A rotary flying palladium swing device
By designing a cyclonic flying palladium sway device, the combination of spring and sliding plate is used to achieve stable conduction of the components to be electroplating on the flying palladium, solving the problem of poor conductivity, improving the plating and cleaning effects, and avoiding poor electrical contact and abnormal noise.
Patent Information
- Application Number
- CN202510125130.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-27
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2045-01-27
AI Technical Summary
In the prior art, when the electroplating component is suspended on the fly palladium, it is easy to cause poor conductivity due to friction and shaking, which affects the electroplating effect and produces abnormal noise.
A cyclonic flying palladium sway device is designed, including a bracket assembly, a lifting and rotating assembly, an inner and outer reversing rotating assembly and a suspension fixing assembly. The electrical connection is maintained through the spring force, and the coordination of the sliding plate and the slide rail achieves stable conductivity. The driving motor drives rotation and cleaning mode switching. The suspension member rotates around the axis in the plating solution, which improves the plating and cleaning effect.
The components to be electroplating are stable conductivity on the electroplating, avoiding poor electrical contact and noise, improving the electroplating and cleaning effects, and avoiding corrosion of the residual electroplating solution on workers and the electroplating palladium.
Smart Images

Figure CN119571427B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of electroplating, and specifically refers to a rotary flying palladium swinging device. Background Art
[0002] Electroplating is a process of completing a surface coating in a component electroplating solution. During and after electroplating, the components to be electroplated are suspended by flying palladium. In addition, the flying palladium also plays a role in conducting electricity to the components to be electroplated.
[0003] Currently, when suspending the components to be electroplated by flying palladium, some components to be electroplated are not fixed. Even when the components to be electroplated are fixed on the flying palladium, they are usually fixed on the flying palladium by some bolts or fasteners. However, when the suspended components to be electroplated move in the electroplating solution, on the one hand, it is easy to cause friction between the components to be electroplated and the flying palladium, resulting in more scratches on the flying palladium, reducing the conductive effect between the components to be electroplated and the flying palladium, and at the same time generating abnormal noises. On the other hand, when the components to be electroplated shake on the flying palladium, it is also easy to cause poor electrical contact between the flying palladium and the components to be electroplated. When the current conduction through the components to be electroplated and the electroplating solution is affected, it is easy to affect the electroplating effect. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the above technical problems and provide a rotary flying palladium swinging device that can provide stable conductivity when the components to be electroplated are suspended on the flying palladium.
[0005] To solve the above technical problems, the technical solution provided by the present invention is: a rotary flying palladium swinging device, including: a bracket assembly, a lifting and rotating assembly, an internal and external reverse rotation assembly, and a suspension and fixing assembly; the bracket assembly is used for placing the components to be electroplated and the flying palladium, and supporting the lifting and rotating assembly; the lifting and rotating assembly is arranged on the bracket assembly and is used for the rotation and lifting of the internal and external reverse rotation assembly and the suspension and fixing assembly; the internal and external reverse rotation assembly is arranged on the lifting and rotating assembly and is used for adjusting the components to be electroplated to switch between electroplating and cleaning modes; the suspension and fixing assembly is arranged on the internal and external reverse rotation assembly, and the suspension and fixing assembly is used for suspending the components to be electroplated by the flying palladium.
[0006] Preferably, the bracket assembly includes an electroplating tank, a cleaning tank arranged in the electroplating tank, and fixing columns arranged at the edge position of the electroplating tank, and a top rod is connected to the upper end of the fixing column.
[0007] Preferably, the lifting and rotating assembly includes a driving motor 1, an electric push rod, and a rotating rod. The driving motor 1 is fixedly arranged on the upper side of the top rod, the output end of the driving motor 1 rotates through the top rod and is connected to the rotating rod, the upper side of the other end of the rotating rod is connected to the electric push rod, and the output end of the electric push rod rotates through the rotating rod and is rotatably connected to a rotating rod.
