Horizontal electroplating apparatus with drive belt drive

CN224754561UActive Publication Date: 2026-09-15KUNSHAN BOTONG MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202522116050.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-09-15
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

[0002]目前现有的水平式电镀设备通常采用链式传动或者滚轮传送,但是上述两种传动方式存在如下缺点:链式传动的结构坚固并承载能力强,但存在灵活性差、链条易被腐蚀卡死和维护成本高等问题,滚轮传送则通过一系列同步旋转的滚轮驱动工件前进,对于重量轻或尺寸小的工件,容易发生打滑或传送不顺畅的问题,不利于工业化生产

Benefits of technology

[0012] The beneficial technical effects of this utility model are as follows: The horizontal electroplating equipment with a transmission belt includes a transmission belt mechanism, a hanger, and a hanger clamping mechanism. In use, the hanger clamps the electroplated parts, and the transmission belt drives the hanger to move. Compared to chain transmission, this offers better flexibility and higher reliability. Furthermore, compared to using rollers, it avoids slippage due to small electroplated parts, and has higher adaptability to small-sized electroplated parts. It boasts advantages of high reliability and a wide range of workpiece adaptability.

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Abstract

The utility model discloses a horizontal electroplating equipment of transmission belt drive, include: transmission belt drive mechanism, hanger and hanger open clamping mechanism, transmission belt drive mechanism is fixed in the top surface of base, is provided with transmission belt on transmission belt drive mechanism, and the hanger is fixed to transmission belt, and the top of transmission belt drive mechanism is provided with hanger open clamping mechanism, and the side of transmission belt drive mechanism is provided with two rows of liquid spray pipe that go up and down, and the liquid spray pipe is connected water pump, and the bottom of hanger can hold the electroplated piece of plate shape, and the hanger connects the cathode of electroplating machine, and the liquid spray pipe connects the anode of electroplating machine, and transmission belt can move under the drive of transmission belt drive mechanism and drive hanger and electroplated piece move around transmission belt drive mechanism, and the electroplating solution can be sprayed to the electroplated piece through the liquid spray pipe under the drive of water pump, when hanger moves to hanger open clamping mechanism place, and hanger can release electroplated piece. The utility model discloses high reliability and wide adaptation range to work piece.
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Description

Technical Field

[0001] This utility model relates to horizontal electroplating equipment, and more particularly to a horizontal electroplating equipment driven by a transmission belt. Background Technology

[0002] Currently, existing horizontal electroplating equipment typically uses chain drive or roller conveyor. However, these two transmission methods have the following disadvantages: chain drive has a robust structure and strong load-bearing capacity, but it suffers from poor flexibility, the chain is prone to corrosion and jamming, and high maintenance costs. Roller conveyor drives the workpiece forward through a series of synchronously rotating rollers. For lightweight or small workpieces, slippage or uneven conveying can easily occur, which is not conducive to industrial production. Utility Model Content

[0003] To overcome the above-mentioned defects, this utility model provides a horizontal electroplating device driven by a transmission belt, which has the advantages of high reliability and wide applicability to workpieces.

[0004] The technical solution adopted by this utility model to solve its technical problem is: a horizontal electroplating device driven by a transmission belt, comprising: a transmission belt transmission mechanism, a hanger, and a hanger clamping mechanism. The transmission belt transmission mechanism is fixed to the top surface of the base, and a transmission belt is provided on the transmission belt transmission mechanism. The hanger is fixed to the transmission belt, and a hanger clamping mechanism is provided at the top of the transmission belt transmission mechanism. Two rows of spray pipes are provided next to the transmission belt transmission mechanism, and the spray pipes are connected to a water pump. The bottom end of the hanger can clamp a plate-shaped electroplating part. The hanger is connected to the cathode of the electroplating machine, and the spray pipes are connected to the anode of the electroplating machine. The transmission belt can move under the drive of the transmission belt transmission mechanism and drive the hanger and the electroplating part to move around the transmission belt transmission mechanism. The electroplating part can extend between the two rows of spray pipes. The electroplating solution can be sprayed onto the electroplating part through the spray pipes under the drive of the water pump. When the hanger moves to the hanger clamping mechanism, the hanger can release the electroplating part.

