Surface grinding processing equipment for copper-steel composite metal strip
Patent Information
- Application Number
- CN202510287216.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-03-12
Smart Images

Figure CN119772736B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of metal belt grinding, in particular to a surface grinding processing device for a copper-steel composite metal belt. Background Art
[0002] Copper-steel composite metal strips are a composite material with both electrical conductivity and high strength, and are widely used in the fields of electronics, automobiles, and high-end manufacturing. Their surface quality directly affects the reliability of subsequent processing (such as welding and plating) and product performance, so high-precision and high-efficiency requirements are put forward for surface grinding. However, traditional metal strip grinding equipment has the following technical bottlenecks:
[0003] Traditional grinding equipment mostly adopts a single-wheel structure, with a small grinding range and low production efficiency. In addition, the metal belt needs to be fixed by a clamp during the grinding process. However, existing clamps mostly rely on manual adjustment or independent fixing equipment. This discrete fixing method not only interrupts production continuity, but also the separation design of the clamp and the grinding mechanism increases the complexity of the equipment, making it difficult to achieve automated linkage, which has become a core bottleneck restricting large-scale and efficient production.
[0004] At the same time, the surface of the metal strip is prone to residual metal debris and residual media produced by grinding. If not removed in time, the metal strip is prone to oxidation, rust and other problems due to the residual coolant. At the same time, the grinding debris is easy to embed into the surface to form microscopic defects, resulting in a decrease in the surface finish of the metal strip, affecting subsequent production and use.
[0005] Therefore, we propose a surface grinding processing equipment for a copper-steel composite metal strip to solve the above-mentioned problems. Summary of the invention
[0006] 1. Technical problems to be solved by the invention:
[0007] The object of the present invention is to provide a surface grinding processing equipment for a copper-steel composite metal strip to solve the problems in the current market raised by the above background technology.
[0008] 2. Technical solution:
[0009] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a surface grinding processing equipment for a copper-steel composite metal strip, comprising a frame, an A-side processing box is installed at the lower left end of the frame, a B-side processing box is installed at the upper left end of the frame, and a debris processing box is installed at the upper right end of the frame, conveying rollers are installed inside the A-side processing box, the B-side processing box and the debris processing box, and grinding components are arranged at the upper ends of the A-side processing box and the B-side processing box, the grinding components include a displacement module, and a grinding mechanism is installed at the output end of the displacement module, and a fixing component for fixing the copper-steel composite metal strip is installed on the side of the grinding mechanism;
[0010] A partition is fixed inside the debris processing box, and a cleaning component and a drying component are respectively installed on the left and right sides of the partition.
[0011] Furthermore, the displacement module includes a frame plate 1, a lateral displacement component is installed on the upper end of the frame plate 1 close to the copper-steel composite metal strip feeding side, and a frame plate 2 is installed on the output end of the lateral displacement component, and a longitudinal displacement component is installed on the frame plate 2, and the output end of the longitudinal displacement component is fixedly connected to the frame on the grinding mechanism.
[0012] Through the above technical solution, the grinding assembly can move up and down and forward and backward under the action of the displacement module.
[0013] Furthermore, the grinding mechanism includes a frame fixedly mounted on the output end of the longitudinal displacement assembly, a disc is mounted inside the lower end of the frame through a bearing, and a plurality of gears are mounted on the disc for equal angle rotation, and the gears and the gear ring form a meshing structure, and the gear ring is fixedly mounted on the frame, and a grinding wheel is mounted on the lower end of the gear.
[0014] Through the above technical solution, when the motor drives the disc to rotate, it can drive the gear to revolve orbitally. During the revolution of the gear, the meshing action between the gear rings is utilized to realize self-rotation, thereby improving the grinding effect of the metal belt.
