Horizontal point plating machine with multi-adjustment function

By introducing a multi-adjustment design into the horizontal spot plating machine, the synchronous conveying of the spot plating wheel, shielding belt, and material belt is realized, solving the problem of unstable synchronous conveying in the existing technology and ensuring the accuracy and efficiency of the electroplating process.

CN122303996APending Publication Date: 2026-06-30TAICANG LIANQIAO ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
TAICANG LIANQIAO ELECTRONIC TECH CO LTD
Filing Date
2026-05-20
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing horizontal spot plating machines are not easy to adjust during use and cannot be finely adjusted, which can easily lead to deviations when the spot plating wheel, shielding belt and material belt are conveyed synchronously, causing connection misalignment problems.

Method used

A horizontal spot plating machine with multiple adjustment functions was designed. By combining the spot plating production structure, material strip and shielding strip, and using the meshing connection of the guiding mechanism, connecting mechanism and spot plating mechanism, the spot plating wheel and shielding strip are controlled to move synchronously. The squeezing effect of the liquid guiding bag is controlled by the expansion of the air bladder and the centrifugal motion of the regulating module, so as to realize the continuous transmission of material strip and continuous conduction of shielding strip.

Benefits of technology

It enables synchronous transmission of the plating wheel, shielding belt, and material belt, ensuring the accuracy and continuity of electroplating production. It adapts to the liquid supply requirements during high-power production, providing adaptive liquid supply to ensure the stability and efficiency of the electroplating process.

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Abstract

This invention relates to the field of horizontal spot plating machine technology, specifically to a horizontal spot plating machine with multiple adjustment functions. It includes a spot plating production structure, a material belt, and a shielding belt. The material belt and shielding belt are mounted on the spot plating production structure, positioned between them for electroplating operations. The spot plating production structure is composed of a spot plating component and a supporting component. A guiding mechanism and a connecting mechanism within the spot plating component are meshed together to control the synchronous movement of the spot plating wheel and the shielding belt. Simultaneously, the guiding mechanism controls the continuous transmission of the material belt. The connecting mechanism controls the squeezing effect of the liquid guiding bladder through air bladder expansion and centrifugal motion control of the regulating module. The supporting component supports the spot plating component and continuously guides and transmits the material belt and shielding belt. Through this structural design, spot plating operations can be performed while simultaneously controlling and adjusting synchronous operation.
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Description

Technical Field

[0001] This invention relates to the field of horizontal spot plating machine technology, specifically a horizontal spot plating machine with multiple adjustment functions. Background Technology

[0002] The core principle of spot plating machine (selective spot plating machine) is based on electrolytic reaction. Through precise positioning of the mold, the plating solution is sprayed and energized only in a specified tiny area of ​​the workpiece to achieve local selective electroplating. It is often used for local electroplating of precious metals (gold, silver, tin) on electronic components (ICs, connectors, LED lead frames).

[0003] Currently, existing horizontal spot plating machines are inconvenient to adjust during use, cannot perform fine-tuning, and cannot guarantee the synchronous transmission of the plating wheel, shielding belt, and material belt, which easily leads to deviations and connection misalignments. Therefore, improvements are made to address these issues. Summary of the Invention

[0004] To address the problems in the prior art, the present invention provides a horizontal spot plating machine with multiple adjustment functions.

[0005] The technical solution adopted by the present invention to solve its technical problem is: a horizontal spot plating machine with multiple adjustment functions, including a spot plating production structure, a material belt and a shielding belt, the material belt and the shielding belt are provided on the spot plating production structure, the material belt is located between the spot plating production structure and the shielding belt, and electroplating production is carried out.

[0006] The spot plating production structure is composed of spot plating components and supporting components. The guiding mechanism, connecting mechanism and spot plating mechanism in the spot plating component are meshed and connected to control the synchronous movement of the spot plating wheel and the shielding belt. At the same time, the guiding mechanism controls the continuous transmission of the material belt. The connecting mechanism controls the squeezing effect of the liquid guiding bag through the expansion of the air bladder and the centrifugal motion of the regulating module. The supporting component is used to support the spot plating component and at the same time guides and transmits the material belt and the shielding belt continuously.