[0005] Optionally, the transmission belt mechanism includes a fixed base, transmission wheels, a transmission belt, a universal joint coupling, a drive motor, and a top cover. The top cover is located above the fixed base, and two transmission wheels are rotatably connected to the top of the fixed base. The transmission wheels are located between the fixed base and the top cover. The transmission belt is sleeved on the two transmission wheels, and one of the transmission wheels is connected to the drive motor through the universal joint coupling. The transmission wheel can rotate under the drive of the drive motor and drive the transmission belt to move.

[0006] Optionally, the hanger includes a slide, a front clamp, a rear clamp, a connecting seat, and a compression spring. The slide is fixed to the rear end of the rear clamp. Sliding blocks are respectively provided at the upper and lower ends of the slide. Sliding grooves are formed on the top surface of the fixed seat and the bottom surface of the top cover along the moving path of the hanger. The sliding blocks can be slidably engaged in the sliding grooves. The connecting seat is fixed to the front end of the rear clamp. The front clamp is slidably connected to the connecting seat. The front and rear clamps are elastically connected by a compression spring. The bottom end of the front clamp is bent to form a front clamp, and the bottom end of the rear clamp is bent to form a rear clamp. The front clamp can approach the rear clamp under the push of the compression spring. The head can hold electroplated parts. The top of the top cover has a conductive strip on the side near the spray pipe. The conductive strip is connected to the cathode of the electroplating machine. The front end of the swing arm is swung and connected to the top of the rear clamping plate. The rear end of the swing arm has a conductive block. The swing arm and the rear clamping plate are elastically connected by a torsion spring. The conductive block can be driven by the torsion spring to stick to the conductive strip and slide to connect with the conductive strip. When the conductive block is sticking to the conductive strip, it can be electrically connected to the conductive strip. The rear clamping plate is made of conductive material. The conductive block is electrically connected to the rear clamping plate. The top of the front clamping plate has a guide post. The hanging bracket opening mechanism can squeeze the guide post and drive the front clamping head away from the rear clamping head while compressing the compression spring.

[0007] Optionally, the front and rear clamps are fitted with protective sleeves, and the front and rear clamps can extend from the bottom of the protective sleeves.

[0008] Optionally, the hanger opening mechanism includes a fixed column and a guide plate. The guide plate is fixed to the top cover by the fixed column. The top of the guide plate is provided with a ramp. The top and bottom of the ramp are smoothly transitioned. The ramp can squeeze the guide column and drive the front clamp away from the rear clamp while compressing the compression spring.

[0009] Optionally, a fixing plate is vertically installed on the top of the base, and two layers of fixing frames are arranged at intervals along the vertical direction on the fixing plate. The spray pipe is fixed to the fixing frames, one end of the spray pipe is sealed, and the other end of the spray pipe is connected to the outlet of the water pump through a water pipe. A nozzle is provided on the side of the spray pipe, and the nozzle is facing the electroplated part. A first overflow hole is opened on the base, and the first overflow hole is connected to the overflow tank. The inlet of the water pump is connected to the overflow tank. A barrier is provided around the base to prevent the electroplating solution from overflowing.

[0010] Optionally, the mounting base is equipped with a cleaning pipe with its outlet facing the transmission belt. The mounting base has a second overflow hole. The transmission belt has teeth, and the transmission wheel has grooves that can mesh with the teeth. The transmission belt has mesh holes and is made of polyester or Teflon. The mounting base is equipped with a transmission belt speed sensor and a hanger sensor. The detection end of the transmission belt speed sensor is connected to the transmission belt. When the hanger passes the hanger sensor, the hanger sensor can be triggered.