[0015] Furthermore, the fixing assembly includes guide rods, clamping parts, clamping plates and elastic telescopic parts. The guide rods are symmetrically arranged in the A-side processing box and the B-side processing box, and the clamping parts are symmetrically arranged on the left and right sides of the grinding mechanism. The two groups of guide rods and the two groups of clamping parts are distributed one by one in the upper and lower parts. The A-side processing box and the B-side processing box are also symmetrically arranged in the front and back parts, and the lower ends of the several elastic telescopic parts are commonly connected to a "mouth"-shaped clamping plate, and the clamping plate is located below the clamping parts.
[0016] Through the above technical solution, the pressing plate can be moved upward and restored to its original position under the action of the elastic telescopic member.
[0017] Furthermore, the guide rod is composed of a first rod body and a second rod body, and a first guide groove is provided inside the front end of the first rod body and inside the rear end of the second rod body, and a second guide groove is provided inside the rear end of the first rod body and inside the front end of the second rod body;
[0018] The clamping member comprises a fixed plate fixed to the side of the grinding mechanism, two clamping rods are slidably mounted inside the fixed plate, and rollers are rotatably mounted at both ends of the clamping rods, and a pressure spring is connected between the clamping rods and the fixed plate;
[0019] The two rollers above the clamping rod are respectively fitted with the lower end surfaces of the first rod body and the second rod body, and the distance between the roller axes on the two clamping rods is equal to the distance between the entrances of the guide groove 1 on the first rod body and the guide groove 2 on the second rod body.
[0020] Through the above technical scheme, when the grinding assembly drives the fixed plate to move forward and backward, the clamping rod can be driven to move synchronously. When the two clamping rods are respectively separated from the guide groove one and the guide groove two, they can be simultaneously subjected to force to move downward, thereby squeezing the clamping plate. When the two clamping rods enter the guide groove one and the guide groove two respectively, they can move upward and return to their original positions under the elastic action of the pressure spring.
[0021] Furthermore, the cleaning assembly includes a pair of cross bars fixed inside the left side of the debris processing box, and a water spray pipe is rotatably installed on one side of the cross bar that is close to each other, and water spray ports are evenly spaced on the water spray pipe, and the end of the water spray pipe is connected to an external water supply device.
[0022] Through the above technical solution, when the water supply equipment is started, the two sides of the metal belt can be flushed and cleaned synchronously through the water spray port.
[0023] Furthermore, the drying component includes a pair of cross bars 2 fixed inside the right side of the debris processing box, and a jet pipe is rotatably installed on the side of the cross bars 2 close to each other, and jet ports are evenly spaced on the jet pipe, and the end of the jet pipe is connected to an external air supply device.
[0024] Through the above technical solution, when the air supply device is started, air can be blown synchronously to both sides of the metal strip through the air jets, thereby performing synchronous drying treatment on both sides of the metal strip.
[0025] Furthermore, an adjustment component is installed between the cleaning component and the drying component, and the adjustment component includes an electric push rod fixed to the outside of the debris processing box, a movable frame is fixed to the output end of the electric push rod, and the movable frame is slidably installed inside the debris processing box, and a pulley is rotatably installed on the movable frame, a driving rod is fixed on the rotating shaft of the water spray pipe and the rotating shaft of the air jet pipe, and the pulley is slidably installed inside the driving rod.
[0026] Through the above technical solution, when the electric push rod is started, it can drive the pulley on the movable frame to slide inside the driving rod, and then drive the driving rod to rotate.
[0027] Furthermore, the lower ends of the A-surface processing box, the B-surface processing box and the debris processing box are all connected to a drainage pipe.
[0028] Through the above technical solution, water can be discharged from the drainage pipe.
