A device for producing a nickel-plated aluminum part of a runner and a processing technology thereof

By improving the design of electroplating components, the problems of unstable fixation, uneven plating, and low production efficiency during the nickel plating process of moving plate aluminum parts were solved, achieving stable fixation, uniform electroplating, and efficient cleaning, thereby improving production efficiency and plating quality.

CN122105587APending Publication Date: 2026-05-29扬州市景杨表面工程有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
扬州市景杨表面工程有限公司
Filing Date
2026-03-12
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Traditional moving disc aluminum nickel plating production equipment suffers from problems such as rudimentary aluminum part fixing methods, difficulty in adapting to complex structures, uneven plating thickness, insufficient adhesion, low production efficiency, and lack of efficient control in the cleaning and stirring processes.

Method used

The design incorporates electroplating components, including an electroplating tank, suspension position, electroplating solution transmission pipeline, permeation component, stirring component, and cleaning component. Through the synergistic action of components such as drive cylinder, stirring motor, permeation membrane, and adsorption particle plate, it achieves stable fixation, uniform electroplating, and efficient cleaning of the moving plate aluminum parts.

Benefits of technology

It achieves stable fixation, uniform electroplating, and efficient cleaning during the nickel plating process of moving plate aluminum parts, improving the plating quality and production efficiency, and meeting the needs of modern production.

✦ Generated by Eureka AI based on patent content.

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Abstract

A kind of runner aluminum piece nickel plating production device and its processing technology, be provided with electroplating component, the electroplating component is electroplating bath and electroplating assembly, the electroplating bath is provided with electroplating space, one side of the electroplating space is provided with suspension position, the suspension position is provided with electroplating liquid transmission pipeline, the electroplating liquid transmission pipeline is provided with spray port, one side of the electroplating liquid transmission pipeline is provided with bottom lifting component, the bottom lifting component is provided with movable lifting chuck, by drive cylinder drive fixed chuck and resist the aluminum piece of runner, simultaneously start side drive cylinder and push side drive rod, make drive rack drive driving gear wheel rotation, utilize double gear set and rubber outer surface to ensure that the aluminum piece of runner and electroplating assembly stable contact, can be well for the aluminum piece of runner in nickel plating local fixation.
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Description

Technical Field

[0001] This invention relates to a nickel plating equipment for parts and a nickel plating process thereof, specifically to a nickel plating production device for moving disc aluminum parts and a processing technology thereof. Background Technology

[0002] Chemical plating is a method of forming a metal coating on an object through the oxidation-reduction reaction of metals. It can be performed regardless of the shape of the product, and after a specific pretreatment process, it can also be used to plate insulating objects. The importance of surfaces plated by chemical plating in the parts and materials industry is gradually increasing, such as for mounting surfaces or joint interfaces of high-density ultra-small components in various packaging fields.

[0003] In the industrial production of moving plate aluminum parts, nickel plating is a key process to improve their corrosion resistance and wear resistance and ensure stable operation of equipment. Traditional nickel plating production equipment has obvious shortcomings: on the one hand, the aluminum parts are fixed in a simple way, which is difficult to adapt to the complex structure of the moving plate. They are prone to shaking and displacement during electroplating, resulting in uneven plating thickness, insufficient adhesion, and low pass rate. The loading and unloading process is cumbersome, and the cleaning and stirring process lacks efficient control, resulting in low overall production efficiency and difficulty in meeting the production requirements of modern production for nickel plating of moving plate aluminum parts. Summary of the Invention

[0004] To overcome the shortcomings of the prior art, the present invention provides a nickel plating production device for moving disc aluminum parts and its processing technology.