[0011] Optionally, the overflow tank is equipped with a liquid level sensor, a temperature sensor, and a concentration sensor. The liquid level sensor can detect the liquid level height of the electroplating solution in the overflow tank, the temperature sensor can detect the temperature of the electroplating solution in the overflow tank, and the concentration sensor can detect the concentration of the electroplating solution in the overflow tank. The transmission belt speed sensor, the hanger sensor, the liquid level sensor, the temperature sensor, and the concentration sensor are electrically connected to the PLC.

[0012] The beneficial technical effects of this utility model are as follows: The horizontal electroplating equipment with a transmission belt includes a transmission belt mechanism, a hanger, and a hanger clamping mechanism. In use, the hanger clamps the electroplated parts, and the transmission belt drives the hanger to move. Compared to chain transmission, this offers better flexibility and higher reliability. Furthermore, compared to using rollers, it avoids slippage due to small electroplated parts, and has higher adaptability to small-sized electroplated parts. It boasts advantages of high reliability and a wide range of workpiece adaptability. Attached Figure Description

[0013] Figure 1 This is a three-dimensional view of the entire machine of this utility model;

[0014] Figure 2 This is a side view of the entire machine of this utility model;

[0015] Figure 3 This is a perspective view of the transmission belt transmission mechanism, the hanger, and the hanger opening mechanism of this utility model;

[0016] Figure 4 This is a structural schematic diagram of the transmission belt transmission mechanism, the hanger, and the hanger opening mechanism of this utility model;

[0017] Figure 5 This is a side sectional view of the hanging bracket of this utility model;

[0018] Figure 6 This is a perspective view of the hanging bracket opening mechanism of this utility model;

[0019] in:

[0020] 1. Belt drive mechanism; 11. Fixed base; 12. Belt drive; 13. Universal joint coupling;

[0021] 14. Drive motor; 15. Top cover; 16. Sliding groove; 17. Conductive strip; 2. Hanger; 21. Slide seat; 22. Front clamp; 23. Rear clamp; 24. Connecting seat; 25. Compression spring; 26. Sliding block; 27. Front chuck; 28. Rear chuck; 29. ​​Swing rod; 210. Conductive block; 211. Guide post; 212. Torsion spring; 3. Hanger opening mechanism; 31. Fixed post; 32. Guide plate;

[0022] 33. Slope; 4. Base; 5. Return channel; 6. Water pump; 7. Fixing plate; 8. Spray pipe. Detailed Implementation

[0023] In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.

[0024] This specific embodiment details the horizontal electroplating equipment with a transmission belt drive described in this application, such as... Figures 1-6 As shown, the horizontal electroplating equipment driven by the transmission belt includes: a transmission belt transmission mechanism 1, a bracket 2, and a bracket opening and clamping mechanism 3. The transmission belt transmission mechanism 1 is fixed to the top surface of the base 4. A transmission belt 12 is provided on the transmission belt transmission mechanism 1. The bracket 2 is fixed to the transmission belt 12. The bracket opening and clamping mechanism 3 is provided at the top of the transmission belt transmission mechanism 1. Two rows of spray pipes 8 are provided next to the transmission belt transmission mechanism 1. The spray pipes 8 are connected to the water pump 6. The bottom end of the bracket 2 can clamp the plate-shaped electroplating part. The bracket 2 is connected to the cathode of the electroplating machine. The spray pipes 8 are connected to the anode of the electroplating machine. The transmission belt 12 can move under the drive of the transmission belt transmission mechanism 1 and drive the bracket 2 and the electroplating part to move around the transmission belt transmission mechanism 1. The electroplating part can extend between the two rows of spray pipes 8. The electroplating solution can be sprayed onto the electroplating part through the spray pipes 8 under the drive of the water pump 6. When the bracket 2 moves to the bracket opening and clamping mechanism 3, the bracket 2 can release the electroplating part. In use, the electroplated part is held in place by the hanger 2, and the hanger 2 is moved by a drive belt. Compared with chain drive, this method offers better flexibility and higher reliability. Furthermore, compared with rollers, it avoids slippage caused by small electroplated parts, and has greater adaptability to small-sized electroplated parts. It boasts advantages of high reliability and a wide range of workpiece adaptability.

