Ultra-thin nickel strap slitting and forming equipment capable of removing dust

By introducing cleaning cotton columns and cylinder-driven blades into the nickel strip slitting equipment, the problem of dust cleaning on the nickel strip surface was solved, and the surface cleaning and slitting accuracy of the nickel strip were improved.

CN223932684UActive Publication Date: 2026-02-24JIANGSU YUANHANG PRECISION ALLOY TECH +1
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Patent Information

Application Number
CN202520428964.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-02-24
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

Existing nickel strip slitting equipment cannot effectively remove dust from the surface of the nickel strip before slitting, which affects the quality of the nickel strip.

Method used

A dust-removable ultra-thin nickel strip slitting and forming device was designed. Dust was wiped off using cleaning cotton columns during the nickel strip conveying process, and the blades were cleaned using a cylinder before slitting. The friction layer and straightening rod ensured that the nickel strip was fed flat, and the blades were kept sharp by using a grinding blade.

Benefits of technology

It effectively removes dust from the surface of the nickel strip, improves the quality of the nickel strip after slitting, and ensures the accuracy and efficiency of slitting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of nickel strap processing equipment, and discloses ultra-thin nickel strap slitting and forming equipment capable of cleaning ash, which comprises a machine tool, a motor is fixedly connected to the upper surface of the machine tool, a driving rotating shaft is arranged in a penetrating box, a driven rotating shaft is rotatably connected to the interior of the penetrating box, and the driving rotating shaft and the driven rotating shaft are arranged in the penetrating box. And an air cylinder machine is fixedly connected to the interior of the penetrating box, and a cleaning cotton column is arranged outside the material guide plate. The nickel strip feeding device has the advantages that when a nickel strip is fed on the upper surface of the material guide plate, the upper surface of the nickel strip makes contact with the cleaning cotton column, the moving nickel strip drives the cleaning cotton column to rotate, the rotating cleaning cotton column wipes away dust possibly existing on the surface of the nickel strip, then the air cylinder machine is started, and the nickel strip is fed. The moving nickel strap is slit by the blade moving up and down, dust on the surface of the nickel strap is cleaned up through the operation before the nickel strap is slit, and the effect that the dust cleaning effect on the nickel strap is good is achieved.
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Description

Technical Field

[0001] This utility model relates to the technical field of nickel strip processing equipment, and in particular to an ultra-thin nickel strip slitting and forming equipment that can be cleaned of dust. Background Technology

[0002] Thin nickel strip slitting refers to the process of cutting nickel strip into the required length. A nickel strip slitting machine is a machine specifically designed for cutting nickel strip. Its working principle is to use rollers to transport the nickel strip to the position of the cutting blades, and then the cutting blades cut the nickel strip into small pieces of the specified length.

[0003] In the prior art, a nickel strip unwinding and slitting device is disclosed, including an unwinding frame. A motor is installed at the left end of the unwinding frame, and a motor rod is installed to the left of the motor. A slitting frame is installed at the front end of the unwinding frame. A set of conveying rollers parallel to the motor rod is installed on the left end of the slitting frame. An auxiliary flattening block is installed at the rear end of the conveying rollers. A flattening block is installed at the upper end of the auxiliary flattening block. A transverse slide rail is installed on the front side wall of the flattening block, and a cutter is installed on the slide rail. This utility model greatly improves work efficiency and product quality while ensuring the accuracy of slitting.

[0004] In actual production, this type of nickel strip unwinding and slitting equipment can only unwind and slit nickel strips. Before slitting the nickel strips, dust in the air may stick to the surface of the nickel strips. This type of nickel strip unwinding and slitting equipment is not equipped with a dust removal device, which makes it impossible to remove the dust from the surface of the nickel strips. As a result, the surface of the cut nickel strips is covered with dust, which affects the quality of the nickel strips and leads to poor performance of this type of equipment. Therefore, it needs to be improved. Utility Model Content

