A surface processing equipment for copper foil manufacturing
By designing copper foil manufacturing surface processing equipment, combining cleaning structure, moving structure and load-bearing structure, the problem of removing impurities on the surface of single-piece copper foil is solved, and an efficient and uniform cleaning effect is achieved, adapting to copper foil of different sizes and shapes is improved production efficiency.
Patent Information
- Application Number
- CN202510651053.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2045-05-20
AI Technical Summary
Existing copper foil cleaning equipment is difficult to effectively remove impurities on the surface of a single piece of copper foil, especially edge impurities generated during the cutting process, and the cleaning efficiency is low, so it cannot adapt to copper foil of different sizes and shapes.
A copper foil manufacturing surface processing equipment is designed, including cleaning structures, moving structures, load-bearing structures and escort structures. Through the combination of these structures, precise cleaning of single-piece copper foil can be achieved, and the flushing angle and position can be adjusted to adapt to copper foil of different sizes and shapes.
The uniform cleaning of the surface of a single piece of copper foil is achieved, the cleaning efficiency is improved, the edge area is sufficiently cleaned, manual intervention is reduced, production efficiency is improved and the integrity of the copper foil is protected.
Smart Images

Figure CN120155402B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of copper foil processing, in particular to a surface processing device for copper foil manufacturing. Background Art
[0002] Copper foil cleaning is a process of great significance in many fields such as electronics and chemical industry. The purpose of cleaning is to remove impurities and improve surface performance. Because copper foil may be contaminated with impurities such as oil, dust, oxides, etc. during the production process, the cleaning methods include chemical cleaning and physical cleaning. The most common method is physical high-pressure water washing. Water is sprayed at high speed onto the surface of the copper foil through a high-pressure water gun, and the impurities are removed by the impact force of the water flow. This method is more suitable for removing larger particles of impurities. However, most existing equipment cleans the copper foil in the guiding stage after production and before winding. However, since some copper foils need to be sliced to form a single piece of copper foil, a copper foil manufacturing surface processing equipment is designed. Summary of the invention
[0003] The object of the present invention is to provide a surface processing equipment for copper foil manufacturing to solve the problems raised in the above background technology.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a copper foil manufacturing surface processing equipment, comprising a cleaning structure, a pair of moving structures, a bearing structure and an escorting structure; the pair of moving structures are symmetrically fixedly arranged on the cleaning structure, and the moving structures penetrate the cleaning structure, the bearing structure can be detachably arranged on the moving structure, the bearing structure is moved into the cleaning structure, the number of the bearing structures is several, and the escorting structure is symmetrically arranged on the right end of the side baffle in the bearing structure.
[0005] Preferably, the cleaning structure includes a cleaning box, a controller, a front cover, a filter, a liquid pump, a three-way pipe and a cleaning component; the cleaning box is a rectangular box, and the cleaning box is symmetrically provided with feeding ports on the left and right side walls near the top, the front side wall of the cleaning box is provided with a mounting port located in the middle of the top, and the front side wall of the cleaning box is provided with a filter port near the middle of the bottom, a pair of water valves are installed at the bottom end of the front side wall of the cleaning box, and the pair of water valves are respectively used for water supply and drainage connections, the controller is fixedly arranged on the upper wall of the cleaning box, the front cover can be detachably buckled at the mounting port on the front side of the cleaning box, the two ends of the horizontal plate are respectively fixedly arranged on the left and right side walls inside the cleaning box, the liquid pump is fixedly arranged on the lower wall inside the cleaning box, one end of the three-way pipe is fixedly arranged on the liquid outlet end of the liquid pump, the other two ends of the three-way pipe are provided with water supply pipes, and one of the water supply pipes is fixedly passed through the rear side wall of the cleaning box, and the cleaning component is arranged in the middle of the upper wall inside the cleaning box.
[0006] Preferably, the cleaning assembly includes a hydraulic cylinder, an electric slide rail, a pair of machine bases, a pair of first motors, a pair of rotating seats, a pair of second motors, a pair of rotating arms, and a pair of spray heads; one end of the hydraulic cylinder is fixedly arranged in the middle of the upper wall of the cleaning tank, the electric slide rail is fixedly arranged on the telescopic end of the hydraulic cylinder, and both ends of the electric slide rail are opposite to the feeding port respectively. A pair of relatively moving moving seats are arranged on the electric slide rail. A pair of the machine bases are respectively arranged on the electric slide rail and can move relatively. A pair of the first motors are respectively fixedly arranged on the machine bases, and the driving ends of the first motors movably penetrate through the middle of the machine bases and vertically downward. A pair of the rotating seats are both concave-shaped, and a pair of the rotating seats are respectively fixedly arranged on the driving ends of the first motors. A pair of the second motors are respectively arranged on the side walls of one ends of the rotating seats, and the driving ends of the second motors respectively movably penetrate through both ends of the rotating seats. One ends of a pair of the rotating arms are respectively movably inserted between both ends of the rotating seats, and one ends of the rotating arms are fixedly sleeved on the driving ends of the second motors. A pair of the spray heads are respectively arranged on the other ends of the rotating arms, and the spray heads are connected with a water supply pipe.