[0007] Specifically, the spot plating production structure includes a spot plating component and a supporting component. The spot plating component is rotatably mounted on the supporting component. The spot plating component includes a guiding mechanism, a connecting mechanism, and a spot plating mechanism. The connecting mechanism is engaged with the spot plating mechanism and is also engaged with the guiding mechanism.

[0008] Specifically, the guiding mechanism includes a second supporting bearing seat, on which a first toothed disc is rotatably mounted. The first toothed disc drives a first guiding roller to rotate via a rotating rod. The first guiding roller is rotatably mounted on the first supporting bearing seat.

[0009] Specifically, the connecting mechanism includes a spot plating unit and a driving unit. The driving unit drives the spot plating unit, which includes a spot plating wheel fixed to the outside of the airbag. The airbag is connected to a connecting pipe with an air guide hole that passes through a top plate. A connecting rod is fixed at the center of the top plate. An adjustment module is provided at the bottom of the airbag. The adjustment module is elastically set, and the airbag has a conical structure. Plastic discs are provided at the top and bottom of the airbag for fixing the spot plating wheel and the adjustment module, respectively. The adjustment module includes a sleeve shaft with a connecting rod fixed to its side. The connecting rod is elastically telescopically connected by a first spring rod. A rotating contact wheel is rotatably provided at the lower end of the sleeve shaft. A second spring rod is provided at the bottom of the rotating contact wheel, and the second spring rod controls the elastic telescopic connection of the rotating contact wheel.

[0010] Specifically, the drive unit includes a liquid guiding part and a drive control part. The liquid guiding part is sleeved on the drive control part. The liquid guiding part includes a connecting tube that is in communication with the sealing cone sleeve. The upper end of the connecting tube is connected to the water outlet through a liquid guiding bladder. The lower end of the water outlet is supported by a supporting sealing seat. The supporting sealing seat is fixed to the sealing cone sleeve.

[0011] Specifically, the drive control part includes a stepper motor, a second gear plate is driven and connected to the stepper motor, the upper end of the second gear plate is fixed to the drive rod, a bearing ring seat is sleeved on the drive rod, and the bearing ring seat is fixed by a limiting mounting bracket.

[0012] Specifically, the spot plating mechanism includes a third support bearing seat, a third gear disk rotatably mounted on the third support bearing seat, a drive guide rod fixedly connected to the third gear disk, and a first guide pulley fixedly connected to the drive guide rod.

[0013] Specifically, the bearing component includes a fixed support, on which a waste liquid tank and a bearing mounting base are fixedly connected. The waste liquid tank is located at the side end of the bearing mounting base. A second guide pulley and a third guide pulley are rotatably mounted on a bearing ring seat. The bearing mounting base is also fixedly connected to a guiding adjustment mechanism. The guiding adjustment mechanism includes a limiting frame, on which a rotating adjustment shaft is rotatably mounted. The rotating adjustment shaft is fixed to a lead screw. The threads on the lead screw are arranged symmetrically and in opposite directions. A sliding block is threadedly connected to the lead screw. The sliding block slides at the upper limit of the limiting frame. A second guide roller is rotatably mounted on the sliding block.

[0014] Specifically, the limiting frame is fixed to the supporting mounting base plate, and the side end of the supporting mounting base plate is also connected to the waste liquid tank. A trough is opened at the connection position. The second guide roller, the first guide roller and the spot plating wheel are used for guiding and transmitting the material strip, and the second guide roller, the third guide roller and the first guide roller are used for transmitting the shielding strip.

[0015] Specifically, the third bearing seat is fixed on the fixed support, the first guide pulley is set on the bearing mounting base, the third gear plate is meshed with the second gear plate, the limiting mounting bracket is fixed at the lower end of the bearing mounting base, the upper end of the drive rod is fixed to the connecting rod, the sealing cone sleeve is fixedly sleeved on the bearing ring seat, and the sealing cone sleeve and the bearing ring seat are sealed together, the water outlet is set inside the spot plating wheel, and the spot plating wheel rotates on the water outlet, the first spring pull rod and the second spring pull rod are fixed to the bottom of the air bag, the rotating contact wheel is pressed into contact with the liquid guiding bag, the liquid guiding bag and the water outlet are provided between the air bag and the spot plating wheel, and the liquid guiding bag is set with a narrow top surface and a wide bottom surface, the stepper motor is fixed on the fixed support, the liquid guiding bag is fixed on the bearing mounting base, and the first gear plate and the second gear plate are meshed on the side ends.