[0005] The purpose of this invention is to provide an ultra-thin nickel strip slitting and forming equipment that can remove dust, and has a good dust removal effect on nickel strips.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a dust-removable ultra-thin nickel strip slitting and forming device, comprising a machine tool, table legs fixedly connected to the bottom of the machine tool, a through-hole fixedly connected to the upper surface of the machine tool, a guide plate fixedly connected to the upper surface of the machine tool, the guide plate penetrating into the interior of the through-hole, a rotating hole being formed inside the through-hole, a motor fixedly connected to the upper surface of the machine tool, a main rotating shaft being arranged inside the through-hole, and the output end of the motor penetrating into the interior of the rotating hole and fixed to the main rotating shaft. The machine tool is connected in the following ways: a rotating shaft is rotatably connected inside the through-box; a cylinder is fixedly connected inside the through-box; a horizontal bar is provided on the outside of the guide plate; the output end of the cylinder is fixedly connected to the horizontal bar; a blade is fixedly connected to the bottom of the horizontal bar; an inclined plate is provided on the outside of the through-box; a cleaning cotton column is provided on the outside of the guide plate; the cleaning cotton column is rotatably connected to the inclined plate; a guide column opening is fixedly connected to the upper surface of the machine tool; a guard plate is fixedly connected to the upper surface of the guide column opening; and a support plate is fixedly connected to the bottom of the guard plate.

[0007] By adopting the above technical solution, the worker starts the motor, and the output end of the motor drives the main shaft to rotate. The worker passes one end of the nickel strip through the guide column opening, through the inside of the through box, and sends it between the main shaft and the driven shaft. Affected by the rotation of the main shaft, the upper and lower surfaces of one end of the nickel strip contact the surfaces of the main shaft and the driven shaft respectively, and the feeding of the nickel strip begins. When the nickel strip is fed on the upper surface of the guide plate, the upper surface of the nickel strip contacts the cleaning cotton column. The moving nickel strip drives the cleaning cotton column to rotate, and the rotating cleaning cotton column wipes away any dust that may be present on the surface of the nickel strip. Then, the cylinder machine is started. The cylinder machine starts working, and the output end of the cylinder machine drives the horizontal bar to move up and down, so that the blades are inserted back and forth into the inside of the blade hole after the dust is wiped. When the dust-wiped nickel strip moves to the inside of the blade, the up and down moving blades cut the moving nickel strip. Through the above operation, the dust on the surface of the nickel strip is cleaned before the nickel strip is cut, which improves the quality of the cut nickel strip and achieves a good dust removal effect on the nickel strip.

[0008] A further feature of this invention is that a straightening rod is provided on the outside of the guide plate, and a spring is provided on the outside of the guard plate. The straightening rod passes through the inside of the guard plate and is fixedly connected to one end of the spring, and the other end of the spring is fixedly connected to the support plate.

[0009] By adopting the above technical solution, when the nickel strip is fed on the guide plate, the wrinkles on the surface of the nickel strip are smoothed out by the contact of the straightening rod.

[0010] A further feature of this invention is that a friction layer is fixedly connected to the upper surface of the guide plate, and the thickness of the friction layer is three centimeters.

[0011] By adopting the above technical solution, the three-centimeter friction layer increases the friction force generated by the contact between the bottom of the nickel strip and the upper surface of the guide plate, which facilitates the feeding of the nickel strip.

[0012] A further feature of this invention is that a layer of adhesive cotton is fixedly connected to the outside of the straightening rod, and the thickness of the adhesive cotton layer is four centimeters.

[0013] By adopting the above technical solution, the four-centimeter layer of PVC foam prevents the straightening rod from scratching the upper surface of the nickel strip when it comes into contact with the upper surface of the nickel strip.

[0014] A further feature of this invention is that a screw hole is provided inside the through box, and a stud is provided outside the through box, the stud penetrating into the inside of the screw hole and being threadedly connected to the inclined plate.

[0015] By adopting the above technical solution, the inclined blade is moved up and down by rotating the stud, thereby changing the distance between the inclined blade and the guide plate. This adjusts the distance between the cleaning cotton column and the upper surface of the moving nickel strip. The closer the distance between the cleaning cotton column and the upper surface of the nickel strip, the greater the cleaning force on the upper surface of the nickel strip when the cleaning cotton column rotates.

[0016] A further feature of this invention is that a sliding groove is fixedly connected inside the through box, and a pulley is provided on the outside of the crossbar, with the pulley slidably connected to the sliding groove.

[0017] By adopting the above technical solution, when the crossbar is subjected to force and moves, the sliding connection between the pulley and the groove causes the crossbar to drive the blade to move up and down rapidly.