[0005] This invention is achieved using the following technical solution: a nickel plating production device for moving aluminum parts and its processing technology, comprising an electroplating component, wherein the electroplating component consists of an electroplating tank and an electroplating assembly, the electroplating tank contains an electroplating space, a suspension position is provided on one side of the electroplating space, an electroplating solution transmission pipe is provided on the suspension position, a spray port is provided on the electroplating solution transmission pipe, a bottom support component is provided on one side of the electroplating solution transmission pipe, a movable support chuck is provided on the bottom support component, a snap-fit ​​assembly is provided on the movable support chuck, a snap-fit ​​intermediate groove is provided on the snap-fit ​​assembly, the electroplating transmission pipe is equipped through the snap-fit ​​intermediate groove, and a parts loading component is provided in the electroplating tank, wherein the parts... The loading component is a loading bracket, on which a loading crossbar is installed. A movable aluminum disc is suspended from the loading crossbar. A fixed chuck is installed on the loading bracket, and a drive cylinder is installed on the top of the fixed chuck. When the drive cylinder is activated, the fixed chuck abuts against the movable aluminum disc. A side drive rod is installed on one side of the fixed chuck, and a side drive cylinder is installed on one side of the side drive rod. A drive rack is installed on the side drive rod, and a drive gear is installed on the drive rack. An assembly retaining ring is installed on the drive gear, and an assembly shaft is installed on the assembly retaining ring. A contact end face is fitted on the assembly shaft, and a double gear set is installed on the contact end face. A rubber outer surface is provided on the double gear set.

[0006] The electroplating tank is equipped with a permeation component at the bottom, which is a permeation plate. The permeation plate has multiple permeation holes, and a permeation membrane assembly is provided on one side of the permeation plate. The permeation membrane assembly is divided into an inner permeation membrane and an outer permeation membrane. The inner permeation membrane is a PAN / TiO2 / PANI hybrid fiber membrane, and the outer permeation membrane is a bipyridyl covalent organic framework adsorption membrane. An adsorption space is provided between the inner and outer permeation membranes, and an adsorption particle plate is provided in the adsorption space.

[0007] The adsorption particle plate is filled with multiple adsorption particles, including adsorbent carbon particles, adsorbent silver ions, and adsorbent slow-release tablets. The adsorbent slow-release tablets are distributed on one side of the adsorption particle plate. The adsorption particle plate has grooves, and the adsorbent slow-release tablets are filled into the grooves. The top of the electroplating tank has an installation position, and the installation position has a drive cylinder. The lifting ring has a small hydraulic support, which is distributed inside the lifting ring. The lifting ring has an assembly table, and the drive cylinder is assembled using bolts and the assembly table.

[0008] The electroplating tank is equipped with a stirring assembly on its side. The stirring assembly is a stirring shaft with a stirring protrusion rod on it. The stirring protrusion rod is a small flexible rubber blade. A stirring drive motor is provided on one side of the stirring shaft. The stirring drive motor drives the stirring protrusion rod to perform stirring action. A movable fitting is provided on the stirring shaft, and the stirring protrusion rod is installed on the movable fitting. The movable fitting is directly assembled to the stirring shaft, and a movable locking threaded sleeve is provided between the movable fitting and the stirring shaft.

[0009] The electroplating tank is equipped with a cleaning component, which is a cleaning water tank. A cleaning port is provided between the cleaning water tank and the electroplating tank. A water flow control plate is provided at the cleaning port. An angle adjustment component, which is an angle adjustment cylinder, is provided below the water flow control plate. The angle adjustment cylinder adjusts the tilt angle of the water flow control plate. The water flow control plate controls the water flow according to the tilt angle. A reagent dripping component is provided on the water flow control plate.

[0010] The aforementioned medicine infusion assembly is a medicine infusion box. A shelf is provided below the medicine infusion box, and the shelf supports the medicine infusion box. A infusion port is provided on the medicine infusion box. A locking component is provided between the medicine infusion box and the shelf, and the locking component locks the pin. A spring plate is provided between the medicine infusion box and the shelf.

[0011] The spring plate is provided with a high spring on one side and a low spring on the other side. When the reagent dripping box is assembled, the spring plate is squeezed by external force. The locking pin assembles the reagent dripping box and the shelf. After the locking pin is removed, the spring plate rebounds and provides support to the bottom of the reagent dripping box. A waste liquid transmission pipe is provided on one side of the electroplating tank.

[0012] A secondary waste liquid treatment device is provided on one side of the waste liquid transmission pipeline. The secondary waste liquid treatment device is a secondary waste liquid treatment tank. A rotating suction cup is provided inside the secondary waste liquid treatment tank. A small motor is provided on the top of the rotating suction cup. A magnetic suction groove is provided on the rotating suction cup. A vertical magnetic suction column is installed in the magnetic suction groove.