[0029] 3. Beneficial effects:
[0030] By adopting the technical solution provided by the present invention, compared with the prior art, the surface grinding processing equipment of the copper-steel composite metal strip of the present invention realizes the synchronous fixing of both sides of the metal strip during the grinding process through the setting of the grinding component, thereby preventing the metal strip from being displaced during the grinding process. At the same time, after the grinding of both sides of the metal strip is completed, the cleaning component and the drying component can be used for recycling, thereby improving the overall performance and service life of the product. The specific contents are as follows:
[0031] The copper-steel composite metal belt uses external unloading equipment and receiving equipment to achieve fixed-distance conveying. When grinding is required, the conveying is stopped, and the displacement module is started to drive the grinding component to move down and move back and forth to grind the copper-steel composite metal belt. When the grinding component is working, it drives the disc to rotate. When the disc rotates, due to the meshing relationship between the gear and the gear ring, the gear will rotate around its own axis while revolving along the circumferential direction of the gear ring. The grinding wheel installed at the lower end of the gear rotates at high speed with the rotation of the gear to grind the surface of the metal belt. Multiple grinding wheels working at the same time can improve the grinding efficiency, and the evenly distributed grinding wheels can ensure the consistency of the grinding effect, so that the flatness and smoothness of the metal belt surface are effectively improved;
[0032] During the forward and backward movement of the grinding assembly, the clamping rod is driven by the fixed plate to move synchronously forward and backward. Under the elastic action of the pressure spring, the roller at the upper end of the clamping rod is fitted against the lower end of the guide rod. When it moves out of the guide groove one or the guide groove two, the clamping rod is subjected to the extrusion force and moves downward under the action of relative movement, and is synchronously extruded toward the clamping plate, causing the clamping plate to be pressed tightly against the upper end surface of the metal belt. The metal belt is fixed by the extrusion of the clamping plate and the work table to prevent the metal belt from shifting during the grinding process. Subsequently, when the grinding is completed at this location, the rollers on the two clamping rods are respectively brought into the guide groove one and the guide groove two. Under the action of the pressure spring, the clamping rod moves up and away from the clamping plate. After the clamping plate is not subjected to the force, it moves up and returns to its initial position under the action of the elastic telescopic member, thereby releasing the clamping of the metal belt, and the metal belt can continue to be transported to the next process.
[0033] When both the A and B sides of the metal strip are polished, they are transported to the debris treatment box, and the water supply equipment and air supply equipment are started. The water supply equipment and air supply equipment spray water and air to the surface of the metal strip through the water nozzle and the air nozzle respectively. The cleaning component effectively removes the debris, polishing medium and residual water on the surface of the metal strip by spraying water, so that the surface of the metal strip reaches a high degree of cleanliness. The drying component blows the water after cleaning in time to prevent the metal strip from oxidation, rust and other problems due to residual water, improves the surface quality and corrosion resistance of the metal strip, provides a good foundation for the subsequent processing of the metal strip, and helps to improve the overall performance and service life of the product;
[0034] When the electric push rod is started, it can drive the movable frame to move forward and backward, and then drive the pulley to slide inside the driving rod. When the pulley slides inside the driving rod, it can drive the driving rod to rotate, and then the water spray pipe and the air jet pipe fixed to the driving rod can rotate to adjust the processing range of the water spray pipe and the air jet pipe, and then it can be flexibly adjusted according to the width of the metal belt. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0036] Figure 2 This is a schematic diagram of the front view of the internal structure of the A surface treatment box of the present invention;
[0037] Figure 3 This is a schematic diagram of the displacement module structure of the present invention;
[0038] Figure 4 This is a schematic structural diagram of the displacement module of the present invention from another perspective;
[0039] Figure 5 This is a schematic diagram of the grinding mechanism structure of the present invention;
[0040] Figure 6 It is a schematic diagram of the guide rod structure of the present invention;
[0041] Figure 7 It is a schematic diagram of the structure of the pressing piece of the present invention;
[0042] Figure 8 This is a schematic diagram of the structure of the debris processing box of the present invention;
[0043] Fig. 9 It is a schematic diagram of the structure of the regulating component of the present invention.
