Cutting equipment for rolled copper plate processing
By introducing grinding devices and limiting grooves into the copper plate rolling processing equipment, the problem of burrs generated during cutting has been solved, achieving safety and multi-size cutting functions, and improving the operating efficiency and waste cleaning convenience of the equipment.
Patent Information
- Application Number
- CN202511293708.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-11
- Publication Date
- 2025-11-18
AI Technical Summary
Existing rolled copper plate processing and cutting equipment is prone to producing metal burrs during cutting, which can cause injuries to workers.
A device was designed that includes a cutting device, a conveying device, a grinding device, and a waste cleaning device. The grinding device grinds the cut edges of the copper plate, and a limiting groove and a ring handle are set to adjust the position of the cutter head. The limiting ring prevents the conveyor belt from deviating, and the waste cleaning device is driven by a motor to clean up the waste.
It effectively prevents burrs from cutting workers, enables the cutting of copper plates of various sizes on the same machine, reduces position adjustment time, and ensures convenient waste disposal.
Smart Images

Figure CN120962375A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of copper plate processing, in particular to a cutting device for rolling copper plate processing. BACKGROUND
[0002] With the continuous development and progress of China's metallurgy, more and more metals are developed and used by people, and compared with other metals, because of the performance advantages of copper, it is widely used in various industries and fields, and the application of rolling copper plate is also quite extensive, but in different industries and fields, there are different requirements for the size of the rolling copper plate, so there are cutting devices for rolling copper plate processing on the market.
[0003] The cutting device for rolling copper plate processing on the market can cut the rolling copper plate into the size required by the industry, but during cutting, metal burrs will be generated at the cutting position of the rolling copper plate, and these burrs often cut the workers. SUMMARY
[0004] To achieve the above purpose, the present application is realized by the following technical scheme: a cutting device for rolling copper plate processing, comprising a device base, the outer surface of the device base is fixedly installed with a first motor and a second motor through a support respectively, the first motor and the second motor are arranged on the adjacent surfaces of the device base respectively, the edges of the top of the two sides of the outer surface of the device base are respectively provided with operation openings, the operation openings penetrate the device base and extend to the inner cavity thereof, the outer surface of the device base is also provided with a waste outlet, the waste outlet penetrates the device base and extends to the inner cavity thereof, the waste outlet and the first motor are oppositely arranged on the two sides of the outer surface of the device base, the outer surface of the device base is fixedly installed with a transmission box, the transmission box and the second motor are oppositely arranged on the two sides of the outer surface of the device base, the four corners of the bottom of the device base are respectively fixedly installed with supporting feet, the two sides of the inner wall of the top groove of the device base are respectively rotatably installed with a cutting device and a conveying device, and the cutting device is located above the conveying device, the cutting device and the conveying device are drivingly connected through the transmission box, the inner wall of the top groove of the device base is also fixedly installed with a polishing device on the two sides, the bottom of the two sides of the inner wall of the top groove of the device base is respectively fixedly installed with a slide rail, and a waste cleaning device is slidingly installed between the slide rails. By setting the polishing device, when the cut copper plate passes between the cutting device and the conveying device and enters the polishing device, the polishing device will polish the cutting position of the just-cut rolling copper plate, so as to prevent the burrs generated at the cutting surface from cutting the workers.
[0005] Preferably, the cutting device comprises a first rotating shaft and a disc cutter, one end of the first rotating shaft penetrates through the device base and extends to the inner cavity of the transmission box, the outer surface of the first rotating shaft is fixedly installed with a first rotating roller, and both sides of the outer surface of the first rotating roller are provided with a shift groove.
[0006] Preferably, the inner wall of the shift groove is provided with a first limiting groove, the shift groove is slidably installed with a first limiting block, the side of the first limiting block away from the first limiting groove is fixedly installed with a spring, one end of the spring away from the first limiting block is fixedly installed at the inner wall of the shift groove, and the disc cutter is slidably installed in the first limiting groove. By arranging the first limiting groove, when the staff has different size requirements for the cut rolled copper plate, the disc cutter can be slid into the first limiting groove of the corresponding size, and then the rolled copper plate is cut, so that the same instrument can cut the rolled copper plate of multiple sizes.