[0007] Preferably, the moving structure includes a moving frame, a pair of conveying wheels, a conveyor belt, a third motor, a pair of first belt pulleys, a first belt, and a plurality of limiting units; the middle of the moving frame is of a concave structure. The middle of the moving frame is fixedly arranged on the rear side wall of the cleaning tank, and the moving frame is located in the middle of the feeding port. Both ends of the moving frame are respectively located on the left and right sides of the cleaning tank. A pair of the conveying wheels are respectively movably arranged on the left and right ends of the moving frame, and the conveying wheels are located in the feeding port. Both ends of the conveyor belt are respectively movably sleeved on the conveying wheels. The third motor is fixedly arranged on one end of the moving frame. A pair of the belt pulleys are respectively fixedly arranged on the driving end of the third motor and one of the conveying wheels. Both ends of the first belt are respectively movably sleeved on the first belt pulleys. A plurality of the limiting units are respectively arranged on the conveyor belt at equal intervals.
[0008] Preferably, the limiting unit includes a limiting block, a limiting seat, a first bolt, and a pair of retaining edges; the limiting block is fixedly arranged on the upper wall of the conveyor belt, and the limiting block is of an I-shaped structure. The limiting seat is movably sleeved on the limiting block and can slide left and right. A regulating groove is formed in the middle of the front side wall of the limiting seat. The first bolt movably penetrates through the regulating groove and is screwed into the front side wall of the limiting block. A pair of the retaining edges are respectively arranged in parallel on the upper wall of one end of the limiting seat, and there is a certain distance between the retaining edges.
[0009] Preferably, the bearing structure includes a main body seat, a pair of vertical plates, a support plate, a storage battery, a pair of side baffles, a pair of second bolts, two pairs of infrared sensors, and a conveying assembly; the main body seat is rectangular, and a through L-shaped installation groove communicating with the upper wall is provided in the middle near the top of the main body seat. Width adjustment grooves are symmetrically arranged at the bottom end of the main body seat and are located below the L-shaped installation groove. Lifting grooves are provided on the front and rear side walls of the L-shaped installation groove. A power switch is arranged on the upper wall at the rear end of the main body seat. The pair of vertical plates are symmetrically arranged on the front and rear ends of the main body seat. One end of the support plate is fixedly arranged on the right side wall of the main body seat and is located between the L-shaped installation groove and the width adjustment groove. The upper wall of the support plate is on the same horizontal plane as the lower wall of the L-shaped installation groove. One end of the support plate is of a cavity structure, and a charging port is provided on the front side wall near one end. A vertical block corresponding to the vertical plate is arranged at the other end of the support plate. The storage battery is fixedly arranged inside one end of the support plate. The pair of side baffles are both concave-shaped, and a moving groove is provided near the top of the side baffle. The pair of side baffles are respectively movably clamped on the support plate, and one end of the side baffle is movably inserted into the width adjustment groove. The pair of second bolts are respectively rotatably connected to one end of the side baffle and are located on the left side of the main body seat. The side baffle is fixed by the second bolt. The two pairs of infrared sensors are respectively embedded in the left and right ends of the opposite side walls of the side baffle, and the infrared sensor is located above the support plate. The conveying assembly is movably arranged in the L-shaped installation groove of the main body seat.
[0010] Preferably, the conveying assembly includes a conveying frame, a conveying roller, a fourth motor, a pair of second pulleys, a second belt, three limiting rods, three first springs, and a pair of pull rings; the conveying frame is a portal frame. The two ends of the conveying frame are respectively movably inserted into the lifting grooves. The conveying roller is movably arranged between the two ends of the conveying frame and is in contact with the lower wall of the L-shaped installation groove. The fourth motor is fixedly arranged on the upper wall at the rear end of the conveying frame. The pair of second pulleys are respectively fixedly arranged on the driving end of the fourth motor and one end of the conveying roller. The pulleys are located in the lifting grooves. The two ends of the second belt are respectively movably sleeved on the second pulleys. One ends of the three limiting rods are respectively fixedly arranged on the upper wall of the conveying frame, and the other ends movably penetrate through the upper wall of the L-shaped installation groove. The three first springs are respectively movably sleeved on the middle parts of the limiting rods. The pair of pull rings are respectively symmetrically arranged on the upper wall of the conveying frame.
[0011] Preferably, the escort structure includes a pressure frame, a third bolt, a pressure arm, a second spring, a fifth motor and a pressure roller; one end of the pressure frame movably passes through the movable groove of the side baffle, the third bolt movably screwed to one end of the pressure frame, the front side wall of the other end of the pressure frame is L-shaped, one end of the pressure arm is movably arranged on the front side wall of the right end of the pressure frame, one end of the second spring is fixedly connected to the left side wall of the other end of the pressure frame, and the other end of the second spring is obliquely connected to one end of the pressure arm, the fifth motor is fixedly arranged at the other end of the pressure arm, and the driving end of the fifth motor movably passes through the other end of the pressure arm, the pressure roller is fixedly arranged on the driving end of the fifth motor, and the pressure roller is in contact with the upper wall of the pallet.
