Wide pole piece laser slot static cleaning equipment
By designing a fully automated cleaning device that includes laser cleaning, brush cleaning, and wiping, the problems of poor cleaning quality and low efficiency in existing equipment have been solved, achieving efficient and stable cleaning results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-28
- Publication Date
- 2026-04-07
AI Technical Summary
Existing wide-width electrode laser tank cleaning equipment suffers from problems such as difficulty in wiping away stains, poor cleaning quality, and a lack of fully automated functions, resulting in low cleaning efficiency.
Design a static cleaning device for wide-width electrode laser slots, comprising components for laser cleaning, brush cleaning, and wiping, including a laser source, a brush dust removal mechanism, an air knife dust removal mechanism, and a wiping component, to achieve a fully automated cleaning process.
It improves cleaning quality and work efficiency, realizes a fully automated cleaning process, and ensures the stability and high efficiency of cleaning results.
Smart Images

Figure CN121797684A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of laser processing technology, and in particular to a static cleaning device for wide-width electrode laser slots. Background Technology
[0002] Wide-width electrode laser slot cleaning is a highly efficient, precise, and environmentally friendly cleaning technology in power battery manufacturing. It removes the coating on the electrode surface using a laser beam, meeting the cleanliness requirements for electrode tab welding. It has advantages such as high cleaning efficiency, strict quality control, and strong compatibility, and is one of the key technologies for power battery manufacturing to advance towards high efficiency, greenness, and reliability.
[0003] However, existing cleaning equipment has the following drawbacks: 1. Stains remain after laser cleaning and are difficult to wipe off; post-laser cleaning treatment is unstable, resulting in poor cleaning quality. 2. It lacks fully automated cleaning and processing capabilities, resulting in low work efficiency. Summary of the Invention
[0004] To address the shortcomings of existing technologies, the present invention aims to provide a wide-width electrode laser slot static cleaning device, which can perform laser cleaning, brush cleaning, and wiping treatment on electrode rolls, realizing a series of cleaning processes with good cleaning quality and high work efficiency.
[0005] The embodiments of the present invention are achieved through the following technical solutions: A wide-width electrode laser slot static cleaning device, comprising, in sequence along the electrode roll conveying direction: An unwinding assembly, including a first unwinding mechanism for unwinding electrode rolls; The cleaning assembly includes a laser source, several laser heads arranged side by side facing downwards, a first adsorption plate, and a laser conveying roller; the orthogonal projections of the several laser heads are all located on the first adsorption plate; The dust removal assembly includes a brush dust removal mechanism and an air knife dust removal mechanism; the brush dust removal mechanism includes a brush roller, and a plurality of grooved brushes are evenly distributed axially on the surface of the brush roller; the air knife dust removal mechanism includes an air knife body and an air knife roller, and the output end of the air knife body faces the surface of the air knife roller. The wiping assembly includes a second unwinding mechanism for providing wiping roll material, several wiping mechanisms, a second adsorption mechanism, and a second winding mechanism for winding the wiping roll material. Each wiping mechanism includes a mounting plate, an X-axis moving unit for moving the mounting plate along the X-axis direction, wiping rollers, wiping heads, a lifting unit, and a pressing unit. The wiping rollers, pressing unit, and lifting unit are all mounted on the mounting plate. The pressing unit is located below the wiping rollers and includes a pressing lifting component and a... The pressing element is located on the movable end of the pressing lifting element; the lifting unit is located on one side of the pressing unit, and the wiping head is located at the lifting end of the lifting unit; the second adsorption mechanism includes a second adsorption plate and at least two electrode conveying rollers for conveying electrode rolls, the wiping assembly is located below the second adsorption plate, and the electrode roll passes through the second adsorption plate between the wiping assemblies; along the output direction of the second unwinding mechanism, the wiping roll passes sequentially through the wiping rollers and wiping heads of each of the wiping mechanisms; Inspection components, including an inspection mechanism for inspecting electrode rolls; The winding assembly includes a first winding mechanism for winding up the electrode roll.