[0044] In the figure: 1, frame; 2, A surface processing box; 3, B surface processing box; 4, debris processing box; 5, drainage pipe; 6, displacement module; 61, frame plate 1; 62, lateral displacement assembly; 63, frame plate 2; 64, longitudinal displacement assembly; 7, grinding mechanism; 71, frame; 72, disc; 73, gear; 74, grinding wheel; 75, gear ring; 8, conveying roller; 9, work table; 10, fixing assembly; 101, guide rod; 1011, first rod body; 10111, guide groove 1; 10112, guide groove 2; 1 012, second rod body; 102, clamping member; 1021, fixing plate; 1022, clamping rod; 1023, roller; 1024, pressure spring; 103, clamping plate; 104, elastic telescopic member; 11, partition; 12, cleaning component; 121, cross bar one; 122, water spray pipe; 123, water spray port; 13, drying component; 131, cross bar two; 132, jet pipe; 133, jet port; 14, adjustment component; 141, electric push rod; 142, movable frame; 143, pulley; 144, driving rod. DETAILED DESCRIPTION
[0045] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. Example
[0046] See also Figure 1-9The present invention provides a technical solution: a surface grinding processing equipment for a copper-steel composite metal strip, comprising a frame 1, an A-side processing box 2 is installed at the lower left end of the frame 1, and a B-side processing box 3 is installed at the upper left end of the frame 1, and a debris processing box 4 is installed at the upper right end of the frame 1, and conveying rollers 8 are installed inside the A-side processing box 2, the B-side processing box 3 and the debris processing box 4, and grinding components are arranged at the upper ends of the A-side processing box 2 and the B-side processing box 3, the grinding components include a displacement module 6, and a grinding mechanism 7 is installed at the output end of the displacement module 6, and a fixing component 10 for fixing the copper-steel composite metal strip is installed on the side of the grinding mechanism 7; the displacement module 6 includes a frame plate 1 61, a lateral displacement assembly 62 is installed on the upper end of the frame plate 1 61 near the copper-steel composite metal strip feeding side, and a frame plate 2 63 is installed on the output end of the lateral displacement assembly 62, and a longitudinal displacement assembly 64 is installed on the frame plate 2 63, and the output end of the longitudinal displacement assembly 64 is fixedly connected to the frame body on the grinding mechanism 7; the grinding mechanism 7 includes a frame body 71 fixedly installed on the output end of the longitudinal displacement assembly 64, a disc 72 is installed inside the lower end of the frame body 71 through a bearing, and a plurality of gears 73 are installed on the disc 72 for equal angle rotation, and the gear 73 and the gear ring 75 form a meshing structure, and the gear ring 75 is fixedly installed on the frame body 71, A grinding wheel 74 is installed at the lower end of the gear 73; the fixing assembly 10 includes a guide rod 101, a pressing piece 102, a pressing plate 103 and an elastic telescopic piece 104, the A surface processing box 2 and the B surface processing box 3 are respectively provided with guide rods 101 symmetrically on the left and right, and the pressing pieces 102 are symmetrically provided on the left and right sides of the grinding mechanism 7, the two groups of guide rods 101 and the two groups of pressing pieces 102 are distributed one by one up and down, and the A surface processing box 2 and the B surface processing box 3 are also respectively provided with a plurality of elastic telescopic pieces 104 symmetrically front and back, and the lower ends of the plurality of elastic telescopic pieces 104 are commonly connected with a "mouth"-shaped pressing plate 103, and the pressing plate 103 is located below the pressing piece 102; The guide rod 101 is composed of a first rod body 1011 and a second rod body 1012, and a guide