[0012] The present invention provides a copper foil manufacturing surface processing equipment, which has the following beneficial effects: the present invention cleans the surface of a single copper foil after cutting in copper foil production, and fixes copper foils of different lengths and widths by cooperating with a bearing structure and an escort structure, and can drive the copper foil to move left and right to adjust the cleaning position; the bearing structure is moved rightward by a moving structure to drive it into the cleaning structure, and then the cleaning component in the cleaning structure is used to adjust the flushing angle and flushing position according to copper foils of different sizes, so as to realize the cleaning of a single copper foil; in summary, the present invention has the following effects:
[0013] 1. It can fix copper foils of different lengths and widths and has strong versatility. The cleaning component can adjust the flushing angle and flushing position according to the copper foils of different sizes, ensuring that the entire copper foil surface can be effectively cleaned to ensure the uniformity of the cleaning effect.
[0014] 2. The cleaning position is adjusted by driving the copper foil to move left and right through the cooperation of the bearing structure and the escort structure. During the copper foil cutting process, more impurities or cutting residues may be generated at the edge. By moving the copper foil, these areas that need to be cleaned can be accurately moved to the optimal cleaning position of the cleaning component, so that the edge area can be more fully cleaned.
[0015] 3. The mobile structure moves the bearing structure to the right to drive the copper foil into the cleaning structure, so that the cleaning process forms an orderly process. This continuity helps to improve production efficiency and reduce manual intervention. In addition, since the copper foil is thin, the support plate bears the force to prevent damage. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the assembly structure of the present invention.
[0017] Figure 2 It is a schematic diagram of the disassembly structure of the cleaning structure of the present invention.
[0018] Figure 3 It is a schematic diagram of the split structure of the mobile structure of the present invention.
[0019] Figure 4 It is a schematic diagram of the disassembled and enlarged structure of the bearing structure of the present invention.
[0020] Figure 5 It is a schematic diagram of the disassembled and enlarged structure of the escort structure of the present invention.
[0021] Figure 6 It is a schematic diagram of the enlarged structure of the load-bearing structure assembly of the present invention.
[0022] Figure 7 This is an enlarged schematic diagram showing the structure of the limiting unit of the present invention.
[0023] Figure 8 for Figure 2 A partial enlarged view of point A in the figure.
[0024] Figure 9 for Figure 3 A partial enlarged view of point B in FIG.
[0025] Figure 10 for Figure 4 A partial enlarged view of point C in the figure.
[0026] Figure 11 for Figure 4 A partial enlarged view of point D in the figure.
[0027] Figure 12 for Figure 1 A partial enlarged view of point E in the figure.
[0028] In the figure: 1. cleaning structure; 11. cleaning box; 12. controller; 13. front cover; 14. filter screen; 15. liquid pump; 16. three-way pipe; 17. cleaning assembly; 171. hydraulic cylinder; 172. electric slide rail; 173. machine base; 174. first motor; 175. rotating seat; 176. second motor; 177. rotating arm; 178. nozzle; 2. moving structure; 21. moving frame; 22. conveying wheel; 23. conveying belt; 24. third motor; 25. first pulley; 26. first belt; 27. limiting unit; 271. limiting block; 272. limiting seat; 273. first screw Bolt; 274, retaining edge; 3, bearing structure; 31, main seat; 32, vertical plate; 33, support plate; 34, battery; 35, side baffle; 36, second bolt; 37, infrared sensor; 38, conveying assembly; 381, conveying frame; 382, conveying roller; 383, fourth motor; 384, second pulley; 385, second belt; 386, limit rod; 387, first spring; 388, pull ring; 4, escort structure; 41, pressure frame; 42, third bolt; 43, pressure arm; 44, second spring; 45, fifth motor; 46, pressure roller; 5, switch; 6, vertical block; 7, water valve. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0030] See also Figures 1 - 12 The present invention provides a technical solution: a copper foil manufacturing surface processing equipment, comprising a cleaning structure 1, a pair of moving structures 2, a bearing structure 3 and an escorting structure 4; the pair of moving structures 2 are symmetrically fixedly arranged on the cleaning structure 1, and the moving structures 2 penetrate the cleaning structure 1, the bearing structure 3 is detachably arranged on the moving structure 2, the bearing structure 3 is moved into the cleaning structure 1, the number of the bearing structures 3 is several, the escorting structure 4 is symmetrically arranged on the right end of the side baffle 35 in the bearing structure 3, the single copper foil is limited by the bearing structure 3, the bearing structure 3 is moved into the cleaning structure 1 by the moving structure 2, the copper foil is rinsed by the cleaning structure 1, and the single copper foil is limited and moved left and right by the escorting structure 4 and the bearing structure 3.