[0013] The moving aluminum plate is suspended on the loading crossbar of the loading bracket. The fixed chuck is driven by the driving cylinder to press against the moving aluminum plate. At the same time, the side driving cylinder is activated to push the side driving rod, so that the driving rack drives the driving large gear to rotate. Then, the assembly swivel and assembly shaft drive the contact end face to move. The double gear set and rubber outer surface ensure stable contact between the moving aluminum plate and the electroplating component.

[0014] The electroplating process is started by spraying the electroplating solution onto the moving plate aluminum parts through the spray port on the electroplating solution transmission pipeline. At the same time, the stirring assembly is started, and the stirring shaft and stirring protruding rod are rotated by the drive motor to stir the electroplating solution and ensure that the electroplating solution evenly covers the surface of the moving plate aluminum parts to complete the nickel plating operation. During the electroplating process, the permeation plate at the bottom of the electroplating tank filters the electroplating solution through the permeation holes. The adsorption particle plate in the adsorption space between the inner and outer permeation membranes of the permeation membrane group adsorbs and purifies the impurities in the electroplating solution by adsorbing carbon particles, adsorbing silver ions, and adsorbing slow-release tablets. The tilt angle of the water flow control plate is adjusted by the angle adjustment cylinder, which controls the cleaning water tank to spray cleaning water onto the moving plate aluminum parts through the cleaning port. At the same time, the chemical dripping tank drips chemical into the cleaning water flow through the dripping port to clean the moving plate aluminum parts. The waste liquid generated during cleaning is transported to the waste liquid secondary treatment tank through the waste liquid transmission pipeline. The rotating suction cup is driven by a small motor to rotate, and the vertical magnetic suction column in the magnetic suction tank adsorbs and treats the impurities in the waste liquid.

[0015] Compared to existing technologies, this invention uses a drive cylinder to drive a fixed chuck to press against the moving aluminum plate, while simultaneously activating a side drive cylinder to push a side drive rod, causing the drive rack to rotate the drive gear. The double gear set and rubber outer surface ensure stable contact between the moving aluminum plate and the electroplating assembly, effectively securing the moving aluminum plate during nickel plating. The double gear set and rubber outer surface provide lateral support to the electroplating component. Adjustments to the support position are simple: the operator activates the drive cylinder, and the coordination of the drive cylinder, drive rack, and drive gear adjusts the position of the double gear set, providing excellent support. The position is adjusted so that the spray port on the electroplating solution transmission pipeline sprays the electroplating solution onto the moving plate aluminum part. At the same time, the stirring component is started. The drive motor drives the stirring shaft and the stirring protruding rod to rotate, stirring the electroplating solution and ensuring that the electroplating solution evenly covers the surface of the moving plate aluminum part, thus completing the nickel plating operation. During the electroplating process, the permeation plate at the bottom of the electroplating tank filters the electroplating solution through the permeation holes. The adsorption particle plate in the adsorption space between the internal and external permeation membranes of the permeation membrane group adsorbs and purifies the impurities in the electroplating solution by adsorbing carbon particles, adsorbing silver ions, and adsorbing slow-release tablets. This allows for further adsorption of impurities inside the electroplating solution, meeting the treatment requirements of the electroplating solution. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a partial cross-sectional view of the present invention; Figure 3 This is a partial cross-sectional view of the present invention; Figure 4 This is a partial cross-sectional view of the present invention; Figure 5This is a partial cross-sectional view of the present invention; Figure 6 This is a partial cross-sectional view of the present invention; Figure 7 This is a partial cross-sectional view of the present invention; Figure 8 This is a cross-sectional view of the permeation plate of the present invention; In the diagram: 1. Electroplating tank, 2. Electroplating assembly, 3. Suspension position, 4. Electroplating solution transmission pipe, 5. Spray port, 6. Bottom support component, 7. Movable support chuck, 8. Snap-fit ​​assembly, 9. Snap-fit ​​intermediate groove, 10. Loading bracket, 11. Loading crossbar, 12. Fixed chuck, 13. Drive cylinder, 14. Side drive rod, 15. Side drive cylinder, 16. Drive rack, 17. Drive gear, 18. Assembly retaining ring, 19. Assembly shaft, 20. Contact end face, 21. Double gear set, 22. Rubber outer surface, 23. Permeation plate, 24. Permeation hole, 25. Permeation membrane assembly, 26. Internal permeation membrane, 27. 28. External permeation membrane; 29. ​​Adsorbent particle plate; 30. Adsorbent particulate matter; 31. Installation position; 32. Small hydraulic support; 33. Assembly table; 34. Stirring shaft; 35. Stirring protruding rod; 36. Movable fittings; 37. Stirring drive motor; 38. Cleaning water tank; 39. Cleaning port; 40. Water flow control plate; 41. Angle adjustment cylinder; 42. Chemical dripping tank; 43. Shelf; 44. Drip port; 45. Locking pin; 46. Spring plate; 47. Waste liquid transmission pipeline; 48. Waste liquid secondary treatment tank; 49. Rotating suction cup; 50. Small motor; 51. Magnetic suction groove; 52. Vertical magnetic suction column. Detailed Implementation