[0016] The beneficial effects of this invention are:

[0017] First, this invention, through the structural design of the spot plating component, ensures the synchronous conveying of the spot plating wheel, the shielding belt, and the material belt. A stepper motor controls the drive rod to rotate, simultaneously driving the second toothed disc to rotate. This second toothed disc, in turn, drives the third and first toothed discs to rotate, causing the first guide roller, the spot plating wheel, and the first guide belt pulley to rotate. This achieves continuous transmission of the material belt and the shielding belt, and simultaneously coordinates with the spot plating production structure for spot plating production. When the entire spot plating unit rotates, the control module undergoes centrifugal motion. The control module is also elastic; the faster the rotation speed, the closer the rotating contact wheel is to the liquid guide bladder, thereby controlling the liquid in the liquid guide bladder to be accelerated through the outlet, thus achieving the production objective and ensuring adaptable liquid supply during high-power production.

[0018] Second, the present invention facilitates adjustment and guidance by setting up a bearing component. The rotating adjustment shaft in the guidance adjustment mechanism can rotate, thereby driving the sliding block and the second guide roller to move through the lead screw, thereby adjusting the tension of the material strip. The rotation of the second guide roller, the third guide roller and the first guide roller can drive the shielding belt to continuously transmit, thereby achieving the purpose of spot plating processing of the material strip under the rotation cooperation of the shielding belt and the spot plating wheel. Attached Figure Description

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] Figure 1 This is a three-dimensional structural diagram of the main body from a frontal perspective in this invention;

[0021] Figure 2 This is a perspective view of the dot plating production structure in this invention;

[0022] Figure 3 This is a perspective view of the dot-plating component in this invention;

[0023] Figure 4This is a perspective view of the guiding mechanism in this invention;

[0024] Figure 5 This is a perspective view of the connecting mechanism in this invention;

[0025] Figure 6 This is an exploded view of the connecting mechanism in this invention;

[0026] Figure 7 This is a three-dimensional exploded view of the dot plating unit in this invention;

[0027] Figure 8 This is a perspective view of the control module in this invention;

[0028] Figure 9 This is a perspective view of the driving unit in this invention;

[0029] Figure 10 This is a perspective view of the liquid-conducting portion in this invention;

[0030] Figure 11 This is a perspective view of the drive control section in this invention;

[0031] Figure 12 This is a perspective view of the dot plating mechanism in this invention;

[0032] Figure 13 This is a perspective view of the supporting component in this invention;

[0033] Figure 14 This is a perspective view of the guiding and adjusting mechanism in this invention.

[0034] In the diagram: 1-Spot plating production structure, 2-Material strip, 3-Shielding strip, 4-Spot plating component, 5-Bearing component, 6-Guiding mechanism, 7-Connecting mechanism, 8-Spot plating mechanism, 9-First guide roller, 10-First support bearing seat, 11-Rotating rod, 12-First gear plate, 13-Second support bearing seat, 14-Spot plating unit, 15-Drive unit, 16-Connecting rod, 17-Top plate, 18-Air vent, 19-Connecting pipe, 20-Airbag, 21-Control module, 22-Spot plating wheel, 23-Sleeve shaft, 24-Connecting rod, 25-Rotating contact wheel, 26-First spring rod, 27-Second spring rod, 28-Liquid guiding section. 29-Drive control section, 30-Liquid guide bladder, 31-Outlet, 32-Support sealing seat, 33-Connecting conduit, 34-Sealing cone sleeve, 35-Limiting mounting bracket, 36-Drive rod, 37-Bearing ring seat, 38-Second gear plate, 39-Stepper motor, 40-First guide pulley, 41-Drive guide rod, 42-Third gear plate, 43-Third support bearing seat, 44-Guiding adjustment mechanism, 46-Second guide pulley, 47-Bearing mounting base plate, 48-Third guide pulley, 49-Waste liquid tank, 50-Fixed support, 51-Rotation adjustment shaft, 52-Screw screw, 53-Limiting frame, 54-Sliding block, 55-Second guide roller. Detailed Implementation

[0035] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0036] The invention will be further described below with reference to the accompanying drawings.

