ASTM B875-1996
用于固体渗金属处理的铝扩散镀层的标准规范

Standard Specification for Aluminum Diffusion Coating Applied by Pack Cementation Process


ASTM B875-1996 发布历史

1.1 This specification covers the requirements for aluminum diffusion of metals by the pack cementation method. Pack diffusion employs the chemical vapor deposition of a metal which is subsequently diffused into the surface of a substrate at high temperature. The material to be coated (substrate) is immersed or suspended in a powder containing aluminum (source), a halide salt (activator), and an inert diluent such as alumina (filler). When the mixture is heated, the activator reacts to produce an atmosphere of aluminum halides which transfers aluminum to the substrate for subsequent diffusion. The aluminum-rich surface enhances corrosion, thermal stability, and wear-resistant properties.

1.2 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

ASTM B875-1996由美国材料与试验协会 US-ASTM 发布于 1996。

ASTM B875-1996 在中国标准分类中归属于: A29 材料防护。

ASTM B875-1996的历代版本如下:

  • 1996年 ASTM B875-1996 用于固体渗金属处理的铝扩散镀层的标准规范
  • 1996年 ASTM B875-1996(2003) 使用粘固处理渗铝涂层标准规范
  • 1996年 ASTM B875-1996(2008) 用于固体渗金属处理的铝扩散镀层的标准规范
  • 1996年 ASTM B875-1996(2013) 用于固体渗金属处理的铝扩散镀层的标准规格
  • 1996年06月10日 ASTM B875-96 通过包装胶结工艺应用的铝扩散涂层的标准规范
  • 2003年09月10日 ASTM B875-96(2003) 通过包装胶结工艺应用的铝扩散涂层的标准规范
  • 2008年08月01日 ASTM B875-96(2008) 通过包装胶结工艺应用的铝扩散涂层的标准规范
  • 2013年12月01日 ASTM B875-96(2013) 通过包装胶结工艺应用的铝扩散涂层的标准规范
  • 2018年06月01日 ASTM B875-96(2018) 通过包装胶结工艺应用的铝扩散涂层的标准规范

 

 

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标准号
ASTM B875-1996
发布日期
1996年
实施日期
废止日期
中国标准分类号
A29
国际标准分类号
25.220.40 (Metallic coatings)
发布单位
US-ASTM
适用范围

1.1 This specification covers the requirements for aluminum diffusion of metals by the pack cementation method. Pack diffusion employs the chemical vapor deposition of a metal which is subsequently diffused into the surface of a substrate at high temperature. The material to be coated (substrate) is immersed or suspended in a powder containing aluminum (source), a halide salt (activator), and an inert diluent such as alumina (filler). When the mixture is heated, the activator reacts to produce an atmosphere of aluminum halides which transfers aluminum to the substrate for subsequent diffusion. The aluminum-rich surface enhances corrosion, thermal stability, and wear-resistant properties.

1.2 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.





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