[0018] A further feature of this invention is that an arc-shaped support is provided on the outside of the horizontal bar, one end of the arc-shaped support is fixedly connected to the cylinder engine, and the other end of the arc-shaped support is fixedly connected to the through box.

[0019] By adopting the above technical solution, the arc-shaped support frame plays a role in strengthening the support of the working cylinder engine.

[0020] A further feature of this invention is that a scale is fixedly connected inside the through-hole, and a cutting hole is formed inside the through-hole.

[0021] By adopting the above technical solution, the scale provides a reference for the length of nickel strip cutting, and the drop hole facilitates the drop of the blade and prevents the blade from hitting the blade.

[0022] A further feature of this invention is that a grinding blade is fixedly connected inside the blade hole, and the number of grinding blades is two.

[0023] By adopting the above technical solution, the blade falls into the blade hole after cutting the nickel strip, and at the same time, the blade comes into contact with two grinding blades. The blade is sharpened by friction with the two grinding blades, thereby continuously maintaining the sharpness of the blade.

[0024] A further feature of this invention is that a ramp is fixedly connected to the outside of the through box, and a collection box is fixedly connected to the outside of the machine tool.

[0025] By adopting the above technical solution, the slit nickel strips slide down a ramp into a collection box for collection.

[0026] The beneficial effects of this utility model are:

[0027] This invention relates to a machine tool, table legs, a through-hole, a guide plate, a rotating hole, a motor, a main shaft, a driven shaft, a cylinder, a crossbar, a blade, a slant blade, a cleaning cotton column, a guide column opening, a guard plate, and a support plate. When the worker starts the motor, its output drives the main shaft to rotate. The worker then passes one end of the nickel strip through the guide column opening and into the through-hole, feeding it between the main and driven shafts. Due to the rotation of the main shaft, the top and bottom surfaces of one end of the nickel strip contact the surfaces of the main and driven shafts, respectively, initiating the feeding process. As the nickel strip is fed onto the upper surface of the guide plate, the upper surface of the nickel strip... The nickel strip comes into contact with the cleaning cotton column, and the moving nickel strip drives the cleaning cotton column to rotate. The rotating cleaning cotton column wipes away any dust that may be present on the surface of the nickel strip. Then, the cylinder machine is started. The output end of the cylinder machine drives the horizontal bar to move up and down, so that the blades are inserted back and forth into the blade holes after the nickel strip has been wiped clean. When the nickel strip after the dust has been wiped clean moves directly under the blades, the up and down moving blades cut the moving nickel strip. Through the above operations, the dust on the surface of the nickel strip is cleaned before the nickel strip is cut, which improves the quality of the cut nickel strip and achieves a good dust removal effect on the nickel strip.

[0028] This invention, through the arrangement of a straightening rod, spring, friction layer, rubber cotton layer, screw hole, stud, slide groove, pulley, arc-shaped support, scale, blade drop hole, grinding blade, ramp, and collection box, allows the nickel strip to be fed onto the guide plate. The straightening rod smooths out wrinkles on the surface of the nickel strip during feeding. The three-centimeter friction layer increases the friction between the bottom of the nickel strip and the upper surface of the guide plate, facilitating feeding. The four-centimeter rubber cotton layer prevents the straightening rod from scratching the upper surface of the nickel strip. Rotating the stud causes the inclined plate to move up and down, changing the distance between the inclined plate and the guide plate, thereby adjusting the distance between the cleaning cotton column and the upper surface of the moving nickel strip, and adjusting the cleaning cotton column accordingly. The closer the column is to the upper surface of the nickel strip, the greater the cleaning force on the upper surface of the nickel strip when the cleaning cotton column rotates. When the horizontal bar moves under force, the sliding connection between the pulley and the slide groove causes the horizontal bar to move the blade up and down rapidly. The arc-shaped support frame strengthens the support of the working cylinder. The scale provides a reference for the cutting length of the nickel strip. The blade drop hole facilitates the falling of the blade and prevents the blade from colliding with the blade. After cutting the nickel strip, the blade falls into the blade drop hole and contacts two grinding blades. The blade is sharpened by friction with the two grinding blades, thus maintaining the sharpness of the blade. The cut nickel strip slides down the ramp into the collection box for collection. Attached Figure Description

[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1 This is a schematic diagram of the structure of this utility model;

[0031] Figure 2 This is a schematic diagram of the motor and main shaft structure of this utility model;

[0032] Figure 3 This utility model Figure 1 Enlarged structural diagram at point A;

[0033] Figure 4 This utility model Figure 1 A magnified structural diagram at point B in the middle.