[0037] Example

[0038] like Figure 1-14 As shown, a horizontal spot plating machine with multiple adjustment functions according to the present invention includes a spot plating production structure 1, a material belt 2 and a shielding belt 3. The material belt 2 and the shielding belt 3 are provided on the spot plating production structure 1. The material belt 2 is located between the spot plating production structure 1 and the shielding belt 3 to carry out electroplating production.

[0039] The spot plating production structure 1 is composed of a spot plating component 4 and a supporting component 5. The guiding mechanism 6, connecting mechanism 7, and spot plating mechanism 8 within the spot plating component 4 are meshed together, controlling the synchronous movement of the spot plating wheel 22 and the shielding belt 3. Simultaneously, the guiding mechanism 6 controls the continuous transmission of the material belt 2. Within the connecting mechanism 7, the expansion of the air bladder 20 and the centrifugal motion control of the regulating module 21 control the squeezing effect with the liquid guiding bladder 30. The supporting component 5 supports the spot plating component 4 and simultaneously guides the continuous transmission of the material belt 2 and the shielding belt 3. Through the structural design of the spot plating component 4, the synchronous transmission of the spot plating wheel, shielding belt, and material belt can be ensured. The stepper motor 39 controls the rotation of the drive rod 36, simultaneously driving the second gear disc. Rotation of the second toothed disc 38 causes the third toothed disc 42 and the first toothed disc 12 to rotate in coordination, which in turn causes the first guide roller 9, the spot plating wheel 22, and the first guide belt pulley 40 to rotate, realizing the continuous transmission of the material belt 2 and the shielding belt 3. At the same time, it cooperates with the spot plating production structure 1 to carry out spot plating production. When the spot plating unit 14 rotates as a whole, the control module 21 can perform centrifugal motion. At the same time, the control module 21 is elastic. The faster the rotation speed, the more closely the rotating contact wheel 25 can fit the liquid guiding bag 30, thereby controlling the liquid in the liquid guiding bag 30 to accelerate through the outlet 31 for discharge, thus achieving the purpose of production coordination and ensuring that the liquid supply can be adapted during high-power production.

[0040] The spot plating production structure 1 includes a spot plating component 4 and a supporting component 5. The spot plating component 4 is rotatably mounted on the supporting component 5. The spot plating component 4 includes a guiding mechanism 6, a connecting mechanism 7, and a spot plating mechanism 8. The connecting mechanism 7 is engaged with the spot plating mechanism 8, and the connecting mechanism 7 is also engaged with the guiding mechanism 6.

[0041] The guiding mechanism 6 includes a second supporting bearing seat 13, on which a first gear 12 is rotatably mounted. The first gear 12 drives the first guide roller 9 to rotate via a rotating rod 11. The first guide roller 9 is rotatably mounted on the first supporting bearing seat 10.

[0042] The connecting mechanism 7 includes a spot plating unit 14 and a driving unit 15. The driving unit 15 drives the spot plating unit 14, which includes a spot plating wheel 22. The spot plating wheel 22 is fixed to the outside of the airbag 20. The airbag 20 is connected to a connecting pipe 19, and the connecting pipe 19 is connected to a vent hole 18. The vent hole 18 passes through the top plate 17. A connecting rod 16 is fixed at the center of the top plate 17. The bottom of the airbag 20 is provided with an adjustment module 21. The adjustment module 21 is elastically set, and the airbag 20 is set with a conical structure. The top and bottom of the airbag 20 are provided with plastic discs, which are used to fix the spot plating wheel 22 and the adjustment module 21, respectively. The adjustment module 21 includes a sleeve shaft 23. A connecting rod 24 is fixedly provided on the side of the sleeve shaft 23. The connecting rod 24 is elastically telescopically connected through a first spring pull rod 26. The lower end of the sleeve shaft 23 is rotatably provided with a rotating contact wheel 25. The bottom of the rotating contact wheel 25 is provided with a second spring pull rod 27, which controls the elastic telescopic connection of the rotating contact wheel 25.

[0043] The drive unit 15 includes a liquid guiding part 28 and a drive control part 29. The liquid guiding part 28 is sleeved on the drive control part 29. The liquid guiding part 28 includes a connecting conduit 33, which is in communication with the sealing cone sleeve 34. The upper end of the connecting conduit 33 is connected to the water outlet 31 through the liquid guiding bladder 30. The lower end of the water outlet 31 is supported by the supporting sealing seat 32. The supporting sealing seat 32 is fixed to the sealing cone sleeve 34.

