Product Details
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1. Working Principle
The gantry electroplating production line forms a uniform coating on the metal surface through electrolysis. Its core process is: applying voltage between the anode and the cathode to deposit the metal ions in the electroplating solution on the surface of the cathode (workpiece) to form a protective or functional coating, which improves the corrosion resistance, wear resistance and aesthetics of the workpiece.
2. Core Configuration
1. The control system adopts a PLC programmable controller (such as Mitsubishi and Omron brands in Japan) to achieve full automatic/semi-automatic control, support multiple sets of process flow switching, and has fault alarm and parameter memory tracing functions.
2. Auxiliary equipment High-precision filter (to ensure the cleanliness of the plating solution), rectifier power supply (stable current output), constant temperature system (to maintain the temperature of the plating solution) and exhaust gas treatment device (environmental protection requirements).
3. Transmission system Variable frequency speed regulation motor drives the crane to run, combined with magnetic induction switch or photoelectric switch to achieve precise positioning, reduce operating noise and mechanical wear.
3. Application Field
Automotive parts: such as anti-corrosion coating treatment of engine parts and fasteners. Electronic components: Improve conductivity and surface protection performance.
Large-size workpieces: Such as metal structural parts and thick coating process requirements for industrial equipment.
4. Performance characteristics
1. Efficient and flexibleSupports manual/automatic mode switching, can quickly adjust the type of plating, coating thickness and process flow, and adapt to multi-variety and small batch production needs.
2. Stable and reliableThe gantry structure has high rigidity, the lifting system runs smoothly, and the coating uniformity can reach COV≤5%.
3. Energy saving and environmental protectionAdopt closed tank design and exhaust gas treatment system to reduce plating solution volatilization and wastewater discharge, in line with environmental protection standards.
5. Technical parameter examples
Parameters | Description |
Maximum workpiece size | Depending on the tank design, it can reach several meters |
Coating uniformity | COV≤5%, CR≤±12% |
Operation speed | Adjustable frequency conversion (0.5-5m/min) |
Control accuracy | ±1mm positioning error |
1. Gantry frame
The column-type gantry frame structure is adopted, and the main body is made of stainless steel or PP plate, which has high rigidity and corrosion resistance, and can be adapted to plating tanks and workpieces of different sizes.
The plating tank design is divided into deep tank or shallow tank. The tank body improves stability by strengthening the structure to meet the electroplating needs of high-density and small-diameter workpieces.
2. Lifting system
Crane device: equipped with gantry crane or electric lifting hook, precise positioning is achieved through gear rack transmission, and some models support handheld remote control operation.
Drain device: The crane is equipped with a drain function to reduce the amount of plating solution carried out and reduce the risk of cross contamination.
3. Plating tank layout
The plating tanks are arranged in parallel in a straight line or U-shape according to the process requirements, including plating tanks, cleaning tanks, activation tanks, etc., and the tanks are connected by a conveying system.
Some production lines are equipped with vibration motors, air blowing devices or heating/cooling systems to improve the uniformity of plating solution and electroplating quality.
4. Transmission and positioning system
Drive mode: frequency conversion motor or brake reduction motor is used, which supports multi-level speed adjustment, low operating noise and high wear resistance.
Positioning technology: ±1mm positioning accuracy is achieved through magnetic induction switch, photoelectric switch or infrared remote control to ensure the stability of lifting.
5. Control system
The core adopts PLC programmable controller (such as Mitsubishi and Omron brands), which supports full-automatic/semi-automatic/manual mode switching, and multiple operating programs can be set through the touch screen.
Integrated fault alarm and parameter memory tracing functions, real-time monitoring of key parameters such as electroplating current, temperature and time.
6. Auxiliary equipment
Filter system: High-precision filter maintains the cleanliness of the plating solution and reduces the impact of impurities on the plating layer.
Rectifier power supply: dual pulse power supply or DC power supply to ensure stable current output, suitable for different plating types such as zinc plating and nickel plating.
Environmental protection device: Some models are equipped with exhaust gas treatment system or closed tank design to reduce VOC emissions.
Example of structural diagram
Gantry frame → Lifting system → Plating tank group → Transmission positioning → Control system
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Auxiliary equipment (filtration, power supply, temperature control)
1.High cost performance: Based on the customer's product positioning and development strategy, and with economic affordability as the foundation, we achieve the best cost performance.
2.The advanced and meticulous design concept of the equipment, along with the highly automated industrial equipment, showcases the image of a modern and advanced enterprise.
3. It has high adaptability, meeting the current production requirements and reserving room for development, taking into account the needs of increased production and improved quality in the future.
4.Quality compliance strictly adheres to the ISO900 quality management system, with every minute detail of the entire equipment installation being strictly controlled.