[0006] According to a preferred embodiment, the device further includes a horizontal moving mechanism, a wiping plate, and a lifting mechanism for raising and lowering the wiping plate; the horizontal moving mechanism can cause the wiping plate to move horizontally, thereby simultaneously adjusting the horizontal position of multiple wiping mechanisms, and the lifting mechanism can cause the wiping plate to move vertically, thereby simultaneously adjusting the vertical position of multiple wiping mechanisms.
[0007] The X-axis moving unit is disposed on the wiping plate; The lifting mechanism is mounted on the moving end of the horizontal moving mechanism via a connecting plate.
[0008] According to a preferred embodiment, the brush roller is disposed on a brush holder; The bottom of the brush holder is provided with a first X-axis movement adjustment mechanism for adjusting the position of the brush roller in the X-axis direction and a first Y-axis movement adjustment mechanism for adjusting the position of the brush roller in the Y-axis direction.
[0009] According to a preferred embodiment, it further includes a first correction component located behind the unwinding component and a second correction component located in front of the winding component, wherein both the first correction component and the second correction component include a correction mechanism for correcting the deviation of the electrode roll. The correction mechanism includes a correction drive, a correction frame, and a correction roller mounted on the correction frame. The correction drive causes the correction frame to swing or rotate to adjust the position of the electrode roll.
[0010] According to a preferred embodiment, it further includes a horizontal toothed rack disposed on the wiping plate; The X-axis moving unit includes a drive motor mounted on the mounting plate and a drive gear sleeved on the power output end of the drive motor; the drive gear meshes with the horizontal rack for transmission.
[0011] According to a preferred embodiment, it further includes a locking unit and a horizontal guide rail disposed on the wiping plate; A locking strip is provided at the top of the horizontal rack; Each of the drive motors is provided with a locking unit on its top to lock the position of the drive motor; each of the locking units is located on one side of the locking bar; Each of the mounting plates is equipped with a slider; The mounting plate slides in conjunction with the horizontal guide rail via the slider.
[0012] According to a preferred embodiment, it also includes a dust removal hood located below the wiping assembly, the dust removal hood having a material collection port at the top, the dust removal hood being wider at the top and narrower at the bottom, and having a dust extraction end at its lower end; The top of the second adsorption plate is provided with a negative pressure chamber, and the top of the second adsorption plate is connected to the negative pressure chamber. The bottom of the second adsorption plate is provided with a number of evenly distributed second adsorption holes.
[0013] According to a preferred embodiment, it further includes at least two buffer components, with the buffer components provided on the rear side of the unwinding component and the front side of the winding component. Each buffer component includes a buffer lifting member, an upper buffer roller and a lower buffer roller arranged vertically. The buffer lifting member causes the upper buffer roller and the lower buffer roller to move up and down together.
[0014] According to a preferred embodiment, a tape-connecting platform is provided on the rear side of the first correction component. The tape-connecting platform includes a tape-connecting carrier plate, a tape-connecting lifting component, and a tape-connecting pressure plate that can be raised and lowered. The tape-connecting pressure plate is located above the tape-connecting carrier plate. The tape-connecting lifting component vertically penetrates the tape-connecting carrier plate and is connected to the bottom wall of the tape-connecting pressure plate.
[0015] According to a preferred embodiment, it further includes a tension swing arm assembly located behind the tape receiving platform, the tension swing arm assembly including a swing drive and a swing roller, the swing drive causing the swing roller to swing to adjust the tension of the electrode roll; The testing mechanism includes a CCD testing unit.