[0031] Furthermore, Figure 1 and Figure 2 As shown, the cleaning structure 1 includes a cleaning box 11, a controller 12, a front cover plate 13, a filter screen 14, a liquid pump 15, a three-way pipe 16 and a pair of cleaning components 17; the cleaning box 11 is a rectangular box, and the cleaning box 11 is symmetrically provided with feeding ports on the left and right side walls near the top, a mounting port is provided on the front side wall of the cleaning box 11 in the middle of the top, a filter port is provided on the front side wall of the cleaning box 11 near the middle of the bottom, a pair of water valves 7 are installed at the bottom of the front side wall of the cleaning box 11, and the pair of water valves 7 are respectively used for water supply and drainage connection, the controller 12 is fixedly arranged on the upper wall of the cleaning box 11, and the front cover plate 13 is provided with a filter screen 14, and the filter screen 14 ... The liquid pump 15 is fixedly arranged on the lower wall of the cleaning box 11, one end of the three-way pipe 16 is fixedly arranged on the liquid outlet end of the liquid pump 15, and the other two ends of the three-way pipe 16 are provided with water supply pipes, and one of the water supply pipes is fixedly passed through the rear wall of the cleaning box 11. The cleaning component 17 is arranged in the middle of the upper wall of the cleaning box 11, and the equipment is controlled by the controller 12, and the liquid pump 15 is used to extract the water and supply it to the cleaning component 17 through the three-way pipe 16, and the water is filtered by the filter net 14 and recycled.
[0032] Furthermore, Figure 2 and Figure 8As shown in the figure, the cleaning component 17 includes a hydraulic cylinder 171, an electric slide rail 172, a pair of machine bases 173, a pair of first motors 174, a pair of rotating bases 175, a pair of second motors 176, a pair of rotating arms 177, and a pair of spray heads 178. One end of the hydraulic cylinder 171 is fixedly arranged in the middle of the upper wall inside the cleaning tank 11. The electric slide rail 172 is fixedly arranged on the telescopic end of the hydraulic cylinder 171, and both ends of the electric slide rail 172 are opposite to the feeding port. A pair of moving seats that move relative to each other are arranged on the electric slide rail 172. A pair of machine bases 173 are respectively arranged on the electric slide rail 172 and can move relative to each other. A pair of first motors 174 are respectively fixedly arranged on the machine bases 173, and the driving ends of the first motors 174 movably penetrate through the middle of the machine bases 173 and vertically downward. A pair of rotating bases 175 are both concave-shaped. A pair of rotating bases 175 are respectively fixedly arranged on the driving ends of the first motors 174. A pair of second motors 176 are respectively arranged on the side walls of one end of the rotating bases 175, and the driving ends of the second motors 176 respectively movably penetrate through both ends of the rotating bases 175. One ends of a pair of rotating arms 177 are respectively movably inserted between both ends of the rotating bases 175, and one end of the rotating arm 177 is fixedly sleeved on the driving end of the second motor 176. A pair of spray heads 178 are respectively arranged on the other ends of the rotating arms 177, and the spray heads 178 are connected to the water supply pipe. The hydraulic cylinder 171 drives the spray heads 178 to move up and down to adjust the spraying range and impact force of the spray heads 178. The electric slide rail 172 adjusts the distance between the spray heads 178 to adjust the spraying position and impact water volume. The second motor 176 drives the spray heads 178 on the rotating arms 177 to flip to adjust the flushing angle. The first motor 174 drives the spray heads 178 to rotate left and right to adjust the flushing range.
[0033] Furthermore, as Figure 3 shown, the moving structure 2 includes a moving frame 21, a pair of conveying wheels 22, a conveyor belt 23, a third motor 24, a pair of first belt pulleys 25, a first belt 26, and several limiting units 27. The middle of the moving frame 21 is a concave structure. The middle of the moving frame 21 is fixedly arranged on the rear side wall of the cleaning tank 11, and the moving frame 21 is located in the middle of the feeding port. Both ends of the moving frame 21 are respectively located on the left and right sides of the cleaning tank 11. A pair of conveying wheels 22 are respectively movably arranged on both ends of the moving frame 21, and the conveying wheels 22 are located inside the feeding port. Both ends of the conveyor belt 23 are respectively movably sleeved on the conveying wheels 22. The third motor 24 is fixedly arranged on one end of the moving frame 21. A pair of belt pulleys are respectively fixedly arranged on the driving end of the third motor 24 and one of the conveying wheels 22. Both ends of the first belt 26 are respectively movably sleeved on the first belt pulleys 25. Several limiting units 27 are respectively arranged on the conveyor belt 23 at equal intervals. Driven by the third motor 24, the conveyor belt 23 on the conveying wheels 22 is driven to rotate by means of the transmission of the first belt pulley 25 and the first belt 26, so as to drive the limiting units 27 to move reciprocally.