[0034] In the diagram, 1. Machine tool; 2. Table leg; 3. Through box; 4. Guide plate; 5. Rotary hole; 6. Motor; 7. Main shaft; 8. Slave shaft; 9. Cylinder; 10. Horizontal bar; 11. Blade; 12. Inclined blade; 13. Cleaning cotton column; 14. Guide column opening; 15. Guard plate; 16. Support plate; 17. Straightening rod; 18. Spring; 19. Friction layer; 20. Glue layer; 21. Screw hole; 22. Stud; 23. Slide groove; 24. Pulley; 25. Arc support; 26. Scale; 27. Cutting hole; 28. Sharpening blade; 29. ​​Slope; 30. Collection box. Detailed Implementation

[0035] The technical solution of this utility model will now be clearly and completely described with reference to specific embodiments. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0036] Reference Figure 1-4A dust-removable ultra-thin nickel strip slitting and forming device includes a machine tool 1, table legs 2 fixedly connected to the bottom of the machine tool 1, a through-hole 3 fixedly connected to the upper surface of the machine tool 1, a guide plate 4 fixedly connected to the upper surface of the machine tool 1, the guide plate 4 penetrating into the interior of the through-hole 3, a rotating hole 5 opened inside the through-hole 3, a motor 6 fixedly connected to the upper surface of the machine tool 1, a main rotating shaft 7 disposed inside the through-hole 3, the output end of the motor 6 penetrating into the interior of the rotating hole 5 and fixedly connected to the main rotating shaft 7, and a drive shaft 8 rotatably connected inside the through-hole 3. A cylinder 9 is fixedly connected inside the through-box 3. A horizontal bar 10 is provided on the outside of the guide plate 4. The output end of the cylinder 9 is fixedly connected to the horizontal bar 10. A blade 11 is fixedly connected to the bottom of the horizontal bar 10. An inclined plate 12 is provided on the outside of the through-box 3. A cleaning cotton column 13 is provided on the outside of the guide plate 4. The cleaning cotton column 13 is rotatably connected to the inclined plate 12. A guide column opening 14 is fixedly connected to the upper surface of the machine tool 1. A guard plate 15 is fixedly connected to the upper surface of the guide column opening 14. A support plate 16 is fixedly connected to the bottom of the guard plate 15. The worker starts motor 6, and the output of motor 6 drives the main shaft 7 to rotate. The worker passes one end of the nickel strip through the guide column opening 14, through the interior of the through box 3, and feeds it between the main shaft 7 and the driven shaft 8. Affected by the rotation of the main shaft 7, the upper and lower surfaces of one end of the nickel strip contact the surfaces of the main shaft 7 and the driven shaft 8, respectively, and the feeding of the nickel strip begins. When the nickel strip is fed on the upper surface of the guide plate 4, the upper surface of the nickel strip contacts the cleaning cotton column 13. The moving nickel strip drives the cleaning cotton column 13 to rotate, and the rotating cleaning cotton column 13 pushes the surface of the nickel strip... After wiping away any dust that may be present on the surface, the pneumatic cylinder 9 is started. The output of the pneumatic cylinder 9 drives the horizontal plate 10 to move up and down, causing the blade 11 to repeatedly insert into the cleaned nickel strip and move it into the blade hole 27. When the cleaned nickel strip moves directly below the blade 11, the moving blade 11 cuts the nickel strip. Through this operation, the dust on the surface of the nickel strip is cleaned before cutting, improving the quality of the cut nickel strip and achieving excellent dust removal results. A straightening rod 17 is provided on the outside of the guide plate 4, and a spring 18 is provided on the outside of the guard plate 15. The straightening rod 17 passes through the inside of the guard plate 15 and is fixedly connected to one end of the spring 18. The other end of the spring 18 is fixedly connected to the support plate 16. When the nickel strip is fed on the guide plate 4, the wrinkles on the surface of the nickel strip are smoothed by contact with the straightening rod 17. A friction layer 19 with a thickness of three centimeters is fixedly connected to the upper surface of the guide plate 4. The three-centimeter friction layer 19 increases the friction force generated by the contact between the bottom of the nickel strip and the upper surface of the guide plate 4, which facilitates the feeding of the nickel strip. A cotton layer 20 with a thickness of four centimeters is fixedly connected to the outside of the straightening rod 17. The four-centimeter cotton layer 20 prevents the straightening rod 17 from scratching the upper surface of the nickel strip when it contacts it.The through-hole 3 has a screw hole 21 inside, and a stud 22 is provided on the outside of the through-hole 3. The stud 22 passes through the screw hole 21 and is threadedly connected to the inclined plate 12. By rotating the stud 22, the inclined plate 12 moves up and down, thereby changing the height distance between the inclined plate 12 and the guide plate 4, thus adjusting the distance between the cleaning cotton column 13 and the upper surface of the moving nickel strip. The closer the distance between the cleaning cotton column 13 and the upper surface of the nickel strip, the greater the cleaning force on the upper surface of the nickel strip when the cleaning cotton column 13 rotates. A slide groove 23 is fixedly connected inside the through-hole 3, and a pulley 24 is provided on the outside of the crossbar 10. The pulley 24 is slidably connected to the slide groove 23. When the crossbar 10 is subjected to force and moves, the sliding connection between the pulley 24 and the slide groove 23 causes the crossbar 10 under force to drive the blade 11 to move up and down rapidly. An arc-shaped support frame 25 is provided on the outside of the horizontal bar 10. One end of the arc-shaped support frame 25 is fixedly connected to the cylinder machine 9, and the other end is fixedly connected to the through box 3. The arc-shaped support frame 25 provides reinforcement support for the working cylinder machine 9. A scale 26 is fixedly connected inside the through box 3. A blade drop hole 27 is opened inside the through box 3. The scale 26 provides a reference for the cutting length of the nickel strip. The blade drop hole 27 facilitates the falling of the blade 11 and prevents the blade 11 from hitting the blade. Two grinding blades 28 are fixedly connected inside the blade drop hole 27. After cutting the nickel strip, the blade 11 falls into the blade drop hole 27 and contacts the two grinding blades 28. The blade 11 is sharpened by friction with the two grinding blades 28, thereby continuously maintaining the sharpness of the blade 11. A ramp 29 is fixedly connected to the outside of the through box 3, and a collection box 30 is fixedly connected to the outside of the machine tool 1. The slit nickel strips slide down ramp 29 into collection box 30 for collection.