[0044] The drive control unit 29 includes a stepper motor 39, on which a second gear plate 38 is driven and connected. The upper end of the second gear plate 38 is fixed to a drive rod 36. A bearing ring seat 37 is sleeved on the drive rod 36 and fixed by a limiting mounting bracket 35. The material strip 2 and the shielding strip 3 are connected to the spot plating production structure 1. The spot plating production work is realized by controlling the conduction through the spot plating component 4 and the bearing component 5 within the spot plating production structure 1. First, the connecting mechanism 7 works, and the stepper motor 39 drives the second gear plate 38 to rotate, which in turn drives the drive rod 36 to rotate. The upper end of the drive rod 36 is fixed to the bottom of the connecting rod 16 and the air bag 20, driving the spot plating unit 14 to rotate as a whole. At this time, the spot plating wheel 22 rotates in coordination. It can be inflated through the air guide hole 18, so that the gas is conducted to the air bag 20 through the air guide hole 18 and the connecting pipe 19. The airbag 20 expands and presses against the liquid guiding bag 30. Simultaneously, the control module 21 rotates with the airbag 20 and the plating wheel 22. At this time, the first spring rod 26 and the second spring rod 27 are stretched under the action of centrifugal force. The connecting rod 24 and the sleeve shaft 23 are connected and supported. The rotating contact wheel 25 changes position and also presses against the liquid guiding bag 30, thereby changing the internal space of the liquid guiding bag 30. This allows the liquid to be discharged through the outlet 31. Due to the structural design of the liquid guiding bag 30 and the squeezing action, the liquid can be discharged more quickly. At the same time, the top bag is smaller and also accelerates the flow rate. The reaction liquid is introduced into the liquid guiding bag 30 through the connecting conduit 33. The sealing cone sleeve 34 and the supporting sealing seat 32 are set for sealing and protection. At this time, the liquid is discharged through the plating wheel 22, and the plating process is carried out with the rotation of the plating wheel 22.

[0045] The spot plating mechanism 8 includes a third support bearing seat 43, a third gear disk 42 rotatably mounted on the third support bearing seat 43, a drive guide rod 41 fixedly connected to the third gear disk 42, and a first guide pulley 40 fixedly connected to the drive guide rod 41.

[0046] The supporting component 5 includes a fixed support 50, on which a waste liquid tank 49 and a supporting mounting base 47 are fixedly connected. The waste liquid tank 49 is located on the side of the supporting mounting base 47. A second guide pulley 46 and a third guide pulley 48 are rotatably mounted on a bearing ring seat 37. The supporting mounting base 47 is also fixedly connected to a guiding adjustment mechanism 44. The guiding adjustment mechanism 44 includes a limiting frame 53, on which a rotating adjusting shaft 51 is rotatably mounted. The rotating adjusting shaft 51 is fixed to a lead screw 52. The threads on the lead screw 52 are arranged symmetrically and in opposite directions. A sliding block 54 is threadedly connected to the lead screw 52. The sliding block 54 slides at the upper limit of the limiting frame 53. The second guide roller 55 is rotatably provided on the sliding block 54. The setting of the bearing component 5 facilitates the adjustment and guidance work. The rotation adjustment shaft 51 in the guide adjustment mechanism 44 can rotate, thereby driving the sliding block 54 and the second guide roller 55 to move through the lead screw 52, ​​thereby adjusting the tension of the material strip 2. The rotation of the second guide pulley 46, the third guide pulley 48 and the first guide pulley 40 can drive the shielding belt 3 to continuously transmit, thereby performing the purpose of spot plating processing of the material strip 2 under the rotation cooperation of the shielding belt 3 and the spot plating wheel 22.