[0016] The technical solutions of the embodiments of the present invention have at least the following advantages and beneficial effects: This invention includes a cleaning component, a dust removal component, and a wiping component. The cleaning component includes a laser source and several laser heads, the dust removal component includes a brush dust removal mechanism and an air knife dust removal mechanism, and the wiping component includes several wiping heads. The cleaning component, dust removal component, and wiping component can respectively perform laser cleaning, brush cleaning, and wiping treatment on the electrode roll material, realizing a series of cleaning processes with good cleaning quality and high work efficiency. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present invention and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the structure of a wide-width electrode laser slot static cleaning device provided in an embodiment of the present invention; Figure 2 This is a schematic diagram of the wiping assembly provided in an embodiment of the present invention; Figure 3 A three-dimensional structural schematic diagram of the wiping assembly provided in an embodiment of the present invention; Figure 4 This is a schematic diagram of the wiping mechanism provided in an embodiment of the present invention; Figure 5 This is a side view of the wiping mechanism provided in an embodiment of the present invention; Figure 6 This is a schematic diagram of the structure of the dust removal component provided in an embodiment of the present invention; Figure 7 This is a schematic diagram of the structure of the first correction component provided in an embodiment of the present invention; Figure 8 This is a schematic diagram of the structure of the receiving platform provided in an embodiment of the present invention; Figure 9 This is a schematic diagram of the tension swing arm assembly provided in an embodiment of the present invention; Figure 10 This is a schematic diagram of the air knife dust removal mechanism provided in an embodiment of the present invention.
[0019] Icons: 1. First unwinding mechanism; 2. Laser head; 3. First adsorption plate; 4. Laser conveying roller; 5. Brush dust removal mechanism; 51. Brush roller; 511. Groove brush; 6. Air knife dust removal mechanism; 61. Air knife body; 62. Air knife roller; 7. Second unwinding mechanism; 8. Second winding mechanism; 9. Mounting plate; 10. Wiping roller; 11. Wiping head; 12. Lifting unit; 13. Pressing unit; 131. Pressing lifting component; 132. Pressing component; 14. Second adsorption plate; 15. Electrode conveying roller; 16. Detection mechanism; 17. First winding mechanism; 18. Lifting mechanism; 19. Wiping plate; 20. First X-axis movement adjustment mechanism; 21. First Y-axis movement adjustment mechanism; 22. First correction assembly; 221. Correction drive component; 222. Correction roller; 23. Second correction assembly; 24. Horizontal rack; 25. Drive motor; 26. Drive gear; 27. Locking unit; 28. Locking bar; 29. Dust hood; 30. Buffer assembly; 301. Upper buffer roller; 302. Lower buffer roller; 31. Belt receiving platform; 311. Belt receiving carrier plate; 312. Belt receiving lifting component; 313. Belt receiving pressure plate; 32. Tension swing arm assembly; 321. Swing drive component; 322. Swing roller; 33. Horizontal movement mechanism. Detailed Implementation
[0020] To better understand and implement this invention, the technical solutions in the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings.
[0021] In the description of this invention, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0022] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. Example
[0023] Please refer to Figures 1 to 10A wide-width electrode laser slot static cleaning device, comprising, along the electrode roll conveying direction: an unwinding assembly, including a first unwinding mechanism 1 for unwinding the electrode roll; a cleaning assembly, including a laser source, several laser heads 2 arranged side-by-side facing downwards, a first adsorption plate 3, and a laser conveying roller 4; the orthographic projections of the several laser heads 2 are all located on the first adsorption plate 3; and a dust removal assembly, including a brush dust removal mechanism 5 and an air knife dust removal mechanism 6; the brush dust removal mechanism 5 includes a brush roller 51, the surface of which... A plurality of grooved brushes 511 are evenly distributed along the axial direction; the air knife dust removal mechanism 6 includes an air knife body 61 and an air knife roller 62, with the output end of the air knife body 61 facing the surface of the air knife roller 62; the wiping assembly includes a second unwinding mechanism 7 for providing wiping roll material, a plurality of wiping mechanisms, a second adsorption mechanism, and a second winding mechanism 8 for winding up the wiping roll material; the wiping mechanism includes a mounting plate 9, an X-axis moving unit for causing the mounting plate 9 to move along the X-axis direction, a wiping roller 10, and a wiping head. 11. Lifting unit 12, pressing unit 13; the wiping roller 10, the pressing unit 13, and the lifting unit 12 are all mounted on the mounting plate 9. The pressing unit 13 is located below the wiping roller 10. The pressing unit 13 includes a pressing lifting component 131 and a pressing component 132 disposed on the movable end of the pressing lifting component 131. The lifting unit 12 is located on one side of the pressing unit 13, and the wiping head 11 is disposed on the lifting end of the lifting unit 12. The second adsorption mechanism includes... The assembly includes a second adsorption plate 14 and at least two electrode conveying rollers 15 for conveying electrode rolls. The wiping assembly is located below the second adsorption plate 14, and the electrode roll passes between the wiping assemblies via the second adsorption plate 14. Along the output direction of the second unwinding mechanism 7, the wiping roll passes sequentially through the wiping rollers 10 and wiping heads 11 of each of the wiping mechanisms. The detection assembly includes a detection mechanism 16 for detecting the electrode roll. The winding assembly includes a first winding mechanism 17 for winding the electrode roll.