[0007] Preferably, the disc cutter comprises a cutter head, the inner wall of the annular through hole of the cutter head is fixedly installed with a first fixed block, the first fixed block is slidably installed in the first limiting groove, and the side of the cutter head close to the operation port is fixedly installed with a ring-shaped handle. By arranging the ring-shaped handle, when the staff needs to adjust the position of the cutter head, the ring-shaped handle can be used to adjust the cutter head instead of directly moving the cutter head, so that the staff can be prevented from being cut by the cutter head when adjusting the position of the cutter head.
[0008] Preferably, the conveying device comprises a second rotating shaft and a third rotating shaft, the second rotating shaft and the third rotating shaft are rotatably installed on both sides of the inner wall of the groove at the top of the device base, one end of the second rotating shaft penetrates through the device base and extends to the output end of the second motor fixedly connected outside the device base, the other end of the second rotating shaft penetrates through the device base and extends to the inner cavity of the transmission box, the second rotating shaft is located directly below the first rotating shaft, and the first rotating shaft and the second rotating shaft are drivingly connected through the transmission box.
[0009] Preferably, the outer surfaces of the second rotating shaft and the third rotating shaft are fixedly installed with second rotating rollers respectively, the edges of both sides of the outer surfaces of the second rotating rollers are fixedly installed with limiting rings, the outer surfaces of the second rotating rollers are drivingly installed with a conveyor belt, and the conveyor belt is arranged between the limiting rings. By arranging the limiting rings, when the conveying device starts to work, the limiting rings will limit the deviation of the conveyor belt when the second rotating roller moves, so that the time for the staff to adjust the position of the conveyor belt can be reduced.
[0010] Preferably, the polishing device comprises device fixing blocks fixedly installed on both sides of the inner wall of the groove on the top of the device base, a first polisher fixedly installed between the device fixing blocks, a mounting groove opened on the top of the device fixing blocks, the mounting groove penetrating through the device fixing blocks and extending into the interior thereof, second limiting grooves opened on both sides of the inner wall of the mounting groove, and a second polisher detachably installed in the mounting groove. By arranging the first polisher and the second polisher, the first polisher and the second polisher polish the cutting surface when the cut copper plate enters the polishing device, so that the hard burrs generated during cutting can be prevented from cutting the workers.
[0011] Preferably, the first polisher comprises a device shell fixedly installed between the device fixing blocks, a copper plate channel opened on the outer surface of the device shell, the copper plate channel penetrating through the device shell and extending to the other side thereof, and first polishing pieces fixedly installed on the top and the bottom of the inner wall of the copper plate channel. By arranging the device shell, the bent part is flattened by the device shell when the cut copper plate enters the copper plate channel, so that the purpose of preventing the next polishing from failing due to the curling of the copper plate can be achieved.
[0012] Preferably, the second polisher comprises a second fixing block slidably installed in the mounting groove, second limiting blocks fixedly installed on both sides of the outer surface of the second fixing block and slidably installed in the second limiting grooves, and a second polishing piece fixedly installed on the outer surface of the second fixing block away from the mounting groove. By arranging the second fixing block, the second polisher can be replaced with a corresponding size when the cutting device is adjusted to other sizes, so that the purpose of matching cutting and polishing can be achieved.
[0013] Preferably, the waste cleaning device comprises a displacement block and a lead screw, the displacement block is in transmission connection with the lead screw through the threads in the interior thereof, sliding blocks are fixedly installed on both sides of the displacement block and slidably installed in the interior of the slide rails, a cleaning protrusion is fixedly installed at the bottom edge of the displacement block, the lead screw is rotatably installed on both sides of the inner wall of the groove on the top of the device base, and one end of the lead screw penetrates through the device base and extends to the outside thereof and is fixedly connected with the output end of the first motor. By the operation of the first motor, the cleaning protrusion pushes the waste generated during cutting towards the direction of the waste outlet, so that the purpose of facilitating the cleaning of the waste generated during cutting can be achieved.
[0014] The application provides a cutting device for processing of a rolled copper plate. The cutting device has the following advantages:
[0015] (One), the cutting device for the rolling copper plate processing, by setting the polishing device, when the cut copper plate passes between the cutting device and the conveying device and enters the polishing device, the polishing device polishes the cutting part of the just cut rolling copper plate, so as to prevent the cutting surface from cutting the staff.