[0008] Preferably, the internal and external reverse rotation assembly includes a second driving motor, a worm, and a worm gear disposed on the upper side of the rotating rod. The worm gear is fixed to the outside of the output end of the electric push rod. The worm is meshed with the worm gear. Both ends of the worm are rotatably connected with a first rotating seat connected to the rotating rod. The second driving motor is fixedly disposed on one side of the first rotating seat. The output end of the second driving motor rotatably penetrates the first rotating seat and is connected to the worm.
[0009] Preferably, two symmetrically arranged second rotating seats are connected to the lower side of the rotating rod. The second rotating seat rotatably penetrates a first rotating shaft. Symmetrically arranged first bevel gears are sleeved and fixed on the outside of the first rotating shaft. A toothed ring capable of meshing with one of the first bevel gears is connected to the upper end of the edge position of the cleaning tank. When the rotating rod rotates around the output end of the electric push rod by a certain degree, the toothed ring can mesh with the other first bevel gear. Both ends of the first rotating shaft are respectively connected with second bevel gears. Both ends of the rotating rod rotatably penetrate a second rotating shaft. A third bevel gear meshing with the second bevel gear is connected to the outside of the second rotating shaft. A suspension disc is connected to the lower end of the second rotating shaft.
[0010] Preferably, the suspension and fixing assembly includes flying palladiums and U-shaped frames. There are multiple U-shaped frames, which are arranged along the circumferential direction at the edge position of the lower side wall of the suspension disc. The component to be electroplated includes a suspension piece, and the suspension piece has a U-shaped structure. The flying palladiums are rotatably disposed on the U-shaped frames, and the suspension piece is hung and fixed on the flying palladiums.
[0011] Preferably, the suspension and fixing assembly further includes sliding rails fixedly arranged on the inner walls of both sides of the suspension piece, sliding strips matched with the sliding rails, and a first sliding plate fixed to the sliding strips. A cavity is provided on the flying palladium. Fixed plates are fixedly arranged on the inner walls of both sides of the cavity. Electromagnets are connected to the opposite side walls of the fixed plates. A second sliding plate is slidably arranged on one side of the fixed plate. A first permanent magnet is arranged on one side of the second sliding plate. By changing the magnetic field of the electromagnet, the first permanent magnet is attracted and repelled. Multiple clamping plates are arranged on one side of the second sliding plate. Clamping grooves matched with the clamping plates are arranged on one side of the first sliding plate. A limiting strip capable of abutting against the first sliding plate is arranged at the bottom end of the flying palladium.
[0012] Preferably, the suspension and fixing assembly further includes a support plate fixed between the two fixed plates. A sleeve is connected to the upper side of the support plate. A pressing rod is slidably arranged in the sleeve. A T-shaped groove is arranged in the sleeve. A limiting plate matched with the T-shaped groove is arranged at the lower end of the pressing rod. A spring is connected to the lower end of the limiting plate, and the lower end of the spring is connected to the lower end of the T-shaped groove.
[0013] Preferably, a first connecting block is provided at the top of the extrusion rod. At the upper end inside the suspension member, a second connecting block is connected and matched with the first connecting block. A first placement groove is provided on the upper side of the first connecting block. A pressing switch is connected in the first placement groove. On both sides of the first placement groove, a second permanent magnet and a first contact piece connected to the first connecting block are respectively provided. A second placement groove is provided on the lower side of the second connecting block. An extrusion block capable of abutting against the pressing switch is connected in the second placement groove. On both sides of the second placement groove, a third permanent magnet and a second contact piece connected to the second connecting block are respectively provided. The third permanent magnet can attract the second permanent magnet, and the second contact piece can abut against and be electrically connected to the first contact piece.
[0014] Preferably, a controller is connected to one side of the electroplating bath. The first driving motor, the second driving motor, the electric push rod, the electromagnet and the pressing switch are all electrically connected to the controller.
[0015] The advantages of the present invention compared with the prior art are as follows:
[0016] 1. When hanging the component to be electroplated on the flying palladium, due to the elastic force of the spring, the extrusion rod always in electrical connection with the flying palladium and the suspension member are abutted and fitted against each other. Even if the suspension member shakes, effective electrical connection can be maintained, avoiding the situation that the electroplating effect deteriorates due to poor electrical contact caused by disconnection.