[0034] Furthermore, as Figure 3 、Figure 7 , Figure 9 and Figure 12 As shown in Figure 7 , Figure 9 and Figure 12 , the limit unit 27 includes a limit block 271, a limit seat 272, a first bolt 273 and a pair of retaining edges 274; the limit block 271 is fixedly arranged on the upper wall of the conveyor belt 23, and the limit block 271 is in the shape of an I. The limit seat 272 is movably sleeved on the limit block 271 and can slide left and right. A regulating groove is formed in the middle of the front side wall of the limit seat 272. The first bolt 273 movably penetrates through the regulating groove and is screwed into the front side wall of the limit block 271. A pair of retaining edges 274 are respectively arranged in parallel on the upper wall of one end of the limit seat 272, and there is a certain distance between the retaining edges 274. By installing and moving the limit seat 272 left and right on the limit block 271, the distance between the retaining edges 274 on adjacent limit blocks 271 is adjusted to fit the vertical plate 32 and the vertical block 6 for placing the bearing structure 3.
[0035] Furthermore, as shown in Figure 4 , Figure 6 and Figure 10As shown in the figure, the bearing structure 3 includes a main body base 31, a pair of vertical plates 32, a support plate 33, a storage battery 34, a pair of side baffles 35, a pair of second bolts 36, two pairs of infrared sensors 37, and a conveying assembly 38; the main body base 31 is rectangular, and an L-shaped installation groove communicating with the upper wall is provided in the middle near the top of the main body base 31. Width adjustment grooves are symmetrically arranged at the bottom end of the main body base 31, and the width adjustment grooves are located below the L-shaped installation groove. Lifting grooves are provided on the front and rear side walls of the L-shaped installation groove. A power switch 5 is arranged on the upper wall at the rear end of the main body base 31. A pair of vertical plates 32 are symmetrically arranged on the front and rear ends of the main body base 31. One end of the support plate 33 is fixedly arranged on the right side wall of the main body base 31 and is located between the L-shaped installation groove and the width adjustment groove. The upper wall of the support plate 33 is on the same horizontal plane as the lower wall of the L-shaped installation groove. One end of the support plate 33 is of a cavity structure, and a charging port is arranged on the front side wall near one end of the support plate 33. The support plate 33 is of a metal structure, and the upper wall surface of the support plate 33 is a smooth wall surface, and processes such as polishing and electroplating can be used. A vertical block 6 corresponding to the vertical plate 32 is arranged at the other end of the support plate 33. The storage battery 34 is fixedly arranged inside one end of the support plate 33. Both of the pair of side baffles 35 are concave, and a moving groove is provided near the top of the side baffle 35. The pair of side baffles 35 are respectively movably clamped on the support plate 33, and one end of the side baffle 35 is movably inserted into the width adjustment groove. The pair of second bolts 36 are respectively movably screwed on one end of the side baffle 35 and are located on the left side of the main body base 31. The side baffle 35 is fixed by the second bolt 36. The two pairs of infrared sensors 37 are respectively embedded in the left and right ends of the opposite side walls of the side baffle 35, and the infrared sensors 37 are located above the support plate 33. The conveying assembly 38 is movably arranged in the L-shaped installation groove of the main body base 31; the conveying assembly 38 moves up and down in the main body base 31 to fit the thickness of the copper foil and receive the pressed copper foil. The vertical plates 32 and the vertical block 6 on the support plate 33 are respectively placed between the two retaining edges 274 for limiting and placing on the conveyor belt 23. The relative distance between the side baffles 35 is adjusted by the second bolt 36. The power supply of the storage battery 34 is used to control the switches of the conveying assembly 38 and the infrared sensors 37 through the power switch 5. The infrared sensors 37 are used to sense the copper foil entering the support plate 33.
[0036] Furthermore, as Figure 4 and Figure 11As shown, the conveying assembly 38 includes a conveying frame 381, a conveying roller 382, a fourth motor 383, a pair of second pulleys 384, a second belt 385, three limit rods 386, three first springs 387 and a pair of pull rings 388; the conveying frame 381 is a door-type frame, and the two ends of the conveying frame 381 are respectively movably inserted in the lifting groove, the conveying roller 382 is movably arranged between the two ends of the conveying frame 381, and the conveying roller 382 is in contact with the lower wall of the L-shaped mounting groove, the fourth motor 383 is fixedly arranged on the upper wall of the rear end of the conveying frame 381, and a pair of second pulleys 384 are respectively fixedly arranged on the driving end of the fourth motor 383 and one end of the conveying roller 382, the pulley is located in the lifting groove, and the second belt The two ends of 385 are movably mounted on the second pulley 384, one end of the three limit rods 386 is fixedly arranged on the upper wall of the conveying frame 381, and the other end is movably passed through the upper wall of the L-shaped mounting groove, the three first springs 387 are movably mounted on the middle part of the limit rod 386, and a pair of pull rings 388 are symmetrically arranged on the upper wall of the conveying frame 381; driven by the fourth motor 383, the conveying roller 382 is driven to rotate on the conveying frame 381 with the help of the second pulley 384 and the second belt 385, and the conveying frame 381 is driven to move up and down through the limit of the limit rod 386 by the force of the pull ring 388, and the conveying roller 382 can be reset to press down the copper foil through the action of the first spring 387.
