SAE AMS 5853B-2000
可耗电极熔化1800°F(982℃)溶液热处理和加工强度为160 ksi(1103 MPa)拉伸强度的耐腐蚀和耐热钢棒材和线材15Cr 25.5Ni 1.2Mo 2.1Ti 0.006B 0.30V

Steel, Corrosion and Heat Resistant, Bars and Wire 15Cr 25.5Ni 1.2Mo 2.1Ti 0.006B 0.30V, Consumable Electrode Melted 1800°F (982°C) Solution Treated and Work-Strengthened 160 ksi (1103 MPa) Tensile Strength


SAE AMS 5853B-2000 发布历史

This specification covers a corrosion and heat resistant steel in the form of work-strengthened bars and wire 1-1/4 inches (31.8 mm) and under in nominal diameter or least distance between parallel sides. These bars and wire have been used typically for parts, such as fasteners, requiring room- temperature minimum tensile strength of 160 ksi (1103 MPa) after precipitation heat treatment for use up to 1000 degrees F (538 degrees C) and having oxidation resistance up to 1200 degrees F (649 degrees C), but usage is not limited to such applications.

SAE AMS 5853B-2000由美国机动车工程师协会 US-SAE 发布于 2000-10-01。

SAE AMS 5853B-2000 在中国标准分类中归属于: H40 钢铁产品综合,在国际标准分类中归属于: 49.025.10 钢。

SAE AMS 5853B-2000的历代版本如下:

  • 2000年10月01日 SAE AMS 5853B-2000 可耗电极熔化1800°F(982℃)溶液热处理和加工强度为160 ksi(1103 MPa)拉伸强度的耐腐蚀和耐热钢棒材和线材15Cr 25.5Ni 1.2Mo 2.1Ti 0.006B 0.30V

SAE AMS 5853B-2000 可耗电极熔化1800°F(982℃)溶液热处理和加工强度为160 ksi(1103 MPa)拉伸强度的耐腐蚀和耐热钢棒材和线材15Cr 25.5Ni 1.2Mo 2.1Ti 0.006B 0.30V 于 2006-06-01 变更为 SAE AMS 5853C-2006 可耗电极熔化1800°F(982℃)溶液热处理和加工强度为160 ksi(1103 MPa)拉伸强度的耐腐蚀和耐热钢棒材和线材15Cr 25.5Ni 1.2Mo 2.1Ti 0.006B 0.30V。

 

 

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标准号
SAE AMS 5853B-2000
发布日期
2000年10月01日
实施日期
废止日期
中国标准分类号
H40
国际标准分类号
49.025.10
发布单位
US-SAE
代替标准
SAE AMS 5853C-2006
适用范围
This specification covers a corrosion and heat resistant steel in the form of work-strengthened bars and wire 1-1/4 inches (31.8 mm) and under in nominal diameter or least distance between parallel sides. These bars and wire have been used typically for parts, such as fasteners, requiring room- temperature minimum tensile strength of 160 ksi (1103 MPa) after precipitation heat treatment for use up to 1000 degrees F (538 degrees C) and having oxidation resistance up to 1200 degrees F (649 degrees C), but usage is not limited to such applications.




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