[0017] 2. When the flying palladium drives the component to be electroplated to be electroplated in the electroplating solution, while the suspension member is fixed on the outside of the flying palladium, it can slide vertically. It is locked and fixed by the sliding plate and the second sliding plate, and the suspension member smoothly moves up and down through the action of the slide rail and the slide bar. This not only avoids the situation of poor electrical contact caused by scratches on the flying palladium by the suspension member, but also can reduce the noise when the suspension member shakes.
[0018] 3. By separately and alternately placing the components to be electroplated in the electroplating bath and the cleaning bath respectively, when electroplating a batch of components, the other batch of electroplated components and their corresponding flying palladiums are cleaned, avoiding the situation that the remaining electroplating solution on the electric components hurts the workers, and avoiding the corrosion of the remaining electroplating solution on the flying palladium.
[0019] 4. By the rotation of the first driving motor, the electric push rod can be driven to rotate in the circumferential direction, so that the first bevel gear rotates on the toothed ring. After the components in the electroplating bath and the cleaning bath are swapped in order, the rotating rod rotates, and the first bevel gear can always mesh with the toothed ring. Cooperating with the first rotating shaft, the second bevel gear and the second bevel gear always drive the two suspension discs to rotate respectively. While rotating, it drives the electroplated parts to rotate in the electroplating solution or the cleaning solution, making the electroplating rotate while rotating around the axis of the electroplating bath, improving the electroplating effect and the cleaning effect.
[0020] 5. When the suspension piece is sleeved outside the flying palladium and the hand is released, the pressing switch is automatically pressed through the pressing block, triggering the reverse of the electromagnet's magnetism, and pushing the second sliding plate to slide so that the clamping plate is clamped and fixed in the clamping groove, realizing the quick and effective fixation of the suspension piece. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a three-dimensional structural schematic diagram of the present invention;
[0022] Figure 2 is a three-dimensional structural schematic diagram of another perspective of the present invention;
[0023] Figure 3 is of the present invention Figure 1 amplified structural schematic diagram at position A;
[0024] Figure 4 is of the present invention Figure 2 amplified structural schematic diagram at position B;
[0025] Figure 5 is a three-dimensional structural schematic diagram of the rotating rod of the present invention;
[0026] Figure 6 is a cross-sectional structural schematic diagram of the suspension piece of the present invention during the process of being suspended on the flying palladium;
[0027] Figure 7 is a cross-sectional structural schematic diagram of the suspension piece of the present invention in the state of being suspended on the flying palladium;
[0028] Figure 8 is of the present invention Figure 6 amplified structural schematic diagram at position C;
[0029] Figure 9 is of the present invention Figure 7 amplified structural schematic diagram at position D;
[0030] Figure 10 is of the present invention Figure 6 amplified structural schematic diagram at position E;
[0031] Figure 11 is a structural schematic diagram of the slide rail of the present invention.
[0032] MARKING NAMES
[0033] 1. Bracket assembly; 2. Lifting and rotating assembly; 3. Inner and outer reverse rotating assembly; 4. Hanging and fixing assembly; 5. Component to be electroplated; 6. Flying palladium; 7. Electroplating bath; 8. Cleaning bath; 9. Fixed column; 10. Jacking rod; 11. Driving motor 1; 12. Electric push rod; 13. Rotating rod; 14. Rotating bar; 15. Driving motor 2; 16. Worm; 17. Worm gear; 18. Rotating seat 1; 19. Rotating seat 2; 20. Rotating shaft 1; 21. Bevel gear 1; 22. Tooth ring; 23. Bevel gear 2; 24. Rotating shaft 2; 25. Bevel gear 3; 26. Hanging disc; 27. C-shaped frame; 28. Hanging piece; 29. Slide rail; 30. Slide bar; 31. Sliding plate 1; 32. Cavity; 33. Fixed plate; 34. Electromagnet; 35. Sliding plate 2; 36. Permanent magnet 1; 37. Clamping plate; 38. Clamping groove; 39. Support plate; 40. Sleeve; 41. Extrusion rod; 42. T-shaped groove; 43. Limiting plate; 44. Connecting block 1; 45. Connecting block 2; 46. Placing groove 1; 47. Pressing switch; 48. Permanent magnet 2; 49. Contact piece 1; 50. Placing groove 2; 51. Extrusion block; 52. Permanent magnet 3; 53. Contact piece 2; 54. Controller; 55. Limiting strip; 56. Reinforcing rod.