groove 10111 is provided inside the front end of the first rod body 1011 and inside the rear end of the second rod body 1012, and a guide groove 2 10112 is provided inside the rear end of the first rod body 1011 and inside the front end of the second rod body 1012; the pressing member 102 includes a fixed plate 1021 fixed to the side of the grinding mechanism 7, and two pressing rods 1022 are slidably installed in the fixing plate 1021, and rollers 1023 are rotatably installed at the upper and lower ends of the pressing rod 1022, and a pressure spring 1024 is connected between the pressing rod 1022 and the fixing plate 1021;The two rollers 1023 located above the pressing rod 1022 are respectively fitted with the lower end surfaces of the first rod 1011 and the second rod 1012. The distance between the axes of the rollers 1023 on the two pressing rods 1022 is equal to the distance between the entrances of the guide groove 1 10111 on the first rod 1011 and the guide groove 2 10112 on the second rod 1012. The distances are both a, as shown in the attached manual; Figure 7 As shown; the lower ends of the A surface processing box 2, the B surface processing box 3 and the debris processing box 4 are all connected to a drainage pipe 5;
[0047] The copper-steel composite metal belt is transported at a fixed distance by using a conveying roller 8 and an external material discharge device and a material receiving device. When grinding is required, the conveying is stopped, and the displacement module 6 is started to drive the grinding mechanism 7 to move downward and move forward and backward to grind the copper-steel composite metal belt;
[0048] When the grinding mechanism 7 is working, the motor connected to the upper end of the disc 72 is started, and the motor drives the disc 72 to rotate. When the disc 72 rotates, due to the meshing relationship between the gear 73 and the gear ring 75, the gear 73 will rotate around its own axis while revolving along the circumferential direction of the gear ring 75, so that the grinding wheel 74 installed at the lower end of the gear 73 rotates at high speed with the rotation of the gear 73 to grind the surface of the metal belt. Multiple grinding wheels 74 work at the same time, which can improve the grinding efficiency, and the evenly distributed grinding wheels 74 can ensure the consistency of the grinding effect, so that the flatness and smoothness of the metal belt surface are effectively improved;
[0049] When the lateral displacement component 62 drives the grinding mechanism 7 to move forward and backward, the fixing plate 1021 can drive the clamping rod 1022 to move forward and backward synchronously. Under the elastic action of the pressure spring 1024, the roller 1023 at the upper end of the clamping rod 1022 fits the lower end of the guide rod 101. When it moves out of the guide groove 10111 or the guide groove 2 10112, the clamping rod 1022 is subjected to the extrusion force and moves downward under the action of relative movement, and then squeezes the clamping plate 103, so that the clamping plate 103 is pressed against the upper end surface of the metal belt. The metal belt passes through the clamping plate 103 and the working The cooperation of the platen 9 is fixed to prevent the metal belt from shifting during the grinding process. Afterwards, when the grinding is completed, the grinding mechanism 7 is driven to the front or rear side of the metal belt, and then the rollers 1023 on the two clamping rods 1022 are respectively brought into the guide groove 1 10111 and the guide groove 2 10112. Under the action of the pressure spring 1024, the clamping rod 1022 moves up away from the clamping plate 103. After the clamping plate 103 is not subjected to the force, it moves up to the initial position under the action of the elastic telescopic member 104, releasing the clamping of the metal belt, and the metal belt can continue to be transported to the next process.