[0037] Furthermore, Figure 5 As shown, the escort structure 4 includes a pressing frame 41, a third bolt 42, a pressing arm 43, a second spring 44, a fifth motor 45 and a pressing roller 46; one end of the pressing frame 41 movably penetrates the moving groove of the side baffle 35, the third bolt 42 is movably screwed to one end of the pressing frame 41, the front side wall of the other end of the pressing frame 41 is L-shaped, one end of the pressing arm 43 is movably arranged on the front side wall of the right end of the pressing frame 41, one end of the second spring 44 is fixedly connected to the left side wall of the other end of the pressing frame 41, and the other end of the second spring 44 is inclined The fifth motor 45 is connected to one end of the pressure arm 43, and the fifth motor 45 is fixedly arranged at the other end of the pressure arm 43, and the driving end of the fifth motor 45 movably passes through the other end of the pressure arm 43. The pressure roller 46 is fixedly arranged on the driving end of the fifth motor 45, and the pressure roller 46 is in contact with the upper wall of the support plate 33. The second spring 44 applies force to the pressure arm 43, so that the pressure roller 46 is forced to remain in contact with the upper wall of the support plate 33 for pressing down the copper foil, and the fifth motor 45 drives the pressure roller 46 to rotate, so that the copper foil is forced to move.
[0038] Working principle:
[0039] First, the cleaning structure 1 is powered on, and the pipes are connected for water supply and drainage with the help of valve 7;
[0040] Then, according to the width of the copper foil to be processed, the side baffle 35 is moved on the support plate 33 to adjust the spacing and then the side baffle 35 is fixed by the second bolt 36; according to the length of the copper foil, the position of the escort structure 4 on the side baffle 35 is adjusted, that is, the pressure frame 41 is adjusted to move on the side baffle 35 and fixed by the third bolt 42, and the position of the pressure roller 46 relative to the upper wall of the support plate 33 is adjusted;
[0041] When processing a single copper foil, the cut copper foil is placed on the support plate 33 through the pressure roller 46, or the conveyor frame 381 is lifted by the pull ring 388, so that the conveyor frame 381 is lifted and lowered by the limit rod 386 on the main seat 31, and the copper foil is passed under the conveyor roller 382 and enters the support plate 33 and is located between the side baffles 35, and then the conveyor roller 382 is pressed down on the upper wall of the copper foil by the force of the first spring 387; then, the infrared sensor 37, the fourth motor 383 and the fifth motor 45 are turned on by the power supply of the battery 34 and the switch key 5, and the infrared sensor 37 senses that the copper foil is on the support plate 33;
[0042] The conveying roller 382 is driven on the conveying frame 381 by the fourth motor 383, and the second belt 384 and the second belt 385 drive the conveying roller 382 to rotate, so that the copper foil is forced to move toward the pressing roller 46, and then the pressing roller 46 is driven by the fifth motor 45 to rotate, so that one end of the moving copper foil passes through the pressing roller 46, and then the fifth motor 45 and the fourth motor 383 are used to move the copper foil in the direction of the conveying roller 382 to reciprocate, so as to improve the copper foil receiving water cleaning.
[0043] After the bearing structure 3 and the escorting structure 4 are driven, the bearing structure 3 is inserted into the stop edge 274 of the limiting unit 27 through the vertical plate 32 and the vertical block 6 to limit the bearing, and then the cleaning assembly 17 and the moving structure 2 can be driven by the controller 12;
[0044] The third motor 24 in the mobile structure 2 drives the pulley to rotate through the first pulley 25 and the first belt 26, so as to drive the conveyor belt 23 to rotate and drive the bearing structure 3 to enter the cleaning box 11 from the left side of the cleaning box 11; then the hydraulic cylinder 171 is controlled to extend and retract to drive the nozzle 178 to move up and down, and the spacing of the nozzle 178 is adjusted through the electric slide rail 172 to adjust the impact force and impact position, and the first motor 174 on the machine base 173 drives the nozzle 178 to swing and adjust the impact range, and the second motor 176 drives the rotating arm 177 to rotate on the rotating base 175 to adjust the flushing angle of the nozzle 178, so as to effectively clean the edge position of the copper foil cut and carry out comprehensive treatment with the help of the left and right movement of the copper foil;
[0045] During rinsing, driven by the liquid pump 15, after being split by the three-way pipe 16, water is supplied to two spray nozzles 178 for spraying and rinsing. The rinsed water drops into the cleaning tank 11 and, after being filtered by the filter screen 14, is circulated and supplied for use again by the liquid pump 15. If the equipment needs maintenance or internal cleaning, the front cover plate 13 can be removed for cleaning and maintenance, and the filter screen 14 can also be removed and replaced.
[0046] After rinsing, the copper foil on the end conveyor belt 23 moves out of the cleaning tank 11 on the right side along with the carrying structure 3. Then, the copper foil can be moved out to the right from under the pressure roller 46 by the rotation of the conveying roller 382 and the pressure roller 46 for discharging. Then, it can be put into use again from the left end of the cleaning tank 11.
[0047] Since the limit seat 272 in the limit unit 27 is movably sleeved on the limit block 271, the blocking edge 274 above the limit seat 272 can be set in the same or opposite directions. Then, as the limit seat 272 moves, the distance between the middle positions of the blocking edge 274 is adjusted. According to the actual setting requirements, it is adjusted to fit the vertical plate 32 and the vertical block 6 due to the different settings of the length of the support plate 33. And the limit seat 272 is tightly fixed on the limit block 271 by the first bolt 273.