[0016] (Two), the cutting device for the rolling copper plate processing, by setting the first limiting groove, when the staff has different size requirements for the cut rolling copper plate, the disc cutter can be slid into the first limiting groove corresponding to the size, and then the rolling copper plate is cut, so that the same instrument can cut rolling copper plate of multiple sizes.
[0017] (Three), the cutting device for the rolling copper plate processing, by setting the ring handle, when the staff needs to adjust the position of the cutter disc, the ring handle is used to adjust the cutter disc instead of directly moving the cutter disc, so as to prevent the staff from being cut by the cutter disc when adjusting the position of the cutter disc.
[0018] (Four), the cutting device for the rolling copper plate processing, by setting the limiting ring, when the conveying device starts to work, the limiting ring will limit the deviation of the conveyor belt when the second roller moves, so as to reduce the time for the staff to adjust the position of the conveyor belt.
[0019] (Five), the cutting device for the rolling copper plate processing, by setting the first polisher and the second polisher, when the cut rolling copper plate enters the polishing device, the first polisher and the second polisher will polish the cutting surface, so as to prevent the staff from being cut by the hard burr generated by cutting.
[0020] (Six), the cutting device for the rolling copper plate processing, by setting the device shell, when the cut rolling copper plate enters the copper plate channel, the curved part will be extruded and flattened by the device shell, so as to prevent the next polishing from being invalid due to the curling of the rolling copper plate.
[0021] (Seven), the cutting device for the rolling copper plate processing, by setting the second fixed block, when the staff adjusts the cutting device to other sizes, the second polisher can also be replaced to the corresponding size, so as to match the cutting and polishing.
[0022] (Eight), the cutting device for the rolling copper plate processing, by the work of the first motor, the cleaning protrusion will push the waste generated by cutting to the direction of the waste outlet, so as to realize the purpose of facilitating the cleaning of the waste generated by cutting. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a whole structure schematic view of the cutting device for the rolling copper plate processing.
[0024] Figure 2 Structure diagram of the whole side of the application;
[0025] Figure 3 Structure diagram of the cutting device of the application;
[0026] Figure 4 Structure diagram of the application Figure 3 Structure diagram of the local enlargement at A in the middle;
[0027] Figure 5 Structure diagram of the disc cutter of the application;
[0028] Figure 6 Structure diagram of the transport device of the application;
[0029] Figure 7 Structure diagram of the polishing device of the application;
[0030] Figure 8 Structure diagram of the first polisher of the application;
[0031] Figure 9 Structure diagram of the second polisher of the application;
[0032] Figure 10 Structure diagram of the waste cleaning device of the application.
[0033] In the figure: 1, device base; 2, first motor; 3, second motor; 4, transmission box; 5, operation port; 6, waste cleaning device; 61, displacement block; 62, sliding block; 63, cleaning protrusion; 64, lead screw; 7, cutting device; 71, first rotating shaft; 72, first rotating roller; 73, gear shifting groove; 74, first limiting groove; 75, first limiting block; 76, spring; 77, disc cutter; 771, cutter disc; 772, first fixed block; 773, ring-shaped handle; 8, transport device; 81, second rotating shaft; 82, third rotating shaft; 83, second rotating roller; 84, limiting ring; 85, conveyor belt; 9, polishing device; 91, device fixed block; 92, first polisher; 921, device shell; 922, copper plate passage; 923, first polishing sheet; 93, mounting groove; 94, second polisher; 941, second fixed block; 942, second limiting block; 943, second polishing sheet; 95, second limiting groove; 10, waste outlet; 11, sliding rail; 12, supporting leg. DETAILED DESCRIPTION
[0034] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of the present application.