[0024] Optionally, it also includes a horizontal moving mechanism 33, a wiping plate 19, and a lifting mechanism 18 for causing the wiping plate 19 to rise and fall; The X-axis moving unit is mounted on the wiping plate 19; The lifting mechanism 18 is mounted on the moving end of the horizontal moving mechanism 33 via a connecting plate.
[0025] Optionally, the brush roller 51 is disposed on the brush holder; The bottom of the brush holder is provided with a first X-axis movement adjustment mechanism 20 for adjusting the position of the brush roller 51 in the X-axis direction and a first Y-axis movement adjustment mechanism 21 for adjusting the position of the brush roller 51 in the Y-axis direction.
[0026] Optionally, it also includes a first correction component 22 located behind the unwinding component and a second correction component 23 located in front of the winding component. Both the first correction component 22 and the second correction component 23 include a correction mechanism for correcting the deviation of the electrode roll. The correction mechanism includes a correction drive 221, a correction frame, and a correction roller 222 disposed on the correction frame. The correction drive 221 causes the correction frame to swing or rotate to adjust the position of the electrode roll.
[0027] Optionally, it also includes a horizontal rack 24 disposed on the wiping plate 19; The X-axis moving unit includes a drive motor 25 mounted on the mounting plate 9 and a drive gear 26 sleeved on the power output end of the drive motor 25; the drive gear 26 meshes with the horizontal rack 24 for transmission.
[0028] Optionally, it also includes a locking unit 27 and a horizontal guide rail disposed on the wiping plate 19; A locking strip 28 is provided at the top of the horizontal rack 24; Each of the drive motors 25 is provided with a locking unit 27 on its top to lock the position of the drive motor 25; each of the locking units 27 is located on one side of the locking bar 28; Each of the mounting plates 9 is provided with a slider; The mounting plate 9 slides with the horizontal guide rail via the slider.
[0029] Optionally, it also includes a dust removal hood 29 located below the wiping assembly. The dust removal hood 29 has a material collection port at the top, and the dust removal hood 29 is wider at the top and narrower at the bottom, with a dust extraction end at its lower end. The top of the second adsorption plate 14 is provided with a negative pressure cavity, the top of the second adsorption plate 14 is connected to the negative pressure cavity, and the bottom of the second adsorption plate 14 is provided with a plurality of evenly distributed second adsorption holes.
[0030] Optionally, it also includes at least two buffer components 30, with the buffer components 30 provided on the rear side of the unwinding component and the front side of the winding component. The buffer component 30 includes a buffer lifting member, an upper buffer roller 301 and a lower buffer roller 302 arranged vertically; the buffer lifting member causes the upper buffer roller 301 and the lower buffer roller 302 to move up and down together.
[0031] Optionally, a tape-connecting platform 31 is provided on the rear side of the first correction component 22. The tape-connecting platform 31 includes a tape-connecting carrier plate 311, a tape-connecting lifting component 312, and a tape-connecting pressure plate 313 that can be raised and lowered. The tape-connecting pressure plate 313 is located above the tape-connecting carrier plate 311. The tape-connecting lifting component 312 vertically penetrates the tape-connecting carrier plate 311 and is connected to the bottom wall of the tape-connecting pressure plate 313.
[0032] Optionally, it also includes a tension swing arm assembly 32 located behind the tape receiving platform 31. The tension swing arm assembly 32 includes a swing drive 321 and a swing roller 322. The swing drive 321 causes the swing roller 322 to swing to adjust the tension of the electrode roll. The detection mechanism 16 includes a CCD detection unit.
