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How to polish the stainless steel nameplate

Writer:admin Time:2023-07-06 14:24 Browse:

  Polishing refers to a decorative processing method that uses polishing tools such as wax, hemp wheel, nylon wheel, cloth wheel, wind wheel, wire cloth wheel, and abrasive particles or other polishing media to modify the surface of a workpiece, reduce the surface roughness of the workpiece, and obtain a bright and flat surface. This process can further improve the corrosion resistance and brightness effect of stainless steel nameplates.

  1、 Here are seven common polishing methods we use:

  1. Mechanical polishing: By using this technology, Ra0.008 can be achieved μ The surface roughness of m is the highest among various polishing methods.

  2. Chemical polishing: The main advantage of this method is that it does not require complex equipment and can polish workpieces with complex shapes. It can simultaneously polish many workpieces with high efficiency. The surface roughness obtained is generally in the order of 10 μ m. Among them, this is the most commonly used among these 7 types of polishing.

  3 Electropolishing: It can eliminate the impact of cathodic reaction, and has good effect. At the same time, it can increase the corrosion resistance of stainless steel nameplates, improve the accuracy of various measuring tools, beautify metal daily necessities and handicrafts, etc. It is suitable for polishing steel, aluminum, copper, nickel and various alloys.

  4. Ultrasonic polishing: Ultrasonic processing has low macroscopic force and will not cause deformation of the workpiece

  5 Fluid polishing: abrasive jet machining, liquid jet machining, Fluid power grinding, etc

  6. Magnetic abrasive polishing: This method has high processing efficiency, good quality, easy control of processing conditions, and good working conditions. The surface roughness can reach Ra0.1 μ M

  7. Chemical mechanical polishing: It can achieve surface roughness at the nanometer to atomic level. And the polished mirror effect has high brightness, no faults, and good flatness


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