[0034] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the description. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention. Detailed implementation manners
[0035] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "transverse", "upper", "lower", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation to the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more. In addition, the term "comprising" and any deformation thereof are intended to cover non-exclusive inclusion.
[0036] Please refer to the attached Figure 1 、 Figure 2 and Figure 5, A rotary flying palladium swing device, comprising: a bracket assembly 1, a lifting and rotating assembly 2, an internal and external reverse rotating assembly 3, and a suspension and fixing assembly 4; the bracket assembly 1 is used for placing the component to be electroplated 5 and the flying palladium 6, and supporting the lifting and rotating assembly 2; the lifting and rotating assembly 2 is arranged on the bracket assembly 1 and is used for the rotation and lifting of the internal and external reverse rotating assembly 3 and the suspension and fixing assembly 4; the internal and external reverse rotating assembly 3 is arranged on the lifting and rotating assembly 2 and is used for adjusting the component to be electroplated 5 to switch between electroplating and cleaning modes; the suspension and fixing assembly 4 is arranged on the internal and external reverse rotating assembly 3, and the suspension and fixing assembly 4 is used for suspending the component to be electroplated 5 through the flying palladium 6.
[0037] Please refer to the appendix Figure 1 , Figure 2 , The bracket assembly 1 includes an electroplating tank 7, a cleaning tank 8 arranged inside the electroplating tank 7, and a fixing column 9 arranged at the edge position of the electroplating tank 7. The upper end of the fixing column 9 is connected with a top rod 10.
[0038] Please refer to the appendix Figure 1 , Figure 2 , The lifting and rotating assembly 2 includes a driving motor 11, an electric push rod 12, and a rotating rod 13. The driving motor 11 is fixedly arranged on the upper side of the top rod 10. The output end of the driving motor 11 rotatably penetrates through the top rod 10 and is connected with the rotating rod 13. The upper side of the other end of the rotating rod 13 is connected with the electric push rod 12. The output end of the electric push rod 12 rotatably penetrates through the rotating rod 13 and is rotatably connected with a rotating rod 14.
[0039] Please refer to the appendix Figure 2 , A reinforcing rod 56 connected with the electric push rod 12 is arranged at the output end of the driving motor 11.
[0040] Please refer to the appendix Figure 1 , Figure 2 , Figure 3 , The internal and external reverse rotating assembly 3 includes a driving motor 15, a worm 16, and a worm gear 17 arranged on the upper side of the rotating rod 14. The worm gear 17 is fixed on the outside of the output end of the electric push rod 12. The worm 16 is meshed with the worm gear 17. Both ends of the worm 16 are rotatably connected with a rotating seat 18 connected with the rotating rod 14. The driving motor 15 is fixedly arranged on one side of one of the rotating seats 18. The output end of the driving motor 15 rotatably penetrates through the rotating seat 18 and is connected with the worm 16.
[0041] Please refer to the appendix Figure 1 , Figure 2 , Figure 3 , Figure 4, two symmetrically arranged second rotating seats 19 are connected to the lower side of the rotating rod 14. The second rotating seats 19 are rotatably penetrated by a first rotating shaft 20. Symmetrically arranged first bevel gears 21 are sleeved and fixed on the outer side of the first rotating shaft 20. A toothed ring 22 capable of meshing with one of the first bevel gears 21 is connected to the upper end of the edge position of the cleaning pool 8. When the rotating rod 14 rotates 180 degrees around the output end of the electric push rod 12, the toothed ring 22 can mesh with the other first bevel gear 21. Second bevel gears 23 are respectively connected to both ends of the first rotating shaft 20. The two ends of the rotating rod 14 are both rotatably penetrated by second rotating shafts 24. Third bevel gears 25 meshing with the second bevel gears 23 are connected to the outer sides of the second rotating shafts 24. A hanging disc 26 is connected to the lower end of the second rotating shaft 24.