[0035] Please refer to Figures 1-5 The present application provides a technical solution: including device base 1, the outer surface of device base 1 is respectively fixedly installed with first motor 2 and second motor 3 through support, first motor 2 and second motor 3 are respectively arranged on the adjacent surface of device base 1, the edge of the top of the two sides of the outer surface of device base 1 is respectively provided with operation port 5, the operation port 5 is used for adjusting cutting device 7, the operation port 5 penetrates device base 1 and extends to the inner cavity thereof, the outer surface of device base 1 is also provided with waste outlet 10, the waste outlet 10 penetrates device base 1 and extends to the inner cavity thereof, the waste outlet 10 is oppositely arranged with first motor 2 on the two sides of the outer surface of device base 1, the outer surface of device base 1 is fixedly installed with transmission box 4, the transmission box 4 is oppositely arranged with second motor 3 on the two sides of the outer surface of device base 1, the four corners of the bottom of device base 1 are respectively fixedly installed with supporting leg 12, the two sides of the inner wall of the top groove of device base 1 are respectively rotatably installed with cutting device 7 and conveying device 8, the turning direction of cutting device 7 is opposite to that of conveying device 8, and cutting device 7 is located above conveying device 8, cutting device 7 and conveying device 8 are drivingly connected through transmission box 4, polishing device 9 is also fixedly installed on the two sides of the inner wall of the top groove of device base 1, the bottom of the two sides of the inner wall of the top groove of device base 1 is respectively fixedly installed with sliding rail 11, waste cleaning device 6 is slidingly installed between sliding rails 11. By arranging polishing device 9, when the cut copper plate passes between cutting device 7 and conveying device 8 and enters polishing device 9, polishing device 9 polishes the cutting part of the just-cut rolled copper plate, so that the purpose of preventing the burr generated at the cutting surface from cutting the worker is achieved.
[0036] The cutting device 7 comprises a first rotating shaft 71 and a disc cutter 77 for cutting the rolled copper plate, one end of the first rotating shaft 71 penetrates the device base 1 and extends to the inner cavity of the transmission box 4, the outer surface of the first rotating shaft 71 is fixedly installed with a first rotating roller 72, gear shift grooves 73 are formed on the two sides of the outer surface of the first rotating roller 72, which provide displacement space for the disc cutter 77 to change position.
[0037] The inner wall of the shift groove 73 is provided with a first limiting groove 74, and the first limiting block 75 is slidably installed in the shift groove 73, which can prevent the disc cutter 77 from sliding out of the first limiting groove 74 during cutting, and the spring 76 is fixedly installed on the side of the first limiting block 75 away from the first limiting groove 74, and the other end of the spring 76 away from the first limiting block 75 is fixedly installed on the inner wall of the shift groove 73, and the disc cutter 77 is slidably installed in the first limiting groove 74. By setting the first limiting groove 74, when the staff has different size requirements for the cut copper plate, the disc cutter 77 can be slid into the first limiting groove 74 of the corresponding size, and then the copper plate can be cut, so that the same instrument can cut copper plates of multiple sizes.
[0038] The disc cutter 77 includes a cutter disc 771, and the first fixed block 772 is fixedly installed on the inner wall of the annular hole of the cutter disc 771, and the first limiting groove 74 is slidably installed in the first fixed block 772, and the ring handle 773 is fixedly installed on the side of the cutter disc 771 close to the operation port 5, which can not only be used to operate the cutter disc 771 but also improve the toughness of the cutter disc 771. By setting the ring handle 773, when the staff needs to adjust the position of the cutter disc 771, the ring handle 773 can be used to adjust the cutter disc 771 instead of directly moving the cutter disc 771, so that the staff can be prevented from being cut by the cutter disc 771 when adjusting the position of the cutter disc 771.
[0039] Please refer to Figure 6 The present application provides a technical solution: the conveying device 8 includes a second rotating shaft 81 and a third rotating shaft 82, the second rotating shaft 81 and the third rotating shaft 82 are respectively rotatably installed on the two sides of the inner wall of the groove on the top of the device base 1, one end of the second rotating shaft 81 penetrates the device base 1 and extends to the outside of the second motor 3 and is fixedly connected with the output end of the second motor 3, the other end of the second rotating shaft 81 penetrates the device base 1 and extends to the inner cavity of the transmission box 4, the second rotating shaft 81 is located directly below the first rotating shaft 71, and the first rotating shaft 71 and the second rotating shaft 81 are drivingly connected through the transmission box 4.