[0025] Optionally in this embodiment, the transmission belt transmission mechanism 1 includes a fixed base 11, transmission wheels, a transmission belt 12, a universal joint coupling 13, a drive motor 14, and a top cover 15. The top cover 15 is located above the fixed base 11. Two transmission wheels are rotatably connected to the top of the fixed base 11. The transmission wheels are located between the fixed base 11 and the top cover 15. The transmission belt 12 is sleeved on the two transmission wheels. One of the transmission wheels is connected to the drive motor 14 through the universal joint coupling 13. The transmission wheel can rotate under the drive of the drive motor 14 and drive the transmission belt 12 to move.

[0026] Optionally in this embodiment, the hanger 2 includes a slide 21, a front clamping plate 22, a rear clamping plate 23, a connecting seat 24, and a compression spring 25. The slide 21 is fixed to the rear end of the rear clamping plate 23. Sliding blocks 26 are respectively provided at the upper and lower ends of the slide 21. The top surface of the fixed seat 11 and the bottom surface of the top cover 15 are provided with sliding grooves 16 along the moving path of the hanger 2. The sliding blocks 26 can be slidably locked in the sliding grooves 16. The connecting seat 24 is fixed to the front end of the rear clamping plate 23. The front clamping plate 22 is slidably connected to the connecting seat 24. The front clamping plate 22 and the rear clamping plate 23 are elastically connected by the compression spring 25. The bottom end of the front clamping plate 22 is bent to form a front clamp 27, and the bottom end of the rear clamping plate 23 is bent to form a rear clamp 28. The front clamp 27 can approach the rear clamp 28 under the push of the compression spring 25. The front clamp 27 and the rear clamp 28 are connected. The 28 clamps the electroplated parts. A conductive strip 17 is provided on the top of the top cover 15 near the spray pipe 8. The conductive strip 17 is connected to the cathode of the electroplating machine. The front end of the swing arm 29 is oscillatingly connected to the top of the rear clamping plate 23. A conductive block 210 is provided at the rear end of the swing arm 29. The swing arm 29 and the rear clamping plate 23 are elastically connected by a torsion spring 212. The conductive block 210 can be driven by the torsion spring 212 to closely adhere to the conductive strip 17 and slide in contact with it. When the conductive block 210 is close to the conductive strip 17, it can be electrically connected to it. The rear clamping plate 23 is made of conductive material. The conductive block 210 is electrically connected to the rear clamping plate 23. A guide post 211 is provided at the top of the front clamping plate 22. The hanger opening mechanism 3 can squeeze the guide post 211 and drive the front clamp 27 away from the rear clamp 28 while compressing the compression spring 25. The sliding groove 16 can play an auxiliary positioning role to prevent the hanger 2 from shaking.

[0027] Optionally in this embodiment, protective sleeves are provided on the front clamping plate 22 and the rear clamping plate 23, and the front clamp 27 and the rear clamp 28 can extend from the bottom end of the protective sleeves.

[0028] Optionally in this embodiment, the hanger opening mechanism 3 includes a fixed column 31 and a guide plate 32. The guide plate 32 is fixed to the top cover 15 by the fixed column 31. The top of the guide plate 32 is provided with a ramp 33. The top and bottom of the ramp 33 are smoothly transitioned. The ramp 33 can squeeze the guide column 211 and drive the front clamp 27 away from the rear clamp 28 while compressing the compression spring 25. When the hanger 2 moves to the hanger opening mechanism 3 under the drive of the transmission belt transmission mechanism 1, the ramp 33 squeezes the guide post 211, causing the guide post 211 to move upward. Then, the guide post 211 drives the front clamping plate 22 to move upward, causing the front clamp 27 to move away from the rear clamp 28, thereby releasing the electroplated part. After the guide post 211 is separated from the ramp 33, the front clamping plate 22 moves downward under the drive of the compression spring 25 and drives the front clamp 27 to move closer to the rear clamp 28 to reset. The two ends of the fixed base 11 are respectively provided with hanger opening mechanisms 3. One hanger opening mechanism 3 is responsible for loading, and the other hanger opening mechanism 3 is responsible for unloading.