[0042] Please refer to the attached Figure 1 , Figure 2 , Figure 5 , the hanging and fixing assembly 4 includes a flying palladium 6 and a C-shaped frame 27. There are multiple C-shaped frames 27, and they are arranged along the circumferential direction at the edge position of the lower side wall of the hanging disc 26. The component to be electroplated 5 includes a hanging part 28. The hanging part 28 has a U-shaped structure. The flying palladium 6 is rotatably arranged on the C-shaped frame 27. The hanging part 28 is fixed by hanging on the flying palladium 6. A spring is connected to the lower end of the limiting plate 43, and the lower end of the spring is connected to the lower end of the T-shaped groove 42.
[0043] Please refer to the attached Figure 1 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , the hanging and fixing assembly 4 further includes slide rails 29 fixedly arranged on the inner walls of both sides of the hanging part 28, slide bars 30 matched with the slide rails 29, and a first sliding plate 31 fixed to the slide bars 30. A cavity 32 is provided on the flying palladium 6. Fixed plates 33 are fixed to the inner walls of both sides of the cavity 32. Electromagnets 34 are connected to the opposite side walls of the fixed plates 33. A second sliding plate 35 is slidably arranged on one side of the fixed plate 33. A first permanent magnet 36 is arranged on one side of the second sliding plate 35. By changing the magnetic field of the electromagnet 34, the first permanent magnet 36 is attracted and repelled. A plurality of clamping plates 37 are arranged on one side of the second sliding plate 35. Clamping grooves 38 matched with the clamping plates 37 are arranged on one side of the first sliding plate 31. A limiting strip 55 capable of abutting against the first sliding plate 31 is arranged at the bottom end of the flying palladium 6. At the same time, the second sliding plate 35, the clamping plates 37, the first sliding plate 31 and the hanging part 28 will not be attracted by magnetism.
[0044] In some embodiments, in combination with Figure 11 , a plurality of slide rails 29 can be vertically arranged, and the slide bars 30 can be slidably sleeved and matched on the slide rails 29 for more stable sliding.
[0045] Please refer to the attachedFigure 1 , Figure 5 , Figure 6 , Figure 8 , the hanging and fixing assembly 4 further includes a support plate 39 fixed between two fixing plates 33. A sleeve 40 is connected to the upper side of the support plate 39. A pressing rod 41 is slidably arranged in the sleeve 40. A T-shaped groove 42 is arranged in the sleeve 40. A limiting plate 43 cooperating with the T-shaped groove 42 is arranged at the lower end of the pressing rod 41.
[0046] Please refer to the attached Figure 1 , Figure 7 , Figure 8 , Figure 9 and Figure 10 , a connecting block one 44 is arranged at the top end of the pressing rod 41. A connecting block two 45 cooperating with the connecting block one 44 is connected to the upper end inside the hanging member 28. A placing groove one 46 is arranged on the upper side of the connecting block one 44. A pressing switch 47 is connected in the placing groove one 46. A permanent magnet two 48 and a contact one 49 connected to the connecting block one 44 are respectively arranged on both sides of the placing groove one 46. A placing groove two 50 is arranged on the lower side of the connecting block two 45. A pressing block 51 capable of abutting against the pressing switch 47 is connected in the placing groove two 50. A permanent magnet three 52 and a contact two 53 connected to the connecting block two 45 are respectively arranged on both sides of the placing groove two 50. The permanent magnet three 52 can attract the permanent magnet two 48, and the contact two 53 can abut against and be electrically connected to the contact one 49.
[0047] Please refer to the attached Figure 2 , Figure 3 , Figure 7 , Figure 8 , Figure 10 , a controller 54 is connected to one side of the electroplating bath 7. The driving motor one 11, the driving motor two 15, the electric push rod 12, the electromagnet 34 and the pressing switch 47 are all electrically connected to the controller 54.