[0047] The limiting frame 53 is fixed to the supporting mounting base plate 47. The side end of the supporting mounting base plate 47 is also connected to the waste liquid tank 49. A trough is opened at the connection position. The second guide roller 55, the first guide roller 9, and the spot plating wheel 22 are used for guiding and transmitting the material belt 2. The second guide pulley 46, the third guide pulley 48, and the first guide pulley 40 are used for transmitting the shielding belt 3. When the second toothed disc 38 rotates, it drives the meshing first toothed disc 12 to rotate on the second support bearing seat 13. At the same time, it drives the first guide roller 9 to rotate on the first support bearing seat 10 through the rotating rod 11. The first guide roller 9 is connected to the material belt 2 and can guide the material belt 2 for transmission. The material belt 2 reaches the material belt 2 through the guiding adjustment mechanism 44, and then is transmitted through the position between the spot plating wheel 22 and the shielding belt 3 for spot plating treatment. 38 also meshes with the third gear plate 42, driving the third gear plate 42 to rotate on the third support bearing seat 43. At the same time, it drives the first guide pulley 40 to rotate and adjust through the drive guide rod 41. The first guide pulley 40 is connected to the shielding belt 3, so that the shielding belt 3 is continuously driven. The shielding belt 3 is transmitted and cooperated through the second guide pulley 46, the first guide pulley 40, the third guide pulley 48, and the spot plating wheel 22 to perform shielding treatment. At the same time, the user can also adjust the position of the second guide roller 55 to change the tension of the material belt 2. Rotating the rotating adjustment shaft 51 causes the lead screw 52 to rotate, driving the sliding block 54 to slide and adjust on the limiting frame 53. At this time, the second guide roller 55 follows the adjustment of the sliding block 54. By changing the position of the second guide roller 55, the tension of the material belt 2 is controlled.

[0048] The third bearing housing 43 is fixed on the fixed support 50. The first guide pulley 40 is mounted on the bearing mounting base 47. The third gear 42 is meshed with the second gear 38. The limiting mounting bracket 35 is fixed to the lower end of the bearing mounting base 47. The upper end of the drive rod 36 is fixed to the connecting rod 16. The sealing cone sleeve 34 is fixedly sleeved on the bearing ring seat 37, and the sealing cone sleeve 34 and the bearing ring seat 37 are sealed together. The outlet 31 is located inside the spot plating wheel 22. Rotating on the outlet 31, the first spring rod 26 and the second spring rod 27 are fixed to the bottom of the airbag 20. The rotating contact wheel 25 is pressed into contact with the liquid guiding bag 30. The liquid guiding bag 30 and the outlet 31 are provided between the airbag 20 and the spot plating wheel 22. The liquid guiding bag 30 is set with a narrow top surface and a wide bottom surface. The stepper motor 39 is fixed on the fixed support 50. The liquid guiding bag 30 is fixed on the bearing mounting base 47. The first toothed disc 12 and the second toothed disc 38 are meshed and connected at the side ends.

[0049] The working principle is as follows: During use, the material strip 2 and the shielding strip 3 are connected to the spot plating production structure 1. The spot plating production work is realized by controlling the conduction through the spot plating component 4 and the bearing component 5 within the spot plating production structure 1. First, the connecting mechanism 7 works, and the stepper motor 39 drives the second gear plate 38 to rotate, which in turn drives the drive rod 36 to rotate. The upper end of the drive rod 36 is fixed to the bottom of the connecting rod 16 and the air bag 20, which drives the spot plating unit 14 to rotate as a whole. At this time, the spot plating wheel 22 rotates in coordination. It can be inflated through the air guide hole 18, so that the gas is conducted to the air bag 20 through the air guide hole 18 and the connecting pipe 19, causing the air bag 20 to expand and fit into the liquid guide bag. The compression of airbag 20 and the control module 21 rotate with airbag 20 and plating wheel 22. At this time, the first spring rod 26 and the second spring rod 27 are stretched under the action of centrifugal force. The connecting rod 24 and the sleeve shaft 23 are connected and supported. The rotating contact wheel 25 changes position and also squeezes and contacts the liquid guiding bag 30, thereby changing the internal space of the liquid guiding bag 30. This allows the liquid to be discharged through the outlet 31. Due to the structural design of the liquid guiding bag 30 and the compression action, the liquid can be discharged more quickly. At the same time, the top bag is small and also accelerates the flow rate. The reaction liquid is introduced into the liquid guiding bag 30 through the connecting tube 33. The sealing cone sleeve 34 and the supporting sealing seat 32 are designed to... The first gear is used for sealing and protection. During this process, liquid is guided through the plating wheel 22, and plating is performed simultaneously with the rotation of the plating wheel 22. When the second gear 38 rotates, it drives the meshing first gear 12 to rotate on the second support bearing seat 13. Simultaneously, the rotating rod 11 drives the first guide roller 9 to rotate on the first support bearing seat 10. The first guide roller 9 is connected to the material belt 2 and guides the material belt 2 for conduction. The material belt 2 reaches the material belt 2 through the guiding adjustment mechanism 44, and then undergoes plating treatment through the positional conduction between the plating wheel 22 and the shielding belt 3. The second gear 38 also meshes with the third gear 42, driving the third gear 42 to rotate on the third support bearing seat 43. The first guide pulley 40 is rotated and adjusted by the drive guide rod 41. The first guide pulley 40 is connected to the shielding belt 3, so that the shielding belt 3 is continuously driven. The shielding belt 3 is transmitted and coordinated through the second guide pulley 46, the first guide pulley 40, the third guide pulley 48, and the spot plating wheel 22 to perform the shielding treatment. At the same time, the user can also adjust the position of the second guide roller 55 to change the tension of the material belt 2. Rotating the rotating adjustment shaft 51 causes the lead screw 52 to rotate, which drives the sliding block 54 to slide and adjust on the limiting frame 53. At this time, the second guide roller 55 follows the adjustment of the sliding block 54. By changing the position of the second guide roller 55, the tension of the material belt 2 is controlled to complete the work.