[0048] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A surface processing equipment for copper foil manufacturing, characterized in that, The cleaning device comprises a cleaning structure (1), a pair of movable structures (2), a bearing structure (3) and an escorting structure (4); the pair of movable structures (2) are symmetrically fixedly arranged on the cleaning structure (1), and the movable structures (2) penetrate the cleaning structure (1); the bearing structure (3) is detachably arranged on the movable structure (2); the bearing structure (3) is moved into the cleaning structure (1); the bearing structures (3) are provided in a plurality; and the escorting structure (4) is symmetrically arranged on the right end of a side baffle (35) in the bearing structure (3); The bearing structure (3) comprises a main body seat (31), a pair of vertical plates (32), a support plate (33), a battery (34), a pair of side baffles (35), a pair of second bolts (36), two pairs of infrared sensors (37) and a conveying assembly (38); The conveying assembly (38) comprises a conveying frame (381), a conveying roller (382), a fourth motor (383), a pair of second pulleys (384), a second belt (385), three limiting rods (386), three first springs (387), and a pair of pull rings (388); The conveying frame (381) is a door-shaped frame. The two ends of the conveying frame (381) are respectively movably inserted into the lifting groove. The conveying roller (382) is movably arranged between the two ends of the conveying frame (381), and the conveying roller (382) is in contact with the lower wall of the L-shaped installation groove. The fourth motor (383) is fixedly arranged on the upper wall of the rear end of the conveying frame (381). A pair of the second pulleys (384) are respectively fixedly arranged on the driving end of the fourth motor (383) and one end of the conveying roller (382). The pulleys are located in the lifting groove. The two ends of the second belt (385) are respectively movably sleeved on the second pulleys (384). One end of the three limit rods (386) is respectively fixedly arranged on the upper wall of the conveying frame (381), and the other end movably penetrates the upper wall of the L-shaped installation groove. The three first springs (387) are respectively movably sleeved on the middle part of the limit rod (386). The pair of pull rings (388) are respectively symmetrically arranged on the upper wall of the conveying frame (381). The escort structure (4) comprises a pressure frame (41), a third bolt (42), a pressure arm (43), a second spring (44), a fifth motor (45) and a pressure roller (46); One end of the pressing frame (41) is movably inserted into the movable groove of the side baffle (35); the third bolt (42) is movably screwed to one end of the pressing frame (41); the front side wall of the other end of the pressing frame (41) is L-shaped; one end of the pressing arm (43) is movably arranged on the front side wall of the right end of the pressing frame (41); one end of the second spring (44) is fixedly connected to the left side wall of the other end of the pressing frame (41); and the other end of the second spring (44) is obliquely connected to one end of the pressing arm (43); the fifth motor (45) is fixedly arranged at the other end of the pressing arm (43); and the driving end of the fifth motor (45) is movably inserted into the other end of the pressing arm (43); the pressing roller (46) is fixedly arranged on the driving end of the fifth motor (45); and the pressing roller (46) is in contact with the upper wall of the support plate (33).
2. The surface processing equipment for copper foil manufacturing according to claim 1, characterized in that, The cleaning structure (1) includes a cleaning tank (11), a controller (12), a front cover plate (13), a filter screen (14), a liquid pump (15), a three-way pipe (16), and a cleaning component (17); The cleaning tank (11) is a rectangular box body, and feeding ports are symmetrically arranged on the left and right side walls near the top of the cleaning tank (11). An installation port is arranged in the middle of the top of the front side wall of the cleaning tank (11). A filtering port is arranged in the middle of the front side wall of the cleaning tank (11) near the bottom. A pair of water valves (7) are installed at the bottom of the front side wall of the cleaning tank (11). The pair of water valves (7) are respectively used for water supply and drainage connections. The controller (12) is fixedly arranged on the upper wall of the cleaning tank (11). The front cover plate (13) is detachably buckled at the installation port on the front side of the cleaning tank (11). The filter screen (14) is detachably inserted into the filtering port. The liquid pump (15) is fixedly arranged on the lower inner wall of the cleaning tank (11). One end of the three-way pipe (16) is fixedly arranged on the liquid outlet end of the liquid pump (15). The other two ends of the three-way pipe (16) are both provided with water supply pipes, and one of the water supply pipes fixedly penetrates through the rear side wall of the cleaning tank (11). The cleaning component (17) is arranged in the middle of the upper inner wall of the cleaning tank (11).