[0037] In this invention, the worker starts the motor 6, and the output end of the motor 6 drives the main shaft 7 to rotate. The worker passes one end of the nickel strip through the guide column opening 14, through the interior of the through box 3, and feeds it between the main shaft 7 and the driven shaft 8. Affected by the rotation of the main shaft 7, the upper and lower surfaces of one end of the nickel strip contact the surfaces of the main shaft 7 and the driven shaft 8, respectively, and the feeding of the nickel strip begins. When the nickel strip is fed on the upper surface of the guide plate 4, the upper surface of the nickel strip contacts the cleaning cotton column 13. The moving nickel strip drives the cleaning cotton column 13 to rotate, and the rotating cleaning cotton column 13... After wiping away any dust that may be present on the surface of the nickel strip, the pneumatic cylinder 9 is started. The output of the pneumatic cylinder 9 drives the horizontal plate 10 to move up and down, causing the blade 11 to repeatedly insert into the cleaned nickel strip and move it into the blade insertion hole 27. When the cleaned nickel strip moves directly below the blade 11, the moving blade 11 cuts the nickel strip. This process cleans the dust from the surface of the nickel strip before cutting, improving the quality of the cut nickel strip and achieving excellent dust removal results. When the nickel strip is fed onto the guide plate 4, the wrinkles on the surface of the nickel strip are smoothed by the contact of the straightening rod 17. The three-centimeter friction layer 19 increases the friction generated by the contact between the bottom of the nickel strip and the upper surface of the guide plate 4, facilitating the feeding of the nickel strip. The four-centimeter cotton layer 20 prevents the upper surface of the nickel strip from being scratched when the straightening rod 17 contacts it. By rotating the stud 22, the inclined plate 12 moves up and down, thereby changing the height distance between the inclined plate 12 and the guide plate 4, thus adjusting the distance between the cleaning cotton column 13 and the upper surface of the moving nickel strip. The closer the distance between the cleaning cotton column 13 and the upper surface of the nickel strip, the greater the cleaning force of the cleaning cotton column 13 on the upper surface of the nickel strip when it rotates. When the horizontal bar 10 is under force and moves, the sliding connection between the pulley 24 and the groove 23 causes the horizontal bar 10 under force to drive the blade 11 to move up and down rapidly. The arc-shaped support 25 strengthens the support of the working cylinder 9. The scale 26 provides a reference for the length of the nickel strip being cut. The drop hole 27 facilitates the drop of the blade 11 and prevents the blade 11 from hitting the blade. After cutting the nickel strip, the blade 11 falls into the drop hole 27. At the same time, the blade 11 contacts the two grinding blades 28 and is sharpened by friction with the two grinding blades 28, thereby maintaining the sharpness of the blade 11. The cut nickel strip slides down the ramp 29 into the collection box 30 for collection.