[0033] Working principle of the invention: Figure 2 In the diagram, A represents the electrode roll material; The present invention includes a cleaning component, a dust removal component, and a wiping component. The cleaning component includes a laser source and several laser heads 2. The dust removal component includes a brush dust removal mechanism 5 and an air knife dust removal mechanism 6. The wiping component includes several wiping heads 11. The cleaning component, dust removal component, and wiping component can respectively perform laser cleaning, brush cleaning, and wiping treatment on the electrode roll material, realizing a series of cleaning processes with good cleaning quality and high work efficiency.
[0034] This invention allows for convenient individual adjustment of the wiping positions of several independent wiping mechanisms. Each wiping mechanism can adjust its wiping position via an X-axis movement unit. Furthermore, the inclusion of a pressure belt unit 13 prevents the wiping roll from breaking during the wiping process, ensuring continuous and efficient wiping and stable wiping force. Specifically, the electrode conveying rollers 15 can be positioned on the left and right sides or front and rear sides of the area between the second adsorption plate 14 and the wiping assembly to ensure that the electrode roll passes through the area between the second adsorption plate 14 and the wiping assembly. This allows the second adsorption plate 14 to adsorb the passing electrode roll, and multiple liftable wiping heads 11 wipe the electrode roll. Each lifting unit 12 corresponds to a wiping head 11. The lifting end of the lifting unit 12 can drive the wiping head 11 to move up and down. The wiping roll is wound around multiple wiping heads 11 in sequence. The lifting unit 12 can drive the wiping head 11 to wipe the electrode roll that is lifted and adhered to the second adsorption plate 14. The X-axis moving unit in each wiping mechanism adjusts the horizontal position, thereby adjusting the distance between two adjacent wiping heads 11. Before wiping, the wiping roll can be pressed with the liftable pressing belt 132. Since the wiping roll is conveyed by the corresponding wiping roller 10 before passing through the wiping head 11 of each wiping mechanism, the wiping roll can be pressed with the pressing belt 132 below the wiping roller 10, thereby ensuring the state of the wiping roll on the wiping head 11 and preventing the wiping roll from breaking during the wiping of the electrode roll. Specifically, the electrode roll material can be conveyed from right to left or from front to back. In this embodiment, the wiping roll material is conveyed sequentially from left to right. The wiping roll material is released by the second unwinding mechanism 7, cleaned by the brush assembly, and then conveyed to the wiping assembly to wipe the electrode roll material. Finally, it is wound up by the second winding mechanism 8. Each mounting plate 9 is provided with a locking unit 27. The locking unit 27 can be a telescopic structure such as a motor or cylinder. The locking unit 27 can cooperate with the locking strip 28. After one end of the locking unit 27 extends out, it can press against the locking strip 28 to fix the position of the wiping mechanism. In this embodiment, the drive motor 25 is set on the mounting plate 9. The drive motor 25 meshes with the horizontal rack 24 through the drive gear 26, so that a single wiping mechanism can move horizontally on the rack, thereby adjusting the position of the wiping mechanism in the horizontal direction. The brush assembly conveys the wiping roll material via at least two brush rollers 51. During conveying, the brush heads clean the surface of the wiping roll material between the brush rollers 51, completing the cleaning process. The material that falls off after wiping falls onto a dust collection hood 29, which collects impurities or contaminants to prevent environmental pollution. Furthermore, the dust extraction end can be connected to a negative pressure structure to absorb any airborne or falling dust particles.The top of the second adsorption plate 14 can be connected to a negative pressure chamber, which can be connected to an external negative pressure mechanism. The negative pressure mechanism provides negative pressure conditions to the negative pressure chamber and the second adsorption plate 14. Multiple adsorption holes can be provided at the bottom of the second adsorption plate 14 to achieve adsorption of the electrode roll material by the second adsorption plate 14. The lifting unit 12, lifting mechanism 18, buffer lifting component, and pressure belt lifting component 131 can all be selected from telescopic mechanisms such as cylinders. The lifting mechanism 18 can cause the entire wiping plate 19 to move up and down, thereby driving the various wiping mechanisms to move up and down synchronously.