[0048] In some embodiments, please refer to the attached Figure 6 , on the basis of the above embodiments, the flying palladium 6 can conduct electricity to the hanging member 28 through the sliding plate one 31, the slide bar 30 and the slide rail 29.
[0049] The specific implementation process is as follows:
[0050] Inject cleaning liquid into the cleaning bath 8 and electroplating liquid into the electroplating bath 7. By turning on the electric push rod 12, the lifting of the rotating rod 14 can be driven, which is convenient for placing and removing the component to be electroplated 5.
[0051] The rotation of the driving motor 11 can drive the rotating rod 13 to rotate around the output end of the driving motor 11. At the same time, the electric push rod 12 drives the rotating rod 14 to rotate, and can cooperate with the second rotating shaft 24 to drive the suspension disc 26 to rotate around the driving motor 11 as the axis, so that the parts to be electroplated and cleaned move in the electroplating solution and the cleaning solution respectively, improving the electroplating and cleaning effects;
[0052] When hanging the parts to be electroplated, the electric push rod 12 drives the lifting of the suspension disc 26, and then drives the flying palladium 6 to move upward through the C-shaped frame 27, which is convenient for hanging the suspension part 28. The suspension part 28 of the part to be electroplated is hung on the flying palladium 6 under one of the suspension discs 26. When the suspension part 28 is hung outside the flying palladium 6, the first sliding plate 31 first slides outside the flying palladium 6 until it abuts against the limiting strip 55. At this time, the clamping plate 37 just corresponds to the clamping groove 38, and the extrusion block 51 just extrudes the push button switch 47. Through the attraction between the second permanent magnet 48 and the third permanent magnet 52, the push button switch 47 is always pressed, and the first contact piece 49 and the second contact piece 53 are always electrically connected. At this time, the flying palladium 6 energizes the part to be electroplated 5 in turn through the fixing plate 33, the support plate 39, the sleeve 40, the spring, the limiting plate 43, the extrusion rod 41, the first connecting block 44, the first contact piece 49, the second contact piece 53, the second connecting block 45, and the suspension part 28 to achieve the electroplating effect. During use, when the part to be electroplated 5 drives the suspension part 28 to lift and slide, the slide rail 29 can lift and slide on the slide bar 30, and the first contact piece 49 and the second contact piece 53 are always electrically connected, so that the part to be electroplated 5 always maintains a good electrical conductivity effect. When the push button switch 47 is pressed, an electrical signal is transmitted to the controller 54. The controller 54 controls the magnetic field of the electromagnet 34 to reverse to generate a repulsive force on the first permanent magnet 36, and then pushes the second sliding plate 35 to slide, so that the clamping plate 37 is inserted into the clamping groove 38 to fix the first sliding plate 31;
[0053] When the suspension disc 26 rotates around the driving motor 11 as the axis, the first bevel gear 21 rotates on the gear ring 22 to drive the first rotating shaft 20 to rotate, and cooperates with the second bevel gear 23 and the third bevel gear 25 to drive the second rotating shaft 24 to rotate. The suspension disc 26 drives the parts to be electroplated 5 to rotate around the second rotating shaft 24, improving the electroplating effect;
[0054] After the electroplating of the component 5 to be electroplated under the hanging disc 26 is completed, the corresponding hanging disc 26 is lifted by the electric push rod 12. The driving motor two 15 is turned on to drive the worm 16 to rotate. Through the cooperation of the worm gear 17, the rotating rod 14 rotates 180 degrees, and the electroplated component 5 to be electroplated is moved to the upper end of the cleaning tank 8. The lower side of the hanging disc 26 rotated to the electroplating tank 7 can continue to hang the components to be electroplated. The hanging disc 26 is lowered by the electric push rod 12. Since two bevel gears one 21 are symmetrically arranged, whenever the rotating rod 14 rotates and then descends, one of the bevel gears one 21 can be engaged with the toothed ring 22. Then the driving motor one 11 is turned on again to clean the electroplated components in the cleaning tank 8, and the non-electroplated components continue to be electroplated in the electroplating tank 7;
[0055] After the components in the cleaning tank 8 are cleaned, the components are lifted by the electric push rod 12 to facilitate the removal of the electroplated components. By lifting the hanging member 28, the extrusion rod 41 is lifted at the same time. When the limiting plate 43 abuts against the top of the T-shaped groove 42, at this time, the slide rail 29 slides outside the slide bar 30. As the hanging member 28 continues to move up, the attraction between the permanent magnet two 48 and the permanent magnet three 52 is automatically overcome to separate the permanent magnet two 48 and the permanent magnet three 52. The pressing switch 47 is separated from the extrusion block 51. The pressing switch 47 generates an electrical signal and transmits it to the controller 54, which controls the electromagnet 34 to generate a reverse magnetic field again, generating an attraction force on the permanent magnet one 36, driving the sliding plate two 35 to slide, and enabling the clamping plate 37 to slide in the clamping groove 38, releasing the clamping and fixing of the sliding plate one 31, so as to facilitate the hanging member 28 to move up and be removed outside the flying palladium 6.