[0017] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0018] A nickel plating production device and its processing technology for moving-disc aluminum parts include an electroplating component, comprising an electroplating tank 1 and an electroplating assembly 2. The electroplating tank contains an electroplating space, and a suspension position 3 is located on one side of the electroplating space. An electroplating solution transmission pipe 4 is installed on the suspension position, and a spray port 5 is installed on the electroplating solution transmission pipe. A bottom support component 6 is located on one side of the electroplating solution transmission pipe, and a movable support chuck 7 is installed on the bottom support component. A snap-fit ​​assembly 8 is installed on the movable support chuck, and a snap-fit ​​intermediate groove 9 is installed on the snap-fit ​​intermediate groove. The electroplating transmission pipe is equipped through the snap-fit ​​intermediate groove. A parts loading component, namely a loading rack 10, is located within the electroplating tank. The loading rack is equipped with a loading crossbar 11, on which a movable aluminum disc is suspended. The loading rack is equipped with a fixed chuck 12, and a drive cylinder 13 is installed on the top of the fixed chuck. The fixed chuck abuts against the movable aluminum disc when the drive cylinder is activated. A side drive rod 14 is installed on one side of the fixed chuck, and a side drive cylinder 15 is installed on one side of the side drive rod. A drive rack 16 is installed on the side drive rod, and a drive gear 17 is installed on the drive rack. An assembly retaining ring 18 is installed on the drive gear, and an assembly shaft 19 is installed on the assembly retaining ring. A contact end face 20 is fitted on the assembly shaft, and a double gear set 21 is installed on the contact end face. A rubber outer contact surface 22 is installed on the double gear set.

[0019] The contact end face can provide lateral support to the moving plate aluminum parts. During support, adjustments can be made in a timely manner as needed at different positions. A permeation assembly is provided at the bottom of the electroplating tank. The permeation assembly is a permeation plate 23, which has multiple permeation holes 24. A permeation membrane assembly 25 is provided on one side of the permeation plate. The permeation membrane assembly is divided into an inner permeation membrane 26 and an outer permeation membrane 27. The inner permeation membrane 26 is a PAN / TiO2 / PANI hybrid fiber membrane, and the outer permeation membrane 27 is a bipyridyl covalent organic framework adsorption membrane. An adsorption space is provided between the inner and outer permeation membranes, and an adsorption particle plate 28 is provided in the adsorption space.

[0020] The adsorption particle plate is filled with multiple adsorption particles 29, which are adsorbed carbon particles, adsorbed silver ions, and adsorption slow-release tablets. The adsorption slow-release tablets are distributed on one side of the adsorption particle plate. The adsorption particle plate is provided with grooves, and the adsorption slow-release tablets are filled in the grooves. The top of the electroplating tank is provided with an installation position 30, and the installation position is provided with a drive cylinder. The lifting ring is provided with a small hydraulic support 31, which is distributed inside the lifting ring. The lifting ring is provided with an assembly table 32. The drive cylinder 13 is assembled with bolts and the assembly table 32.