[0050] Although embodiments of the 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 invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A horizontal spot plating machine with multiple adjustment functions, characterized in that: It includes a spot plating production structure (1), a material strip (2) and a shielding strip (3). The spot plating production structure (1) is equipped with a material strip (2) and a shielding strip (3). The material strip (2) is located between the spot plating production structure (1) and the shielding strip (3) to carry out electroplating production work. The spot plating production structure (1) is set up by combining the spot plating component (4) and the supporting component (5). The guiding mechanism (6), the connecting mechanism (7) and the spot plating mechanism (8) in the spot plating component (4) are meshed and connected to control the spot plating wheel (22) and the shielding belt (3) to move synchronously. At the same time, the guiding mechanism (6) controls the material belt (2) to be continuously transported. The connecting mechanism (7) controls the squeezing effect of the liquid guiding bag (30) through the expansion of the air bag (20) and the centrifugal motion control of the regulating module (21). The supporting component (5) is used to support the spot plating component (4) and at the same time, the material belt (2) and the shielding belt (3) are continuously guided and transported.

2. A horizontal spot plating machine with multiple adjustment functions according to claim 1, characterized in that: The spot plating production structure (1) includes a spot plating component (4) and a support component (5). The spot plating component (4) is rotatably mounted on the support component (5). The spot plating component (4) includes a guide mechanism (6), a connecting mechanism (7) and a spot plating mechanism (8). The connecting mechanism (7) is engaged with the spot plating mechanism (8). The connecting mechanism (7) is also engaged with the guide mechanism (6).

3. A horizontal spot plating machine with multiple adjustment functions according to claim 1, characterized in that: The guiding mechanism (6) includes a second supporting bearing seat (13), on which a first toothed disc (12) is rotatably mounted. The first toothed disc (12) drives the first guide roller (9) to rotate via a rotating rod (11). The first guide roller (9) is rotatably mounted on the first supporting bearing seat (10).

4. A horizontal spot plating machine with multiple adjustment functions according to claim 3, characterized in that: The connecting mechanism (7) includes a spot plating unit (14) and a driving unit (15). The driving unit (15) drives the spot plating unit (14). The spot plating unit (14) includes a spot plating wheel (22). The spot plating wheel (22) is fixed on the outside of the airbag (20). A connecting pipe (19) is connected to the airbag (20). An air guide hole (18) is connected to the connecting pipe (19). The air guide hole (18) passes through the top plate (17). A connecting rod (16) is fixed at the center of the top plate (17). An adjustment module (21) is provided at the bottom of the airbag (20). The adjustment module (21) is flexibly set. The airbag (20) is set in a conical structure. The top and bottom of the airbag (20) are provided with plastic discs, which are used to fix the spot plating wheel (22) and the control module (21) respectively. The control module (21) includes a sleeve shaft (23). A connecting rod (24) is fixed on the side end of the sleeve shaft (23). The connecting rod (24) is elastically telescopically connected through the first spring pull rod (26). A rotating contact wheel (25) is rotatably provided at the lower end of the sleeve shaft (23). A second spring pull rod (27) is provided at the bottom of the rotating contact wheel (25). The second spring pull rod (27) controls the elastic telescopic connection of the rotating contact wheel (25).

