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Corrosion-resistant alloy processing heat treatment process, read the contents of this article to understand
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Corrosion-resistant alloy processing heat treatment process, read the contents of this article to understand

  • Categories:Industry news
  • Author:
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  • Time of issue:2020-11-30 16:56
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(Summary description)Resistant alloy processing heat treatment process, in industrial development, resistant to he alloy as a commonly used material a, because of its corrosion resistance he and stability performance is good

Corrosion-resistant alloy processing heat treatment process, read the contents of this article to understand

Resistant alloy processing heat treatment process, in industrial development, resistant to he alloy as a commonly used material a, because of its corrosion resistance he and stability performance is good

  • Categories:Industry news
  • Author:
  • Origin:
  • Time of issue:2020-11-30 16:56
  • Views:

Resistant alloy processing heat treatment process, in industrial development, resistant to he alloy as a commonly used material a, because of its corrosion resistance he and stability performance is good, is widely used in the oil chemical industry, marine, aviation and other fields, resistant to the unique alloy heat treatment processing is more common, the material moderate processing can get better performance.

Corrosion resistant alloy processing methods.
Cutting: Select the appropriate cutting parameters, such as cutting speed and feed, can reduce the cutting force, improve cutting efficiency Grinding: Need to choose the appropriate grinding wheel material and particle size, in order to prevent clogging of the grinding wheel and keep the sharpness of the grinding wheel.
Welding: corrosion-resistant alloys are usually used tungsten electrode heavy-duty welding (TIG) or chemical polar arc welding MIG) for welding. Before welding should be removed from the surface of the workpiece oil and oxide film to ensure welding quality. Corrosion-resistant alloy heat treatment methods.
Solid solution treatment: the corrosion resistant alloy is heated to the single-phase region, and then cooled rapidly, so that the alloying elements are fully solidified in the matrix. Solid solution treatment can improve the strength and solubility of corrosion resistant alloys. Ageing treatment: the solid solution treatment of the corrosion resistant alloy is heated to the low temperature zone, so that the alloying elements precipitated from the matrix to form a reinforced phase. Aging treatment can improve the hardness and corrosion resistance of corrosion resistant alloys. Stabilization treatment: By heating the corrosion-resistant alloy to the high temperature zone, the carbon in the matrix reacts with the alloying elements to form stable carbides to reduce the possibility of intergranular corrosion. Stabilization treatment can improve the corrosion resistance of corrosion resistant alloys.

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