[0029] Optionally, in this embodiment, a fixing plate 7 is vertically installed on the top of the base 4, and two layers of fixing frames are arranged vertically on the fixing plate 7. The spray pipe 8 is fixed to the fixing frames, one end of the spray pipe 8 is sealed, and the other end of the spray pipe 8 is connected to the outlet of the water pump 6 through a water pipe. A nozzle is provided on the side of the spray pipe 8, and the nozzle is facing the electroplating part. A first overflow hole is opened on the base 4, which is connected to the overflow tank. The inlet of the water pump 6 is connected to the overflow tank. A barrier is provided around the base 4 to prevent the electroplating solution from overflowing. The electroplating solution sprayed from the nozzle flows back to the overflow tank through the first overflow hole and is then pumped out by the water pump 6, thereby realizing the circulation of the electroplating solution. The barrier can prevent the electroplating solution from overflowing and ensure that the liquid level of the electroplating solution inside the barrier can cover the electroplating part.

[0030] Optionally, in this embodiment, a cleaning pipe is provided inside the fixing base 11, with the water outlet of the cleaning pipe facing the transmission belt 12. A second overflow hole is provided on the fixing base 11. The transmission belt 12 is provided with protruding teeth, and the transmission wheel is provided with grooves that can mesh with the protruding teeth. The transmission belt 12 is provided with mesh holes and is made of polyester or Teflon. A transmission belt speed sensor and a hanger sensor are provided on the fixing base 11. The detection end of the transmission belt speed sensor is connected to the transmission belt 12. When the hanger 2 passes by the hanger sensor, the hanger sensor can be triggered. The cleaning pipe can spray cleaning fluid to clean the transmission belt 12 and prevent debris from getting stuck on the transmission belt 12. The mesh holes on the transmission belt 12 facilitate cleaning of the transmission belt 12. The transmission belt speed sensor can detect the moving speed of the transmission belt 12, and the hanger sensor is used to count the number of hangers 2 passing by.

[0031] Optionally, in this embodiment, the overflow tank is equipped with a level sensor, a temperature sensor, and a concentration sensor. The level sensor detects the liquid level of the electroplating solution in the overflow tank, the temperature sensor detects the temperature of the electroplating solution in the overflow tank, and the concentration sensor detects the concentration of the electroplating solution in the overflow tank. The conveyor belt speed sensor, the hanger sensor, the level sensor, the temperature sensor, and the concentration sensor are electrically connected to the PLC. When any one of the electroplating solution level, temperature, or concentration in the overflow tank exceeds a preset value, the PLC can issue an alarm. At the same time, the PLC can monitor the moving speed of the conveyor belt 12 and the number of hangers 2 passing through.