[0056] The standard parts used in the present invention can all be purchased from the market. The special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, and welding that are mature in the prior art. The machines, parts, and equipment all adopt conventional models in the prior art. Coupled with the circuit connection adopting the conventional connection method in the prior art, it will not be elaborated here. The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0057] The above describes the present invention and its implementation manners. This description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present invention, and the actual structure is not limited thereto. All in all, if those skilled in the art are inspired by it and without departing from the purpose of the present invention, they design similar structural manners and embodiments without creative efforts, which should all fall within the protection scope of the present invention.
Claims
1. A rotary flying palladium swing device, characterized in that, Comprising: A bracket assembly (1), a lifting and rotating assembly (2), an internal and external reverse rotating assembly (3), and a suspension and fixing assembly (4); The bracket assembly (1) is used for placing the component to be electroplated (5) and the flying palladium (6), and supporting the lifting and rotating assembly (2); The lifting and rotating assembly (2) is arranged on the bracket assembly (1) and is used for the rotation and lifting of the internal and external reverse rotating assembly (3) and the suspension and fixing assembly (4); The internal and external reverse rotating assembly (3) is arranged on the lifting and rotating assembly (2) and is used for adjusting the component to be electroplated (5) to switch between electroplating and cleaning modes; The suspension and fixing assembly (4) is arranged on the internal and external reverse rotating assembly (3), and the suspension and fixing assembly (4) is used for suspending the component to be electroplated (5) through the flying palladium (6); The bracket assembly (1) includes a plating bath (7), a cleaning bath (8) arranged inside the plating bath (7), and a fixing column (9) arranged at the edge position of the plating bath (7). A top rod (10) is connected to the upper end of the fixing column (9); The lifting and rotating assembly (2) includes a driving motor one (11), an electric push rod (12), and a rotating rod (13). The driving motor one (11) is fixedly arranged on the upper side of the top rod (10). The output end of the driving motor one (11) rotatably penetrates the top rod (10) and is connected to the rotating rod (13). The upper side of the other end of the rotating rod (13) is connected to the electric push rod (12). The output end of the electric push rod (12) rotatably penetrates the rotating rod (13) and is rotatably connected to a rotating rod (14); The internal and external reverse rotating assembly (3) includes a driving motor two (15), a worm (16), and a worm gear (17) arranged on the upper side of the rotating rod (14). The worm gear (17) is fixed on the outside of the output end of the electric push rod (12). The worm (16) is meshed with the worm gear (17). Both ends of the worm (16) are rotatably connected to a rotating seat one (18) connected to the rotating rod (14). The driving motor two (15) is fixedly arranged on one side of one of the rotating seats one (18). The output end of the driving motor two (15) rotatably penetrates the rotating seat one (18) and is connected to the worm (16); Two symmetrically arranged rotating seats two (19) are connected to the lower side of the rotating rod (14). A rotating shaft one (20) rotatably penetrates the rotating seat two (19). Symmetrically arranged bevel gears one (21) are sleeved and fixed on the outside of the rotating shaft one (20). A toothed ring (22) capable of meshing with one of the bevel gears one (21) is connected to the upper end of the edge position of the cleaning bath (8). When the rotating rod (14) rotates 180 degrees around the output end of the electric push rod (12), the toothed ring (22) can mesh with the other bevel gear one (21). Bevel gears two (23) are respectively connected to both ends of the rotating shaft one (20). Rotating shafts two (24) rotatably penetrate both ends of the rotating rod (14). Bevel gears three (25) meshing with the bevel gears two (23) are connected to the outside of the rotating shafts two (24). A suspension disc (26) is connected to the lower end of the rotating shafts two (24).
