Structure of Electroplating Electric Heating Pipe Control Coating
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Structure of Electroplating Electric Heating Pipe Control Coating
For highly decorative products, it can maintain the appearance and be more durable, so high-energy pulsed coating can be used to effectively use plasma to control the structure of the coating. Its biggest feature is that it can be deposited on smooth and dense microstructures. , to improve corrosion resistance and surface finish; or it can be deposited on complex geometric workpieces to achieve a more uniform coating.
High-energy pulsed plasma magnetron sputtering technology for electroplating electric heating tubes
High-energy pulsed plasma magnetron sputtering technology can surpass traditional magnetron sputtering methods and produce thick ion coatings with high quality more than 3μm. Since the high-energy pulse method is beneficial to increase the density of ions, it not only strengthens the bonding force between the coating and the substrate, but also reduces the surface roughness, which can further enhance the wear resistance and reduce the number of replacements on functional parts.
Low-cost production scheme for thick ion plating of electroplated electric heating pipe
High Energy Pulsed Plasma Magnetron Sputtering (HPPMS) is a new type of magnetron sputtering system that combines the two characteristics of "high energy" and "pulse". In the coating process, the power supply plays an important role. Using the "high energy" and "pulse" discharge methods, it can emit a powerful energy of up to 1500V output voltage in a short time of less than 2 microseconds, just like a lightning phenomenon.
Since a large number of ions are released in the process and the internal stress of the coating is eliminated, a thick ion coating can be made without damaging the surface of the product or workpiece. In this way, the ionization rate (IonizationRate) can be increased, that is, the adhesion of the coating on the product surface can be improved.
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