[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A dust-removable ultra-thin nickel strip slitting and forming device, comprising a machine tool (1), characterized in that: The bottom of the machine tool (1) is fixedly connected to a table leg (2), the upper surface of the machine tool (1) is fixedly connected to a through box (3), the upper surface of the machine tool (1) is fixedly connected to a guide plate (4), the guide plate (4) penetrates into the interior of the through box (3), the interior of the through box (3) is provided with a rotating hole (5), the upper surface of the machine tool (1) is fixedly connected to a motor (6), the interior of the through box (3) is provided with a main rotating shaft (7), the output end of the motor (6) penetrates into the interior of the rotating hole (5) and is fixedly connected to the main rotating shaft (7), the interior of the through box (3) is rotatably connected to a drive shaft (8), the interior of the through box (3) is fixedly connected to a drive shaft (8). A cylinder machine (9) is connected to the guide plate (4), and a horizontal bar plate (10) is provided on the outside of the guide plate (4). The output end of the cylinder machine (9) is fixedly connected to the horizontal bar plate (10). A blade (11) is fixedly connected to the bottom of the horizontal bar plate (10). An inclined plate (12) is provided on the outside of the through box (3). A cleaning cotton column (13) is provided on the outside of the guide plate (4). The cleaning cotton column (13) is rotatably connected to the inclined plate (12). A guide column opening (14) is fixedly connected to the upper surface of the machine tool (1). A guard plate (15) is fixedly connected to the upper surface of the guide column opening (14). A support plate (16) is fixedly connected to the bottom of the guard plate (15).

2. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 1, characterized in that: The guide plate (4) is provided with a straightening rod (17) on the outside, and the guard plate (15) is provided with a spring (18) on the outside. The straightening rod (17) passes through the interior of the guard plate (15) and is fixedly connected to one end of the spring (18). The other end of the spring (18) is fixedly connected to the support plate (16).

3. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 1, characterized in that: The upper surface of the guide plate (4) is fixedly connected with a friction layer (19), the friction layer (19) having a thickness of three centimeters.

4. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 2, characterized in that: The straightening rod (17) is externally fixedly connected to a cotton layer (20), the thickness of which is four centimeters.

5. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 1, characterized in that: The through box (3) has a screw hole (21) inside and a stud (22) is provided on the outside of the through box (3). The stud (22) passes through the screw hole (21) and is threadedly connected to the inclined plate (12).

6. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 1, characterized in that: The through box (3) is fixedly connected to the inside of the sliding groove (23), and the outside of the crossbar (10) is provided with a pulley (24), which is slidably connected to the sliding groove (23).

7. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 1, characterized in that: An arc-shaped support (25) is provided on the outside of the horizontal bar (10). One end of the arc-shaped support (25) is fixedly connected to the cylinder (9), and the other end of the arc-shaped support (25) is fixedly connected to the through box (3).

8. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 1, characterized in that: A scale (26) is fixedly connected inside the through box (3), and a cutting hole (27) is opened inside the through box (3).

9. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 8, characterized in that: The grinding blade (28) is fixedly connected inside the cutting hole (27), and there are two grinding blades (28).

10. The dust-removable ultra-thin nickel strip slitting and forming equipment according to claim 1, characterized in that: The external fixed connection of the through box (3) is a ramp (29), and the external fixed connection of the machine tool (1) is a collection box (30).