5. A horizontal spot plating machine with multiple adjustment functions according to claim 4, characterized in that: The drive unit (15) includes a liquid guiding part (28) and a drive control part (29). The liquid guiding part (28) is sleeved on the drive control part (29). The liquid guiding part (28) includes a connecting conduit (33). The connecting conduit (33) is connected to the sealing cone sleeve (34). The upper end of the connecting conduit (33) is connected to the water outlet (31) through the liquid guiding bag (30). The lower end of the water outlet (31) is supported by the supporting sealing seat (32). The supporting sealing seat (32) is fixed to the sealing cone sleeve (34).

6. A horizontal spot plating machine with multiple adjustment functions according to claim 5, characterized in that: The drive control part (29) includes a stepper motor (39), a second gear plate (38) is driven and connected to the stepper motor (39), the upper end of the second gear plate (38) is fixed to the drive rod (36), and a bearing ring seat (37) is sleeved on the drive rod (36). The bearing ring seat (37) is fixed by a limiting mounting bracket (35).

7. A horizontal spot plating machine with multiple adjustment functions according to claim 6, characterized in that: The spot plating mechanism (8) includes a third support bearing seat (43), a third gear plate (42) is rotatably mounted on the third support bearing seat (43), a drive guide rod (41) is fixedly connected to the third gear plate (42), and a first guide pulley (40) is fixedly connected to the drive guide rod (41).

8. A horizontal spot plating machine with multiple adjustment functions according to claim 7, characterized in that: The bearing component (5) includes a fixed support (50), on which a waste liquid tank (49) and a bearing mounting base plate (47) are fixedly connected. The waste liquid tank (49) is located on the side of the bearing mounting base plate (47). A second guide pulley (46) and a third guide pulley (48) are rotatably provided on the bearing ring seat (37). The bearing mounting base plate (47) is also fixedly connected to a guide adjustment mechanism (44). The guide adjustment mechanism (44) includes a limiting frame (53), on which a rotating adjustment shaft (51) is rotatably provided. The rotating adjustment shaft (51) is fixed to a lead screw (52). The threads on the lead screw (52) are arranged symmetrically and in opposite directions. A sliding block (54) is threadedly connected to the lead screw (52). The sliding block (54) slides at the upper limit on the limiting frame (53). A second guide roller (55) is rotatably provided on the sliding block (54).

9. A horizontal spot plating machine with multiple adjustment functions according to claim 8, characterized in that: The limiting frame (53) is fixed to the bearing mounting base plate (47). The side end of the bearing mounting base plate (47) is also connected to the waste liquid tank (49). A tank is provided at the connection position. The second guide roller (55), the first guide roller (9) and the spot plating wheel (22) are used for guiding and transmitting the material belt (2). The second guide pulley (46), the third guide pulley (48) and the first guide pulley (40) are used for transmitting the shielding belt (3).

10. A horizontal spot plating machine with multiple adjustment functions according to claim 9, characterized in that: The third bearing seat (43) is fixed on the fixed support (50), the first guide pulley (40) is set on the bearing mounting base (47), the third gear disc (42) is meshed with the second gear disc (38), the limiting mounting bracket (35) is fixed on the lower end of the bearing mounting base (47), the upper end of the drive rod (36) is fixed to the connecting rod (16), the sealing cone sleeve (34) is fixedly sleeved on the bearing ring seat (37), and the sealing cone sleeve (34) and the bearing ring seat (37) are sealed together. The water outlet (31) is located inside the spot plating wheel (22), and the spot plating wheel (2) is located inside the bearing ring seat (50). 2) Rotate on the outlet (31), the first spring rod (26) and the second spring rod (27) are fixed to the bottom of the air bag (20), the rotating contact wheel (25) is pressed to contact the liquid guiding bag (30), the liquid guiding bag (30) and the outlet (31) are provided between the air bag (20) and the spot plating wheel (22), and the liquid guiding bag (30) is set with a narrow top surface and a wide bottom surface. The stepper motor (39) is fixed on the fixed support (50), the liquid guiding bag (30) is fixed on the bearing mounting base plate (47), and the first toothed plate (12) and the second toothed plate (38) are meshed and connected on the side.