[0040] The outer surfaces of the second rotating shaft 81 and the third rotating shaft 82 are respectively fixedly installed with second rotating rollers 83, the edges of the outer surfaces of the second rotating rollers 83 are fixedly installed with limiting rings 84, and the outer surfaces of the second rotating rollers 83 are drivingly installed with a conveyor belt 85, and the conveyor belt 85 is arranged between the limiting rings 84. By setting the limiting rings 84, when the conveying device 8 starts to work, the limiting rings 84 will limit the deviation of the conveyor belt 85 during the movement of the second rotating rollers 83, so that the time for the staff to adjust the position of the conveyor belt 85 can be reduced.
[0041] Please refer to Figures 7-9The polishing device 9 comprises device fixing blocks 91 fixedly installed on both sides of the inner wall of the groove at the top of the device base 1, first polishers 92 fixedly installed between the device fixing blocks 91, installation grooves 93 opened at the top of the device fixing blocks 91 and extending through the device fixing blocks 91 and into the interiors of the device fixing blocks 91, the installation grooves 93 used for installing second polishers 94, and second limiting grooves 95 opened at both sides of the inner wall of the installation grooves 93, the second polishers 94 being detachably installed in the installation grooves 93. By arranging the first polishers 92 and the second polishers 94, when the cut copper plate enters the polishing device 9, the first polishers 92 and the second polishers 94 polish the cutting surface of the copper plate, so that the hard burrs generated during cutting can be prevented from cutting the workers.
[0042] The first polishers 92 comprise device housings 921 fixedly installed between the device fixing blocks 91, copper plate channels 922 opened at the outer surfaces of the device housings 921, the copper plate channels 922 being arranged to prevent the copper plate from being curled and deformed, the copper plate channels 922 extending through the device housings 921 and extending to the other sides of the device housings 921, and first polishing sheets 923 fixedly installed at the top and the bottom of the inner wall of the copper plate channels 922, the first polishing sheets 923 being used for polishing the upper and lower sides of the copper plate. By arranging the device housings 921, when the cut copper plate enters the copper plate channels 922, the bent part is flattened by the device housings 921, so that the purpose of preventing the next polishing from failing due to the curling of the copper plate can be achieved.
[0043] The second polishers 94 comprise second fixing blocks 941 slidably installed in the installation grooves 93, second limiting blocks 942 fixedly installed at both sides of the outer surface of the second fixing blocks 941, the second limiting blocks 942 being arranged to prevent the second polishers 94 from being detached from the installation grooves 93 during polishing, the second limiting blocks 942 being slidably installed in the second limiting grooves 95, and second polishing sheets 943 fixedly installed at the outer surface of the second fixing blocks 941 away from the installation grooves 93, the second polishing sheets 943 being used for polishing the left and right sides of the copper plate. By arranging the second fixing blocks 941, when the workers adjust the cutting device 7 to other sizes, the second polishers 94 can also be replaced to the corresponding sizes, so that the purpose of matching cutting and polishing can be achieved.
[0044] Please refer to Figure 10The application provides a technical scheme that the waste cleaning device 6 comprises a displacement block 61 and a lead screw 64, the displacement block 61 is in transmission connection with the lead screw 64 through the thread in the inside, sliding blocks 62 are fixedly installed on the two sides of the displacement block 61, the sliding blocks 62 are slidingly installed in the inside of the slide rail 11, cleaning protrusions 63 are fixedly installed at the bottom edges of the displacement block 61, the lead screw 64 is rotationally installed on the two sides of the inside wall of the groove at the top of the device base 1, and one end of the lead screw 64 penetrates through the device base 1 and extends to the outside and is fixedly connected with the output end of the first motor 2. Through the working of the first motor 2, the cleaning protrusions 63 push the waste generated by cutting to the direction of the waste outlet 10, so that the purpose of conveniently cleaning the waste generated by cutting can be achieved.