[0021] An agitation assembly is provided on the side of the electroplating tank. The agitation assembly is an agitation shaft 33, and an agitation protrusion rod 34 is provided on the agitation shaft 33. The agitation protrusion rod is a small flexible rubber blade. An agitation drive motor 36 is provided on one side of the agitation shaft. The agitation drive motor drives the agitation protrusion rod to perform agitation. A movable fitting 35 is provided on the agitation shaft, and the agitation protrusion rod 34 is installed on the movable fitting 35. The movable fitting is directly assembled to the agitation shaft, and a movable locking threaded sleeve is provided between the movable fitting and the agitation shaft 33.

[0022] A cleaning assembly, namely a cleaning water tank 37, is provided on the electroplating tank. A cleaning port 38 is provided between the cleaning water tank and the electroplating tank. A water flow control plate 39 is provided at the cleaning port. An angle adjustment assembly, namely an angle adjustment cylinder 40, is provided below the water flow control plate. The angle adjustment cylinder adjusts the tilt angle of the water flow control plate. The water flow control plate controls the water flow according to the tilt angle. A reagent dripping assembly is provided on the water flow control plate.

[0023] The medicine infusion assembly is a medicine infusion box 41. A shelf 42 is provided below the medicine infusion box, and the shelf supports the medicine infusion box. A infusion port 43 is provided on the medicine infusion box. A locking component is provided between the medicine infusion box and the shelf, and the locking component locks the pin 44. A spring plate 45 is provided between the medicine infusion box and the shelf.

[0024] A high spring is provided on one side of the spring plate 45 and a low spring is provided on the other side. When the reagent dripping box 41 is assembled, the spring plate is squeezed by external force. The locking pin assembles the reagent dripping box and the shelf. After the locking pin 44 is removed, the spring plate 45 springs back to provide support force to the bottom of the reagent dripping box. A waste liquid transmission pipe 46 is provided on one side of the electroplating tank.

[0025] A secondary waste liquid treatment device is installed on one side of the waste liquid transmission pipeline 46. The secondary waste liquid treatment device is a secondary waste liquid treatment tank 47. A rotating suction cup 48 is installed inside the secondary waste liquid treatment tank. A small motor 49 is installed on the top of the rotating suction cup. A magnetic suction groove 50 is installed on the rotating suction cup. A vertical magnetic suction column 51 is installed in the magnetic suction groove. The vertical magnetic suction column 51 is horizontally distributed on the rotating suction cup. The rotation of the rotating suction cup can move the vertical magnetic suction column 51. Since the vertical magnetic suction column 51 is filled with a large number of magnetic particles, the magnetic particles adsorb the particles in the waste liquid, thus meeting the needs of subsequent waste liquid treatment.

[0026] The moving aluminum plate is suspended on the loading crossbar 11 of the loading bracket 10. The fixed chuck 12 is driven by the driving cylinder 13 to press against the moving aluminum plate. At the same time, the side driving cylinder 14 is activated to push the side driving rod, so that the driving rack drives the driving large gear 17 to rotate. Then, the assembly retaining ring 18 and the assembly shaft 19 drive the contact end face to move. The double gear set 21 and the rubber outer surface 22 ensure stable contact between the moving aluminum plate and the electroplating component. The fixed chuck 12 effectively fixes the moving aluminum plate being electroplated on the side of the loading bracket 10, which can prevent the moving aluminum plate from tipping over during electroplating.

[0027] The electroplating process is started by spraying electroplating solution onto the moving plate aluminum parts through the spray port on the electroplating solution transmission pipe 4. At the same time, the stirring assembly is started, and the stirring shaft 33 and the stirring protruding thin rod 34 are rotated by the drive motor to stir the electroplating solution and ensure that the electroplating solution evenly covers the surface of the moving plate aluminum parts to complete the nickel plating operation. During the electroplating process, the permeation plate 23 at the bottom of the electroplating tank filters the electroplating solution through the permeation holes. The adsorption particle plate in the adsorption space between the inner and outer permeation membranes of the permeation membrane group 25 adsorbs and purifies the impurities in the electroplating solution by adsorbing carbon particles, adsorbing silver ions and adsorbing slow-release tablets. The tilt angle of the water flow control plate 39 is adjusted by the angle adjustment cylinder 40, which controls the cleaning water tank to spray cleaning water into the moving plate aluminum part through the cleaning port 38. At the same time, the chemical dripping tank drips chemical into the cleaning water flow through the dripping port 38 to clean the moving plate aluminum part. The waste liquid generated by cleaning is transported to the waste liquid secondary treatment tank through the waste liquid transmission pipeline. The small motor 49 drives the rotating suction cup 48 to rotate, and the vertical magnetic suction column 51 in the magnetic suction tank adsorbs and treats the impurities in the waste liquid.