[0032] Movement process: When the hanger 2 moves to the hanger opening mechanism 3 corresponding to the loading position, the hanger opening mechanism 3 drives the front chuck 27 away from the rear chuck 28. Then, the electroplated part extends between the front chuck 27 and the rear chuck 28. After the hanger 2 moves away from the hanger opening mechanism 3, the front chuck 27 and the rear chuck 28 are reset and clamp the electroplated part under the drive of the compression spring 25. Then, the hanger 2 and the electroplated part approach the spray pipe 8 under the drive of the transmission belt transmission mechanism 1. At this time, the conductive block 210 contacts the conductive strip 17, so that the hanger 2 is connected to the cathode of the electroplating machine, and the electroplated part clamped by the hanger 2 is also connected. The cathode of the electroplating machine is then driven by the transmission belt mechanism 1, and the electroplated parts pass between the two spray pipes 8. Since the spray pipes 8 are connected to the anode of the electroplating machine, the electroplating liquid sprayed from the spray pipes 8 can electroplat the electroplated parts connected to the cathode. When the hanger 2 moves away from the spray pipes 8 and moves to the hanger opening mechanism 3 at the corresponding unloading position, the hanger opening mechanism 3 drives the hanger 2 to release the electroplated parts that have been electroplated. The empty hanger 2, driven by the transmission belt mechanism 1, circles half a circle around the fixed seat 11 and returns to the loading position to reload, thereby realizing the automated electroplating of the electroplated parts.

[0033] The horizontal electroplating equipment using the belt drive in this embodiment has the advantages of high reliability and wide applicability to workpieces.

Claims

1. A horizontal electroplating device driven by a transmission belt, characterized in that, include: The transmission belt transmission mechanism (1), the hanger (2), and the hanger opening and clamping mechanism (3) are provided. The transmission belt transmission mechanism (1) is fixed to the top surface of the base (4). A transmission belt (12) is provided on the transmission belt transmission mechanism (1). The hanger (2) is fixed to the transmission belt (12). The hanger opening and clamping mechanism (3) is provided at the top of the transmission belt transmission mechanism (1). Two rows of spray pipes (8) are provided next to the transmission belt transmission mechanism (1). The spray pipes (8) are connected to the water pump (6). The bottom end of the hanger (2) can clamp the plate. The electroplated part is in the shape of a bracket (2) connected to the cathode of the electroplating machine, and the spray pipe (8) connected to the anode of the electroplating machine. The transmission belt (12) can move under the drive of the transmission belt transmission mechanism (1) and drive the bracket (2) and the electroplated part to move around the transmission belt transmission mechanism (1). The electroplated part can extend between the two rows of spray pipes (8). The electroplating liquid can be sprayed onto the electroplated part through the spray pipe (8) under the drive of the water pump (6). When the bracket (2) moves to the bracket opening mechanism (3), the bracket (2) can release the electroplated part.

2. The horizontal electroplating equipment with transmission belt drive according to claim 1, characterized in that: The transmission belt transmission mechanism (1) includes a fixed seat (11), transmission wheels, transmission belt (12), universal joint coupling (13), drive motor (14) and top cover (15). The top cover (15) is located above the fixed seat (11). Two transmission wheels are rotatably connected to the top of the fixed seat (11). The transmission wheels are located between the fixed seat (11) and the top cover (15). The transmission belt (12) is sleeved on the two transmission wheels. One of the transmission wheels is connected to the drive motor (14) through the universal joint coupling (13). The transmission wheel can rotate under the drive of the drive motor (14) and drive the transmission belt (12) to move.

