| Sign In | Join Free | My futurenowinc.com |
|
| Company Info. |
| Zhejiang Huier Coating Environmental Protection Equipment Co., Ltd |
| Verified Supplier |
| View Contact Details |
| Product List |
1. Process flow
1. Pretreatment stage
Plastic parts are processed in sequence:
① Ultrasonic degreasing → ② Water washing → ③ Chemical roughening →
④ Activation → ⑤ Chemical copper/nickel plating.
2. Electroplating stage
Multi-layer metal deposition: acid copper plating (thickness
10-20μm) → semi-bright nickel plating (thickness 5-15μm) → chrome
plating (decorative 0.1-0.3μm) are completed in sequence.
Post-processing: including water washing → passivation → hot air
drying → quality inspection, the coating thickness error is ≤5%.
3. Technical parameters
Operation efficiency: cycle time 1-5 minutes/station, single-line
daily production capacity can reach 500-2000 pieces.
Current density: 0.5-2A/dm² in chemical plating stage, 1-5A/dm² in
electroplating stage.
Temperature control accuracy: Plating solution temperature
control ±1℃, heating rate ≥5℃/min.
Applicable substrates: ABS, PC, PP and other engineering
plastics.
4. Design features
Flexible production: Supports mixed-line production of multiple
varieties, and quickly switches plating types (such as
nickel-chromium plating, imitation gold plating) by adjusting
hangers and programs.
Low energy consumption design: The pulse power supply technology
is adopted, which saves 20%-30% energy compared with traditional DC
power supply.
Environmental protection: Equipped with acid mist collection
tower and wastewater reuse system, the exhaust gas purification
efficiency is ≥95%.
5. Applicable scenarios
Industry: Automotive decorative parts (car logo, grille), bathroom
hardware, home appliance buttons, electronic housing, etc.
Coating type: Decorative coating (high gloss chrome, matte
nickel), functional coating (wear-resistant, corrosion-resistant).
1. Pretreatment system
1. Ultrasonic cleaning tank: used to remove oil and particulate
impurities on the surface of plastic parts, with a cleaning
accuracy of 5μm to ensure the cleanliness of the substrate.
2. Roughening tank and activation tank: The roughening tank uses
chromic acid solution to chemically corrode the plastic surface to
form a microporous structure to enhance the adhesion of the
coating;
The activation tank uses palladium salt or silver ammonia solution
as a catalyst to provide an active surface for subsequent chemical
plating.
3. Water washing and surface conditioning tank: Residual liquid is
removed through multi-stage water washing, and surface conditioning
treatment optimizes the surface state.
2. Conductive treatment and electroplating system
1. Chemical plating tank: Using chemical copper plating or nickel
plating process, a conductive metal bottom layer is formed on the
plastic surface, with a thickness accuracy of ±0.5μm.
2. Plating tank group: Copper plating, nickel plating, and chrome
plating tanks are configured in the process sequence. The tank body
is made of acid- and alkali-resistant PP or PVC, and the plating
solution circulation filtration accuracy is ≤5μm;
The anode uses a titanium basket to load metal particles, and the
cathode conductive rod is a copper bar or titanium alloy, which
supports low voltage (1-3V) operation.
3. Suspended anode and dot matrix electrode: Optimize current
distribution and improve plating uniformity.
3. Conveying and hoisting system
1. Gantry crane: Through gear rack drive and encoder positioning,
the hoisting device can be accurately moved between the tank bodies
(error ≤1mm);
Anti-collision devices (infrared/mechanical limit) are configured
to ensure safe operation.
2. Rotating hanger: Self-locking chucks or magnetic clamps fix
the workpiece, supporting the hoisting of special-shaped parts
(such as car signs, bathroom accessories);
Optional 360° rotation function to ensure uniform plating liquid
coverage on complex surfaces and inner cavities.
4. Control system
1. Integration of PLC and HMI: Set electroplating parameters
(temperature, current density, time) through the touch screen, and
monitor the pH value and ion concentration of the plating solution
in real time;
Support fault self-diagnosis and data tracing, and generate process
reports.
2. Sensor module: Integrated temperature and displacement sensors,
dynamically adjust the operating status.
5. Auxiliary system
1. Circulation filtration system: Magnetic pump with 5μm filter to
reduce impurities in the plating solution and extend service life.
2. Temperature control system: Use electric heating tube or steam
heating, PID algorithm to control the tank temperature, accuracy
±2℃;
The cooling system is used to maintain the low temperature
stability of the solution (such as tin-lead process).
3. Environmental protection treatment device: Acid mist collection
tower and wastewater reuse system, exhaust gas purification
efficiency ≥95%, to achieve standard emission.
6. Key parameters and design features
Operation efficiency: cycle time 1-5 minutes/station, single-line
daily production capacity 500-2000 pieces;
Applicable substrates: ABS, PC, PP and other engineering plastics,
coating thickness deviation ≤5%;
Modular design: support process expansion and multi-variety mixed
line production (such as imitation gold electroplating);
Safety protection: integrated leakage protection, emergency stop
button and multiple mechanical limit.
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.

|