is parallelly arranged on the top side of plate bearing base (5), the cutting avoidance groove (10) is arranged on the top side of plate bearing base (5), and the cross beam (7) and cutting avoidance groove (10) are correspondingly arranged, the cross beam (7) is provided with the transversely arranged cable slot (11), the cable self-recovery roller (8) is arranged at one end of cable slot (11), the cable self-recovery roller (9) is arranged on the drive mechanism (4) on both sides of cross beam (7), one side of the cross beam (7) is provided with machine head connecting tooth (12), the processing machine head (2) is connected on the cross beam (7), and the processing machine head (2) is engaged with machine head connecting tooth (12), the processing machine head (2) is composed of moving machine head (13), gas cutting mechanism (14), the machine head connecting pipeline (3) is composed of cable (15), gas cable (16), the gas cutting mechanism (14) is connected on both sides of moving machine head (13), and the gas cutting mechanism (14) can move up and down on both sides of moving machine head (13), the cable (15) passes through cable slot (11) and connects moving machine head (13) and cable self-recovery roller (8), the gas cable (16) connects cable self-recovery roller (9) and gas cutting mechanism (14).
2. The copper alloy plate processing apparatus according to claim 1, characterized by The mobile head (13) is composed of a mobile roller (17), a driving gear (18), a transmission support arm (19), an electric control machine box (20), a side lifting sleeve (21), a horizontal movement motor set (22), a lifting motor set (23), the transmission support arm (19) is oppositely arranged on the two sides of the electric control machine box (20), the mobile roller (17) and the driving gear (18) are oppositely connected to the inner side of the top end of the transmission support arm (19), the side lifting sleeve (21) is oppositely fixed to the outer side of the transmission support arm (19), the transmission support arm (19), the electric control machine box (20) and the side lifting sleeve (21) are integrally fixed, the horizontal movement motor set (22) is fixed to the bottom side of the electric control machine box (20), and the side end of the horizontal movement motor set (22) is connected with the driving gear (18) through the transmission support arm (19), the lifting motor set (23) is fixed to one side of the electric control machine box (20), the gas flame cutting mechanism (14) is composed of a gas flame mixing cutting nozzle (24), a mixed gas connecting pipe (25), an upper opening lifting frame (26) and a lifting tooth (27), the mixed gas connecting pipe (25) is connected to the top end of the gas flame mixing cutting nozzle (24) in parallel, the upper opening lifting frame (26) is fixed to the two sides of the gas flame mixing cutting nozzle (24), the lifting tooth (27) is arranged on the inner side of one side of the upper opening lifting frame (26), the upper opening lifting frame (26) is inserted and connected in the side lifting sleeve (21), and the lifting tooth (27) is connected with the lifting motor set (23), the cable (15) is connected with the electric control machine box, the gas cable (16) is connected with the mixed gas connecting pipe (25), the mobile roller (17) and the driving gear (18) are connected on the horizontal beam (7), and the driving gear (18) is engaged with the head connecting tooth (12).