[0035] Specifically, two cleaning components, two dust removal components, and two wiping components can be set up to perform laser cleaning, brush cleaning, and wiping treatments on the front and back sides of the electrode roll, respectively. Since the two cleaning components, two dust removal components, and two wiping components have identical structures, they will not be described in detail. Laser cleaning may include setting up multiple laser heads 2 arranged side-by-side. Multiple laser heads 2 can meet the requirements for cleaning large-area, wide-width electrode rolls, and multiple laser heads 2 can be used to simultaneously clean multiple different areas of the electrode roll, greatly improving cleaning efficiency. Multiple laser sources can be selected, each corresponding to a different laser head 2, to achieve slot cleaning of the electrode roll. In this embodiment, multiple slotted brushes 511 are axially and equidistantly distributed on the surface of the brush roller 51 to adapt to the slots of the electrode roll. The brush roller 51 can be adjusted in the Y-axis and X-axis directions by the first Y-axis moving adjustment mechanism 21 and the first X-axis moving adjustment mechanism 20. Both the first X-axis moving adjustment mechanism 20 and the first Y-axis moving adjustment mechanism 21 can be cylinders. In this embodiment, the first Y-axis moving adjustment mechanism 21 is set on the moving end of the first X-axis moving adjustment mechanism 20, and the moving end of the first Y-axis moving adjustment mechanism 21 drives the brush support to move. Both the first correction component 22 and the second correction component 23 can correct the deviation of the electrode roll. The correction drive component 221 can drive the correction frame to swing, thereby adjusting the angle of the electrode roll conveying.
[0036] In this embodiment, multiple buffer components 30 can be set. The multiple buffer components 30 buffer the electrode roll material through the upper buffer roller 301 and the lower buffer roller 302, which can be raised and lowered, so as to adjust the stable conveying rhythm of the electrode roll material.
[0037] The tension swing arm assembly 32 can drive the swing roller 322 to swing through the movable end of the swing drive component 321. Figure 1 As can be seen, the swing roller 322 swings clockwise or counterclockwise around the center; the swing drive 321 can be a swing motor, a pulley or a belt, with the pulley connected to the center of the swing roller 322 to cause the swing roller 322 to swing.
[0038] The technical means disclosed in this invention are not limited to those disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of this invention, and these improvements and modifications are also considered within the scope of protection of this invention.
Claims
1. A static cleaning device for wide-width electrode laser slots, characterized in that, Along the direction of electrode roll conveying, the following are included in sequence: An unwinding assembly, including a first unwinding mechanism for unwinding electrode rolls; The cleaning assembly includes a laser source, several laser heads arranged side by side facing downwards, a first adsorption plate, and a laser conveying roller; the orthogonal projections of the several laser heads are all located on the first adsorption plate; The dust removal assembly includes a brush dust removal mechanism and an air knife dust removal mechanism; the brush dust removal mechanism includes a brush roller, and a plurality of grooved brushes are evenly distributed axially on the surface of the brush roller; the air knife dust removal mechanism includes an air knife body and an air knife roller, and the output end of the air knife body faces the surface of the air knife roller. The wiping assembly includes a second unwinding mechanism for providing wiping roll material, several wiping mechanisms, a second adsorption mechanism, and a second winding mechanism for winding the wiping roll material. Each wiping mechanism includes a mounting plate, an X-axis moving unit for moving the mounting plate along the X-axis direction, wiping rollers, wiping heads, a lifting unit, and a pressing unit. The wiping rollers, pressing unit, and lifting unit are all mounted on the mounting plate. The pressing unit is located below the wiping rollers and includes a pressing lifting component and a... The pressing element is located on the movable end of the pressing lifting element; the lifting unit is located on one side of the pressing unit, and the wiping head is located at the lifting end of the lifting unit; the second adsorption mechanism includes a second adsorption plate and at least two electrode conveying rollers for conveying electrode rolls, the wiping assembly is located below the second adsorption plate, and the electrode roll passes through the second adsorption plate between the wiping assemblies; along the output direction of the second unwinding mechanism, the wiping roll passes sequentially through the wiping rollers and wiping heads of each of the wiping mechanisms; Inspection components, including an inspection mechanism for inspecting electrode rolls; The winding assembly includes a first winding mechanism for winding up the electrode roll.