3. The surface processing equipment for copper foil manufacturing according to claim 2, characterized in that, The cleaning component (17) includes a hydraulic cylinder (171), an electric slide rail (172), a pair of machine bases (173), a pair of first motors (174), a pair of rotating seats (175), a pair of second motors (176), a pair of rotating arms (177), and a pair of spray heads (178); One end of the hydraulic cylinder (171) is fixedly arranged in the middle of the upper inner wall of the cleaning tank (11). The electric slide rail (172) is fixedly arranged on the telescopic end of the hydraulic cylinder (171), and the two ends of the electric slide rail (172) are respectively opposite to the feeding ports. A pair of moving seats that move relatively are arranged on the electric slide rail (172). The pair of machine bases (173) are respectively arranged on the electric slide rail (172), and the machine bases (173) can move relatively. The pair of first motors (174) are respectively fixedly arranged on the machine bases (173), and the driving ends of the first motors (174) movably penetrate through the middle of the machine bases (173) and are perpendicular downward. The pair of rotating seats (175) are both concave-shaped. The pair of rotating seats (175) are respectively fixedly arranged on the driving ends of the first motors (174). The pair of second motors (176) are respectively arranged on one side wall of one end of the rotating seats (175), and the driving ends of the second motors (176) respectively movably penetrate through both ends of the rotating seats (175). One ends of the pair of rotating arms (177) are respectively movably embedded between both ends of the rotating seats (175), and one end of the rotating arm (177) is fixedly sleeved on the driving end of the second motor (176). The pair of spray heads (178) are respectively arranged on the other ends of the rotating arms (177), and the spray heads (178) are connected to the water supply pipes.
4. A surface processing device for copper foil manufacturing according to claim 3, characterized in that, The moving structure (2) includes a moving frame (21), a pair of conveying wheels (22), a conveyor belt (23), a third motor (24), a pair of first pulleys (25), a first belt (26), and a plurality of limiting units (27); The middle part of the moving frame (21) is of a concave structure. The middle part of the moving frame (21) is fixedly arranged on the rear side wall of the cleaning box (11), and the moving frame (21) is located in the middle of the feeding port. The two ends of the moving frame (21) are respectively located on the left and right sides of the cleaning box (11). A pair of the conveying wheels (22) are respectively movably arranged on the left and right ends of the moving frame (21), and the conveying wheels (22) are located in the feeding port. The two ends of the conveyor belt (23) are respectively movably sleeved on the conveying wheels (22). The third motor (24) is fixedly arranged on one end of the moving frame (21). A pair of the pulleys are respectively fixedly arranged on the driving end of the third motor (24) and one of the conveying wheels (22). The two ends of the first belt (26) are respectively movably sleeved on the first pulleys (25). A plurality of the limiting units (27) are respectively arranged on the conveyor belt (23) at equal intervals.
5. The surface processing equipment for copper foil manufacturing according to claim 4, characterized in that, The limiting unit (27) includes a limiting block (271), a limiting seat (272), a first bolt (273), and a pair of retaining edges (274); The limiting block (271) is fixedly arranged on the upper wall of the conveyor belt (23), and the limiting block (271) is of an I-shaped structure. The limiting seat (272) is movably sleeved on the limiting block (271), and the limiting seat (272) slides left and right. A regulating groove is formed in the middle of the front side wall of the limiting seat (272). The first bolt (273) movably penetrates through the regulating groove and is screwed into the front side wall of the limiting block (271). A pair of the retaining edges (274) are respectively arranged in parallel on the upper wall of one end of the limiting seat (272), and there is a certain distance between the retaining edges (274).
6. The surface processing equipment for copper foil manufacturing according to claim 5, characterized in that, The main body base (31) is rectangular, and an L-shaped installation groove communicating with the upper wall is provided in the middle near the top of the main body base (31). Width adjustment grooves are symmetrically arranged at the bottom end of the main body base (31), and the width adjustment grooves are located below the L-shaped installation groove. Lifting grooves are provided on the front and rear side walls in the L-shaped installation groove. A power switch (5) is arranged on the upper wall at the rear end of the main body base (31). A pair of vertical plates (32) are symmetrically arranged on the front and rear ends of the main body base (31). One end of the support plate (33) is fixedly arranged on the right side wall of the main body base (31) and is located between the L-shaped installation groove and the width adjustment groove. The upper wall of the support plate (33) is on the same horizontal plane as the lower wall of the L-shaped installation groove. One end of the support plate (33) has a cavity structure, and a charging port is arranged on the front side wall near one end of the support plate (33). A vertical block (6) corresponding to the vertical plate (32) is arranged at the other end of the support plate (33). The storage battery (34) is fixedly arranged inside one end of the support plate (33). Both of the side baffles (35) are concave-shaped, and moving grooves are provided near the top ends of the side baffles (35). The pair of side baffles (35) are respectively movably clamped on the support plate (33), and one end of the side baffle (35) is movably inserted into the width adjustment groove. The pair of second bolts (36) are respectively rotatably connected to one end of the side baffle (35) and are located on the left side of the main body base (31). The side baffle (35) is fixed by the second bolt (36). Two pairs of infrared sensors (37) are respectively embedded in the left and right ends of the opposite side walls of the side baffle (35), and the infrared sensor (37) is located above the support plate (33). The conveying component (38) is movably arranged in the L-shaped installation groove of the main body base (31).
Citation Information
Patent Citations
Crude foil engine copper foil washing device and washing method
CN117259482A
Electrolytic copper foil surface treatment equipment
CN117619782A