2. The rotary flying palladium swing device according to claim 1, characterized in that The suspension and fixing component (4) includes a flying palladium (6) and a U-shaped frame (27). A plurality of the U-shaped frames (27) are provided and are arranged at the edge position of the lower side wall of the suspension disc (26) along the circumferential direction. The component to be electroplated (5) includes a suspension member (28). The suspension member (28) has a U-shaped structure. The flying palladium (6) is rotatably arranged on the U-shaped frame (27), and the suspension member (28) is hung on the flying palladium (6) for fixation.
3. The rotary flying palladium swing device according to claim 2, wherein, The suspension and fixing component (4) further includes slide rails (29) fixedly arranged on the inner walls of both sides of the suspension member (28), slide bars (30) matched with the slide rails (29), and a first sliding plate (31) fixed to the slide bars (30). A cavity (32) is provided on the flying palladium (6). Fixed plates (33) are fixedly arranged on the inner walls of both sides of the cavity (32). Electromagnets (34) are connected to the opposite side walls of the fixed plates (33). A second sliding plate (35) is slidably arranged on one side of the fixed plate (33). A first permanent magnet (36) is arranged on one side of the second sliding plate (35). By the change of the magnetic field of the electromagnet (34), the first permanent magnet (36) is attracted and repelled. A plurality of clamping plates (37) are arranged on one side of the second sliding plate (35). A clamping groove (38) matched with the clamping plates (37) is arranged on one side of the first sliding plate (31). A limiting strip (55) capable of abutting against the first sliding plate (31) is arranged at the bottom end of the flying palladium (6).
4. The rotary flying palladium swinging device according to claim 3, wherein, The suspension and fixing component (4) further includes a support plate (39) fixed between the two fixed plates (33). A sleeve (40) is connected to the upper side of the support plate (39). A pressing rod (41) is slidably arranged in the sleeve (40). A T-shaped groove (42) is arranged in the sleeve (40). A limiting plate (43) matched with the T-shaped groove (42) is arranged at the lower end of the pressing rod (41). A spring is connected to the lower end of the limiting plate (43), and the lower end of the spring is connected to the lower end of the T-shaped groove (42).
5. The rotary flying palladium swinging device according to claim 4, characterized in that A first connecting block (44) is arranged at the top end of the pressing rod (41). A second connecting block (45) matched with the first connecting block (44) is connected to the upper end inside the suspension member (28). A first placement groove (46) is arranged on the upper side of the first connecting block (44). A pressing switch (47) is connected in the first placement groove (46). A second permanent magnet (48) and a first contact piece (49) connected to the first connecting block (44) are respectively arranged on both sides of the first placement groove (46). A second placement groove (50) is arranged on the lower side of the second connecting block (45). A pressing block (51) capable of abutting against the pressing switch (47) is connected in the second placement groove (50). A third permanent magnet (52) and a second contact piece (53) connected to the second connecting block (45) are respectively arranged on both sides of the second placement groove (50). The third permanent magnet (52) can be attracted to the second permanent magnet (48), and the second contact piece (53) can abut against and be electrically connected to the first contact piece (49).
6. The rotary flying palladium swing device according to claim 5, characterized in that, One side of the electroplating bath (7) is connected with a controller (54), and the first driving motor (11), the second driving motor (15), the electric push rod (12), the electromagnet (34) and the push button switch (47) are all electrically connected with the controller (54).
Citation Information
Patent Citations
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