2. The wide-width electrode laser slot static cleaning equipment according to claim 1, characterized in that, It also includes a horizontal moving mechanism, a wiping plate, and a lifting mechanism for causing the wiping plate to move up and down; The X-axis moving unit is disposed on the wiping plate; The lifting mechanism is mounted on the moving end of the horizontal moving mechanism via a connecting plate.
3. The wide-width electrode laser slot static cleaning equipment according to claim 1, characterized in that, The brush roller is mounted on the brush holder; The bottom of the brush holder is provided with a first X-axis movement adjustment mechanism for adjusting the position of the brush roller in the X-axis direction and a first Y-axis movement adjustment mechanism for adjusting the position of the brush roller in the Y-axis direction.
4. The wide-width electrode laser slot static cleaning equipment according to claim 1, characterized in that, It also includes a first correction component located behind the unwinding component and a second correction component located in front of the winding component. Both the first correction component and the second correction component include a correction mechanism for correcting the deviation of the electrode roll. The correction mechanism includes a correction drive, a correction frame, and a correction roller mounted on the correction frame. The correction drive causes the correction frame to swing or rotate to adjust the position of the electrode roll.
5. The wide-width electrode laser slot static cleaning equipment according to claim 2, characterized in that, It also includes a horizontal toothed rack disposed on the wiping plate; The X-axis moving unit includes a drive motor mounted on the mounting plate and a drive gear sleeved on the power output end of the drive motor; the drive gear meshes with the horizontal rack for transmission.
6. The wide-width electrode laser slot static cleaning equipment according to claim 5, characterized in that, It also includes a locking unit and a horizontal guide rail disposed on the wiping plate; A locking strip is provided at the top of the horizontal rack; Each of the drive motors is provided with a locking unit on its top to lock the position of the drive motor; each of the locking units is located on one side of the locking bar; Each of the mounting plates is equipped with a slider; The mounting plate slides in conjunction with the horizontal guide rail via the slider.
7. The wide-width electrode laser slot static cleaning equipment according to claim 1, characterized in that, It also includes a dust removal hood located below the wiping assembly, the dust removal hood having a material collection port at the top, the dust removal hood being wider at the top and narrower at the bottom, and having a dust extraction end at its lower end; The top of the second adsorption plate is provided with a negative pressure chamber, and the top of the second adsorption plate is connected to the negative pressure chamber. The bottom of the second adsorption plate is provided with a number of evenly distributed second adsorption holes.
8. The wide-width electrode laser slot static cleaning equipment according to claim 1, characterized in that, It also includes at least two buffer components, with the buffer components provided on the rear side of the unwinding component and the front side of the winding component. Each buffer component includes a buffer lifting member, an upper buffer roller and a lower buffer roller arranged vertically. The buffer lifting member causes the upper buffer roller and the lower buffer roller to move up and down together.
9. The wide-width electrode laser slot static cleaning equipment according to claim 4, characterized in that, A tape-connecting platform is provided on the rear side of the first correction component. The tape-connecting platform includes a tape-connecting carrier plate, a tape-connecting lifting component, and a tape-connecting pressure plate that can be raised and lowered. The tape-connecting pressure plate is located above the tape-connecting carrier plate. The tape-connecting lifting component vertically penetrates the tape-connecting carrier plate and is connected to the bottom wall of the tape-connecting pressure plate.
10. The wide-width electrode laser slot static cleaning equipment according to claim 9, characterized in that, It also includes a tension swing arm assembly located behind the tape receiving platform. The tension swing arm assembly includes a swing drive and a swing roller. The swing drive causes the swing roller to swing to adjust the tension of the electrode roll. The testing mechanism includes a CCD testing unit.