3. The horizontal electroplating equipment with transmission belt drive according to claim 2, characterized in that: The hanger (2) includes a slide (21), a front clamp (22), a rear clamp (23), a connecting seat (24), and a compression spring (25). The slide (21) is fixed to the rear end of the rear clamp (23). Sliding blocks (26) are respectively provided at the upper and lower ends of the slide (21). The top surface of the fixed seat (11) and the bottom surface of the top cover (15) are provided with sliding grooves (16) along the moving path of the hanger (2). The sliding blocks (26) can be slidably locked in the sliding grooves (16) to connect. The seat (24) is fixed to the front end of the rear clamping plate (23), and the front clamping plate (22) is slidably connected to the connecting seat (24). The front clamping plate (22) and the rear clamping plate (23) are elastically connected by a compression spring (25). The bottom end of the front clamping plate (22) is bent to form a front clamping head (27), and the bottom end of the rear clamping plate (23) is bent to form a rear clamping head (28). The front clamping head (27) can approach the rear clamping head (28) under the push of the compression spring (25). The front clamping head (27) and the rear clamping head (28) are connected by a compression spring (25). 8) It can clamp electroplated parts. The top of the top cover (15) is provided with a conductive strip (17) on the side near the spray pipe (8). The conductive strip (17) is connected to the cathode of the electroplating machine. The front end of the swing rod (29) is swung and connected to the top of the rear clamping plate (23). The rear end of the swing rod (29) is provided with a conductive block (210). The swing rod (29) and the rear clamping plate (23) are elastically connected by a torsion spring (212). The conductive block (210) can be tightly attached to the conductive plate under the drive of the torsion spring (212). The strip (17) is slidably connected to the conductive strip (17). When the conductive block (210) is close to the conductive strip (17), it can be electrically connected to the conductive strip (17). The rear clamp (23) is made of conductive material. The conductive block (210) is electrically connected to the rear clamp (23). The top of the front clamp (22) is provided with a guide post (211). The hanger opening clamp mechanism (3) can squeeze the guide post (211) and drive the front clamp (27) away from the rear clamp (28) while compressing the compression spring (25).

4. The horizontal electroplating equipment with transmission belt drive according to claim 3, characterized in that: Protective sleeves are fitted on the front clamp (22) and the rear clamp (23), and the front clamp (27) and the rear clamp (28) can extend from the bottom of the protective sleeves.

5. The horizontal electroplating equipment with transmission belt drive according to claim 3, characterized in that: The hanging bracket opening mechanism (3) includes a fixed column (31) and a guide plate (32). The guide plate (32) is fixed to the top cover (15) by the fixed column (31). The top of the guide plate (32) is provided with a ramp (33). The top and bottom of the ramp (33) are smoothly transitioned. The ramp (33) can squeeze the guide column (211) and drive the front clamp (27) away from the rear clamp (28) while compressing the compression spring (25).

6. The horizontal electroplating equipment with transmission belt drive according to claim 5, characterized in that: A fixing plate (7) is vertically installed on the top of the base (4). Two layers of fixing frames are arranged at intervals along the vertical direction on the fixing plate (7). The spray pipe (8) is fixed to the fixing frame. One end of the spray pipe (8) is sealed. The other end of the spray pipe (8) is connected to the outlet end of the water pump (6) through a water pipe. A nozzle is provided on the side of the spray pipe (8). The nozzle is facing the electroplated part. A first overflow hole is opened on the base (4). The first overflow hole is connected to the overflow trough. The inlet end of the water pump (6) is connected to the overflow trough. A barrier is provided around the base (4) to prevent the electroplating liquid from overflowing.

7. The horizontal electroplating equipment with transmission belt drive according to claim 6, characterized in that: The fixed base (11) is equipped with a cleaning pipe inside, and the water outlet of the cleaning pipe is directly opposite the transmission belt (12). The fixed base (11) is provided with a second overflow hole. The transmission belt (12) is provided with convex teeth. The transmission wheel is provided with a groove that can mesh with the convex teeth. The transmission belt (12) is provided with mesh holes. The transmission belt (12) is made of polyester or Teflon. The fixed base (11) is provided with a transmission belt speed sensor and a hanger sensor. The detection end of the transmission belt speed sensor is connected to the transmission belt (12). When the hanger (2) passes the hanger sensor, the hanger sensor can be triggered.

8. The horizontal electroplating equipment with transmission belt drive according to claim 7, characterized in that: The overflow tank is equipped with a liquid level sensor, a temperature sensor, and a concentration sensor. The liquid level sensor can detect the liquid level height of the electroplating solution in the overflow tank, the temperature sensor can detect the temperature of the electroplating solution in the overflow tank, and the concentration sensor can detect the concentration of the electroplating solution in the overflow tank. The transmission belt speed sensor, the hanger sensor, the liquid level sensor, the temperature sensor, and the concentration sensor are electrically connected to the PLC.