[0050] A partition 11 is fixed inside the debris treatment box 4, and a cleaning component 12 and a drying component 13 are respectively installed on the left and right sides of the partition 11; the cleaning component 12 includes a pair of cross bars 121 fixed inside the left side of the debris treatment box 4, and a water spray pipe 122 is rotatably installed on one side of the cross bars 121 close to each other, and water spray ports 123 are evenly spaced on the water spray pipe 122, and the end of the water spray pipe 122 is connected to an external water supply device; the drying component 13 includes a pair of cross bars 131 fixed inside the right side of the debris treatment box 4, and a jet pipe 132 is rotatably installed on one side of the cross bars 131 close to each other, and the jet pipe 1 The water jet nozzles 133 are evenly spaced on the water jet nozzle 132, and the end of the air jet pipe 132 is connected to an external air supply device; an adjustment component 14 is installed between the cleaning component 12 and the drying component 13, and the adjustment component 14 includes an electric push rod 141 fixed to the outside of the debris processing box 4, and a movable frame 142 is fixed to the output end of the electric push rod 141, and the movable frame 142 is slidably installed inside the debris processing box 4, and a pulley 143 is rotatably installed on the movable frame 142, and a driving rod 144 is fixed on the rotating shaft of the water jet pipe 122 and the rotating shaft of the air jet pipe 132, and the pulley 143 is slidably installed inside the driving rod 144;
[0051] When the grinding components on the A-side processing box 2 and the grinding components on the B-side processing box 3 have finished grinding the A-side and B-side of the metal belt, the metal belt is transported to the debris processing box 4, and the water supply equipment and the air supply equipment are started. The water supply equipment and the air supply equipment spray water and air to the surface of the metal belt through the water nozzle 123 and the air nozzle 133 respectively. The cleaning component 12 effectively removes the debris, grinding medium and residual water on the surface of the metal belt by spraying water, so that the surface of the metal belt reaches a higher degree of cleanliness. The drying component 13 promptly dries the water after cleaning to prevent the metal belt from oxidation, rust and other problems due to residual water, thereby improving the surface quality and corrosion resistance of the metal belt, providing a good foundation for the subsequent processing of the metal belt, and helping to improve the overall performance and service life of the product. The water is discharged from the drain pipe 5 installed at the bottom of the debris processing box 4.
[0052] Working principle: When using the surface grinding processing equipment of the copper-steel composite metal strip, Figure 1-9As shown, the copper-steel composite metal belt is transported at a fixed distance by means of a conveying roller 8 and external unloading equipment and receiving equipment. When grinding operation is required, the conveying is stopped, and the displacement module 6 is started to drive the grinding mechanism 7 to move downward and move forward and backward to grind the copper-steel composite metal belt. During the forward and backward movement, the grinding mechanism 7 drives the clamping plate 103 to be pressed tightly on the upper surface of the metal belt by means of the cooperation of the clamping piece 102 and the guide rod 101. The lower end surface of the metal belt is fixed by means of the cooperation with the working table 9 to prevent the metal belt from being displaced during the grinding process. The two sides of the metal belt are respectively polished by the polishing components on the A side processing box 2 and the polishing components on the B side processing box 3. When the grinding operation is completed, the metal belt enters the debris processing box 4, and the debris impurities on the surface of the metal belt are cleaned by the cleaning component 12, and the surface moisture is blown dry by the drying component 13, and then the metal belt is wound by the receiving equipment.
[0053] The contents not described in detail in this specification belong to the prior art known to professional and technical personnel in this field.
[0054] In the description of the present invention, unless otherwise specified, "plurality" means two or more than two; the orientations or positional relationships indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", "third", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0055] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "connected" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0056] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A surface grinding and processing equipment for a copper-steel composite metal strip, characterized in that: The machine comprises a frame (1), wherein an A-side processing box (2) is installed at the lower left end of the frame (1), and a B-side processing box (3) is installed at the upper left end of the frame (1), and a debris processing box (4) is installed at the upper right end of the frame (1), wherein conveying rollers (8) are installed inside the A-side processing box (2), the B-side processing box (3) and the debris processing box (4), and a grinding assembly is provided at the upper ends of the A-side processing box (2) and the B-side processing box (3), wherein the grinding assembly comprises a displacement module (6), and a grinding mechanism (7) is installed at the output end