[0045] In use, first, the power supply of the second motor 3 is turned on, the cutting device 7 and the conveying device 8 start and rotate reversely at the same time, when the cutting device 7 and the conveying device 8 rotate to a certain rotating speed, the rolled copper plate is placed on the top of the conveying device 8, the conveying device 8 conveys the rolled copper plate to the direction of the cutting device 7, and the cutting device 7 cuts the excess part of the rolled copper plate, the metal waste generated by cutting falls to the bottom of the groove at the top of the device base 1, the cut rolled copper plate enters the copper plate channel 922, the metal burrs generated on the upper and lower sides of the cutting part of the rolled copper plate are polished by the first polishing piece 923, when the rolled copper plate passes through the device shell 921, the curled part is straightened by the device shell 921, when the rolled copper plate is output from the copper plate channel 922, it passes between the second polishers 94, the metal burrs on the two sides of the rolled copper plate are polished by the second polishing piece 943, after the whole rolled copper plate passes between the second polishers 94, the staff transports and stores the cut and polished rolled copper plate, then the power supply of the second motor 3 is turned off, and the power supply of the first motor 2 is turned on, through the rotation of the lead screw 64, the cleaning protrusions 63 push the metal waste generated by cutting to the direction of the waste outlet 10, the metal waste falling to the bottom of the groove at the top of the device base 1 is cleaned out of the equipment, when the cleaning is completed, the rotating direction of the output end of the first motor 2 is operated to make the cleaning protrusions 63 return to the initial state, then the power supply of the first motor 2 is turned off.
[0046] The disc cutter 77 spacing adjustment part is provided with the first limiting groove 74, when the staff has different size requirements for the cut rolled copper plate, the disc cutter 77 can be slid into the first limiting groove 74 corresponding to the size, then the rolled copper plate is cut, so that the same instrument can cut the rolled copper plate with multiple sizes.
[0047] The transmission belt 85 limiting part limits the transmission belt 85 from moving out of the second roller 83 by setting the limiting ring 84, so as to reduce the time for the staff to adjust the position of the transmission belt 85.
[0048] The rolled copper plate polishing part polishes the cutting surface of the rolled copper plate by setting the first polisher 92 and the second polisher 94, so as to prevent the staff from being cut by the hard burrs generated by cutting.
[0049] The metal waste cleaning part pushes the waste generated by cutting to the direction of the waste outlet 10 by the first motor 2, so as to achieve the purpose of facilitating the cleaning of the waste generated by cutting.
[0050] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element preceded by "comprises... " does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element.
[0051] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, alternatives, and variations can be made in the embodiments without departing from the spirit and scope of the present application as defined by the appended claims and their equivalents.
Claims
1. A shearing device for processing rolled copper plates, comprising a device base (1), characterized in that: The outer surface of the device base (1) is fixedly mounted with a first motor (2) and a second motor (3) via brackets. The first motor (2) and the second motor (3) are respectively located on adjacent surfaces of the device base (1). Operating ports (5) are respectively opened at the top edges of both sides of the outer surface of the device base (1). The operating ports (5) penetrate the device base (1) and extend into its inner cavity. A waste outlet (10) is also opened on the outer surface of the device base (1). The waste outlet (10) penetrates the device base (1) and extends into its inner cavity. The waste outlet (10) and the first motor (2) are opposite to each other on both sides of the outer surface of the device base (1). A transmission box (4) is fixedly mounted on the outer surface of the device base (1). The transmission box (4) and the second motor (3) are respectively arranged opposite to each other on the outer surface of the device base (1). Support feet (12) are fixedly installed at the four corners of the bottom of the device base (1). A cutting device (7) and a transport device (8) are respectively rotatably installed on both sides of the inner wall of the groove at the top of the device base (1), and the cutting device (7) is located above the transport device (8). The cutting device (7) and the transport device (8) are connected by transmission box (4). A grinding device (9) is also fixedly installed on both sides of the inner wall of the groove at the top of the device base (1). Slide rails (11) are fixedly installed at the bottom of both sides of the inner wall of the groove at the top of the device base (1). A waste cleaning device (6) is slidably installed between the slide rails (11).
2. The shearing equipment for processing rolled copper plates according to claim 1, characterized in that: The cutting device (7) includes a first rotating shaft (71) and a disc cutter (77). One end of the first rotating shaft (71) passes through the device base (1) and extends to the inner cavity of the transmission box (4). A first rotating roller (72) is fixedly installed on the outer surface of the first rotating shaft (71). A shifting groove (73) is provided on both sides of the outer surface of the first rotating roller (72).
