PVD Coating Systems | Industrial coating for metals, semiconductors | - Coating Thickness: Base 0.1-2 µm | Advanced 0.1-5 µm ▲ (ISO 3452-1) - Substrate: Base Steel | Advanced Steel/Stainless Steel ▲ (ASTM A370) - Voltage: 380V (IEC 60038) - Warranty: 1 year (ISO 9001) |
CVD Coating Systems | High-temperature applications (e.g., turbine blades) | - Coating Thickness: 1-50 µm (ISO 3452-1) - Substrate Temp: 400-1200°C (ASTM E228) | Thick, dense coatings for extreme wear resistance. Ideal for high-temperature substrates. | High energy costs. Limited to substrates that withstand 400°C+. |
Electroplating Systems | Decorative coatings on conductive metals (e.g., automotive parts) | - Coating Thickness: 0.5-50 µm (ISO 3452-1) - Method: Electrolytic (ASTM B575) | Cost-effective for conductive substrates. Uniform coatings for decorative finishes. | Limited to conductive materials. Environmental regulations restrict toxic plating baths. |
Thermal Spraying | Thick wear-resistant coatings on machinery (e.g., turbine blades) | - Coating Thickness: 50 µm to mm (ISO 2063) - Method: Molten particles (ASTM F1969) | Thick coatings without preheating. Works on non-conductive substrates. | Rough surface finish. Lower adhesion compared to PVD/CVD. |
Dip Coating | Small parts for uniform decorative finishes (e.g., jewelry) | - Coating Thickness: 10-100 µm (ISO 2808) - Method: Immersion (ASTM D3359) | Simple, low-cost process for small batches. | Thickness variability. Limited durability for industrial use. |
Powder Coating | Automotive/appliance parts needing durability (e.g., car rims) | - Coating Thickness: 25-100 µm (ISO 12944) - Cure Temp: 160-200°C (ASTM D3359) | High durability, no VOCs. Thick, uniform layers for corrosion resistance. | Requires curing ovens. Limited to conductive substrates. |