of the displacement module (6), and a fixing assembly (10) for fixing the copper-steel composite metal belt is installed on the side of the grinding mechanism (7); A partition (11) is fixed inside the debris processing box (4), and a cleaning component (12) and a drying component (13) are respectively installed on the left and right sides of the partition (11); The fixing assembly (10) comprises a guide rod (101), a pressing piece (102), a pressing plate (103) and an elastic telescopic piece (104); the guide rods (101) are symmetrically arranged in the A surface processing box (2) and the B surface processing box (3), and the pressing pieces (102) are symmetrically arranged on the left and right sides of the grinding mechanism (7); the two groups of guide rods (101) and the two groups of pressing pieces (102) are distributed one by one in the upper and lower parts; the A surface processing box (2) and the B surface processing box (3) are also symmetrically arranged in the front and back parts, and the lower ends of the plurality of elastic telescopic pieces (104) are commonly connected to a "mouth"-shaped pressing plate (103), and the pressing plate (103) is located below the pressing piece (102); The cleaning assembly (12) comprises a pair of cross bars (121) fixed inside the left side of the debris treatment box (4), a water spray pipe (122) being rotatably mounted on one side of the cross bars (121) close to each other, and water spray ports (123) being arranged at equal intervals on the water spray pipe (122), and an end of the water spray pipe (122) being connected to an external water supply device; The drying assembly (13) comprises a pair of second cross bars (131) fixed inside the right side of the debris processing box (4), a jet pipe (132) being rotatably mounted on one side of the second cross bars (131) close to each other, and jet ports (133) being provided on the jet pipe (132) at equal intervals, and an end of the jet pipe (132) being connected to an external air supply device; An adjustment component (14) is installed between the cleaning component (12) and the drying component (13), and the adjustment component (14) comprises an electric push rod (141) fixed to the outside of the debris processing box (4), a movable frame (142) is fixed to the output end of the electric push rod (141), and the movable frame (142) is slidably installed inside the debris processing box (4), and a pulley (143) is rotatably installed on the movable frame (142), and a driving rod (144) is fixed on the rotating shaft of the water spray pipe (122) and the rotating shaft of the air spray pipe (132), and the pulley (143) is slidably installed inside the driving rod (144).
2. The surface grinding processing equipment of a copper-steel composite metal strip according to claim 1 is characterized in that: The displacement module (6) comprises a frame plate 1 (61), a lateral displacement component (62) being installed on the upper end of the frame plate 1 (61) close to the copper-steel composite metal strip feeding side, and a frame plate 2 (63) being installed on the output end of the lateral displacement component (62), and a longitudinal displacement component (64) being installed on the frame plate 2 (63), and the output end of the longitudinal displacement component (64) being fixedly connected to the frame body on the grinding mechanism (7).
3. The surface grinding processing equipment of a copper-steel composite metal strip according to claim 1 is characterized in that: The grinding mechanism (7) comprises a frame (71) fixedly mounted on the output end of the longitudinal displacement assembly (64); a disc (72) is mounted inside the lower end of the frame (71) via a bearing; a plurality of gears (73) are mounted on the disc (72) for rotation at equal angles; the gears (73) and a gear ring (75) form a meshing structure; the gear ring (75) is fixedly mounted on the frame (71); and a grinding wheel (74) is mounted on the lower end of the gear (73).
4. The surface grinding processing equipment of a copper-steel composite metal strip according to claim 1 is characterized in that: The guide rod (101) is composed of a first rod body (1011) and a second rod body (1012), and a first guide groove (10111) is provided inside the front end of the first rod body (1011) and inside the rear end of the second rod body (1012), and a second guide groove (10112) is provided inside the rear end of the first rod body (1011) and inside the front end of the second rod body (1012); The pressing member (102) comprises a fixing plate (1021) fixed to the side of the grinding mechanism (7), two pressing rods (1022) are slidably mounted in the fixing plate (1021) and rollers (1023) are rotatably mounted at both upper and lower ends of the pressing rods (1022), and a pressure spring (1024) is connected between the pressing rods (1022) and the fixing plate (1021); Two rollers (1023) located above the pressing rod (1022) are respectively fitted with the lower end surfaces of the first rod body (1011) and the second rod body (1012), and the distance between the axes of the rollers (1023) on the two pressing rods (1022) is equal to the distance between the entrances of the guide groove 1 (10111) on the first rod body (1011) and the guide groove 2 (10112) on the second rod body (1012).
5. The surface grinding processing equipment of a copper-steel composite metal strip according to claim 1 is characterized in that: The lower ends of the A-side processing box (2), the B-side processing box (3) and the debris processing box (4) are all connected to a drainage pipe (5).
Citation Information
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