[0028] The above embodiments are merely preferred embodiments of the present invention and should not be construed as limiting the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention shall fall within the scope of protection claimed by the present invention.

Claims

1. A nickel plating production apparatus and processing technology for moving aluminum parts, comprising an electroplating component, wherein the electroplating component is an electroplating tank and an electroplating assembly, the electroplating tank having an electroplating space, a suspension position being provided on one side of the electroplating space, an electroplating solution transmission pipe being provided on the suspension position, a spray port being provided on the electroplating solution transmission pipe, a bottom support component being provided on one side of the electroplating solution transmission pipe, a movable support chuck being provided on the bottom support component, a snap-fit ​​assembly being provided on the movable support chuck, a snap-fit ​​intermediate groove being provided on the snap-fit ​​assembly, and the electroplating transmission pipe being equipped through the snap-fit ​​intermediate groove, characterized in that: The electroplating tank is equipped with a component loading device, which is a loading bracket. The loading bracket has a loading crossbar, on which a movable aluminum plate is suspended. A fixed chuck is mounted on the loading bracket, and a driving cylinder is mounted on the top of the fixed chuck. When the driving cylinder is activated, the fixed chuck presses against the movable aluminum plate. A side drive rod is mounted on one side of the fixed chuck, and a side drive cylinder is mounted on one side of the side drive rod. A drive rack is mounted on the side drive rod, and a large drive gear is mounted on the drive rack. An assembly retainer is mounted on the large drive gear, and an assembly shaft is mounted on the assembly retainer. A contact end face is fitted onto the assembly shaft, and a double gear set is mounted on the contact end face. A rubber outer surface is provided on the double gear set.

2. The nickel plating production apparatus for moving disc aluminum parts according to claim 1, characterized in that: The electroplating tank is equipped with a permeation component at the bottom, which is a permeation plate. The permeation plate has multiple permeation holes. A permeation membrane assembly is provided on one side of the permeation plate. The permeation membrane assembly is divided into an inner permeation membrane and an outer permeation membrane. The inner permeation membrane is a hybrid fiber membrane, and the outer permeation membrane is an organic framework adsorption membrane. An adsorption space is provided between the inner and outer permeation membranes, and an adsorption particle plate is provided in the adsorption space.

3. The nickel plating production apparatus for moving disc aluminum parts according to claim 2, characterized in that: The adsorption particle plate is filled with multiple adsorption particles, including adsorbent carbon particles, adsorbent silver ions, and adsorbent slow-release tablets. The adsorbent slow-release tablets are distributed on one side of the adsorption particle plate. The adsorption particle plate has grooves, and the adsorbent slow-release tablets are filled into the grooves. The top of the electroplating tank has an installation position, and the installation position has a drive cylinder and a lifting ring. The lifting ring has small hydraulic supports distributed inside the lifting ring. The lifting ring has an assembly table, and the drive cylinder is assembled using bolts and the assembly table.

4. The nickel plating production apparatus for moving disc aluminum parts according to claim 3, characterized in that: The electroplating tank is equipped with a stirring assembly on its side. The stirring assembly is a stirring shaft with a stirring protrusion rod on it. The stirring protrusion rod is a small flexible rubber blade. A stirring drive motor is provided on one side of the stirring shaft. The stirring drive motor drives the stirring protrusion rod to perform stirring action. A movable fitting is provided on the stirring shaft, and the stirring protrusion rod is installed on the movable fitting. The movable fitting is directly assembled to the stirring shaft, and a movable locking threaded sleeve is provided between the movable fitting and the stirring shaft.