3. The shearing equipment for processing rolled copper plates according to claim 2, characterized in that: The inner wall of the shift groove (73) is provided with a first limiting groove (74), and a first limiting block (75) is slidably installed in the shift groove (73). A spring (76) is fixedly installed on the side of the first limiting block (75) away from the first limiting groove (74). The end of the spring (76) away from the first limiting block (75) is fixedly installed on the inner wall of the shift groove (73). The disc cutter (77) is slidably installed in the first limiting groove (74).
4. The shearing equipment for processing rolled copper plates according to claim 3, characterized in that: The disc cutter (77) includes a cutter disc (771), a first fixing block (772) is fixedly installed on the inner wall of the annular through hole of the cutter disc (771), the first fixing block (772) is slidably installed in the first limiting groove (74), and a ring handle (773) is fixedly installed on the side of the cutter disc (771) near the operation port (5).
5. The shearing equipment for processing rolled copper plates according to claim 2, characterized in that: The transport device (8) includes a second rotating shaft (81) and a third rotating shaft (82). The second rotating shaft (81) and the third rotating shaft (82) are respectively rotatably installed on both sides of the inner wall of the groove at the top of the device base (1). One end of the second rotating shaft (81) passes through the device base (1) and extends to its outer side to be fixedly connected to the output end of the second motor (3). The other end of the second rotating shaft (81) passes through the device base (1) and extends to the inner cavity of the transmission box (4). The second rotating shaft (81) is located directly below the first rotating shaft (71). The first rotating shaft (71) and the second rotating shaft (81) are connected by transmission through the transmission box (4).
6. The shearing equipment for processing rolled copper plates according to claim 5, characterized in that: The outer surfaces of the second rotating shaft (81) and the third rotating shaft (82) are respectively fixedly mounted with second rotating rollers (83). Limiting rings (84) are fixedly mounted on both sides of the outer surface of the second rotating roller (83). A conveyor belt (85) is drivenly mounted on the outer surface of the second rotating roller (83), and the conveyor belt (85) is arranged between the limiting rings (84).
7. The shearing equipment for processing rolled copper plates according to claim 1, characterized in that: The polishing device (9) includes a device fixing block (91), which is fixedly installed on both sides of the inner wall of the groove at the top of the device base (1). A first polisher (92) is fixedly installed between the device fixing blocks (91). An installation groove (93) is provided on the top of the device fixing block (91). The installation groove (93) passes through the device fixing block (91) and extends into its interior. A second limiting groove (95) is provided on both sides of the inner wall of the installation groove (93). A second polisher (94) is detachably installed in the installation groove (93).
8. The shearing equipment for processing rolled copper plates according to claim 7, characterized in that: The first polisher (92) includes a device housing (921), which is fixedly installed between device fixing blocks (91). A copper plate channel (922) is opened on the outer surface of the device housing (921). The copper plate channel (922) penetrates the device housing (921) and extends to the other side. A first polishing disc (923) is fixedly installed at the top and bottom of the inner wall of the copper plate channel (922).
9. A shearing device for processing rolled copper plates according to claim 7, characterized in that: The second polisher (94) includes a second fixing block (941), which is slidably installed in the mounting groove (93). A second limiting block (942) is fixedly installed on both sides of the outer surface of the second fixing block (941). The second limiting block (942) is slidably installed in the second limiting groove (95). A second polishing disc (943) is fixedly installed on the outer surface of the second fixing block (941) away from the mounting groove (93).
10. A shearing device for processing rolled copper plates according to claim 1, characterized in that: The waste cleaning device (6) includes a displacement block (61) and a lead screw (64). The displacement block (61) is connected to the lead screw (64) through its internal threads. Slider blocks (62) are fixedly installed on both sides of the displacement block (61). The sliders (62) are slidably installed inside the slide rail (11). A cleaning protrusion (63) is fixedly installed at the bottom edge of the displacement block (61). The lead screw (64) is rotatably installed on both sides of the inner wall of the groove at the top of the device base (1). One end of the lead screw (64) passes through the device base (1) and extends to its outer side, where it is fixedly connected to the output end of the first motor (2).