SAE AMS 2487A-2000
(R)pH最大值为12.4的钛和钛合金溶液的阳极处理[代替SAE ARP 1932A,SAE ARP 1932,SAE ARP 1932]

(R) Anodic Treatment of Titanium and Titanium Alloys Solution pH 12.4 Maximum [Superseded: SAE ARP 1932A, SAE ARP 1932, SAE ARP 1932]


SAE AMS 2487A-2000 发布历史

This specification describes the engineering requirements for producing an electrically-insulating, non-powdery anodic coating on titanium and titanium alloys and the properties of such coatings. This process has been used typically to increase resistance to galvanic and high temperature corrosion and voltage breakdown and to form a receptive base for the application of lubricants and paints on titanium and titanium alloys, but usage is not limited to such applications.

SAE AMS 2487A-2000由美国机动车工程师协会 US-SAE 发布于 2000-03-01。

SAE AMS 2487A-2000 在中国标准分类中归属于: V11 航空与航天用金属铸锻材料,在国际标准分类中归属于: 49.040 有关航空航天制造用镀涂和有关工艺。

SAE AMS 2487A-2000的历代版本如下:

  • 2000年03月01日 SAE AMS 2487A-2000 (R)pH最大值为12.4的钛和钛合金溶液的阳极处理[代替SAE ARP 1932A,SAE ARP 1932,SAE ARP 1932]

 

 

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标准号
SAE AMS 2487A-2000
发布日期
2000年03月01日
实施日期
废止日期
中国标准分类号
V11
国际标准分类号
49.040
发布单位
US-SAE
引用标准
ASTM B 117-1997 ASTM B 244-1997 ASTM D 257-1999 ASTM D 2714-1994 SAE AMS 3084 SAE AMS 4001 SAE AMS 4911 SAE AMS 4928N-1993 SAE MAM 4911 FED-STD-141 MIL-L-46010 MIL-PRF-81329
被代替标准
SAE AMS 2487-1993
适用范围
This specification describes the engineering requirements for producing an electrically-insulating, non-powdery anodic coating on titanium and titanium alloys and the properties of such coatings. This process has been used typically to increase resistance to galvanic and high temperature corrosion and voltage breakdown and to form a receptive base for the application of lubricants and paints on titanium and titanium alloys, but usage is not limited to such applications.




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