5. The nickel plating production apparatus for moving disc aluminum parts according to claim 4, characterized in that: The electroplating tank is equipped with a cleaning component, which is a cleaning water tank. A cleaning port is provided between the cleaning water tank and the electroplating tank. A water flow control plate is provided at the cleaning port. An angle adjustment component, which is an angle adjustment cylinder, is provided below the water flow control plate. The angle adjustment cylinder adjusts the tilt angle of the water flow control plate. The water flow control plate controls the water flow according to the tilt angle. A reagent dripping component is provided on the water flow control plate.

6. The nickel plating production apparatus for moving disc aluminum parts according to claim 5, characterized in that: The aforementioned medicine infusion assembly is a medicine infusion box. A shelf is provided below the medicine infusion box, and the shelf supports the medicine infusion box. A infusion port is provided on the medicine infusion box. A locking component is provided between the medicine infusion box and the shelf, and the locking component locks the pin. A spring plate is provided between the medicine infusion box and the shelf.

7. The nickel plating production apparatus for moving disc aluminum parts according to claim 6, characterized in that: The spring plate is provided with a high spring on one side and a low spring on the other side. When the reagent dripping box is assembled, the spring plate is squeezed by external force. The locking pin assembles the reagent dripping box and the shelf. After the locking pin is removed, the spring plate rebounds and provides support to the bottom of the reagent dripping box. A waste liquid transmission pipe is provided on one side of the electroplating tank.

8. The nickel plating production apparatus for moving disc aluminum parts according to claim 7, characterized in that: A secondary waste liquid treatment device is provided on one side of the waste liquid transmission pipeline. The secondary waste liquid treatment device is a secondary waste liquid treatment tank. A rotating suction cup is provided inside the secondary waste liquid treatment tank. A small motor is provided on the top of the rotating suction cup. A magnetic suction groove is provided on the rotating suction cup. A vertical magnetic suction column is installed in the magnetic suction groove.

9. The processing technology of a moving disc aluminum part nickel plating production device according to claim 8, characterized in that: The moving aluminum plate is suspended on the loading crossbar of the loading bracket. The fixed chuck is driven by the driving cylinder to press against the moving aluminum plate. At the same time, the side driving cylinder is activated to push the side driving rod, so that the driving rack drives the driving large gear to rotate. Then, the assembly swivel and assembly shaft drive the contact end face to move. The double gear set and rubber outer surface are used to ensure stable contact between the moving aluminum plate and the electroplating component. The electroplating process is started by spraying the electroplating solution onto the moving plate aluminum parts through the spray port on the electroplating solution transmission pipeline. At the same time, the stirring assembly is started, and the stirring shaft and stirring protruding rod are rotated by the drive motor to stir the electroplating solution and ensure that the electroplating solution evenly covers the surface of the moving plate aluminum parts to complete the nickel plating operation. During the electroplating process, the permeation plate at the bottom of the electroplating tank filters the electroplating solution through the permeation holes. The adsorption particle plate in the adsorption space between the inner and outer permeation membranes of the permeation membrane group adsorbs and purifies the impurities in the electroplating solution by adsorbing carbon particles, adsorbing silver ions, and adsorbing slow-release tablets. After nickel plating is completed, the assembly platform is moved along the drive groove by the platform drive cylinder, so that the loading rack is removed from the electroplating tank. Then, the small hydraulic support is activated to push the lifting ring and assembly table, the position of the drive motor is adjusted, the loading rack is removed from the drive shaft, and then the loading rack is transferred to the cleaning component. The tilt angle of the water flow control plate is adjusted by the angle adjustment cylinder, and the cleaning water tank sprays cleaning water into the moving plate aluminum part through the cleaning port. At the same time, the chemical dripping tank drips chemical into the cleaning water flow through the dripping port to clean the moving plate aluminum part. The waste liquid generated by cleaning is transported to the waste liquid secondary treatment tank through the waste liquid transmission pipeline. The small motor drives the rotating suction cup to rotate, and the vertical magnetic suction column in the magnetic suction tank adsorbs the impurities in the waste liquid.