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Steel, Corrosion and Heat Resistant, Sheet, Strip, and Plate, 13Cr - 2.0Ni - 3.0W, Annealed

2019-09-23
WIP
AMS5508G
This specification covers a corrosion and heat resistant steel in the form of sheet, strip, and plate.

These products have been used typically for parts, such as shrouds, ducts, and cases, requiring oxidation resistance up to 1000 degrees F (538 degrees C), but usage is not limited to such applications. Creep strength and resistance to tempering of this steel are better than those of the common 13Cr type.

Standard

Steel, Corrosion and Heat-Resistant, Sheet, Strip and Plate, 18Cr - 13Ni - 2.5Mo (SAE 30316), Solution Heat Treated

2019-09-23
WIP
AMS5524M
This specification covers a corrosion and heat resistant steel in the form of sheet, strip, and plate. These products have been used typically for parts requiring both corrosion and heat resistance up to 1600 °F (871 °C), but usage is not limited to such applications. At elevated temperatures, strength of this steel is slightly higher than, and oxidation resistance is similar to that of 18-8 type steels.
Standard

Steel, Corrosion and Heat-Resistant, Sheet, Strip and Plate, 18Cr - 10.5Ni - 0.40Ti (SAE 30321) Solution Heat Treated

2019-09-23
WIP
AMS5510T
This specification covers a corrosion and heat-resistant steel in the form of sheet, strip, and plate. These products have been used typically for parts requiring both corrosion and heat resistance, especially when such parts require welding during fabrication and for parts requiring oxidation resistance up to 1500 °F (816 °C) but useful at that temperature only when stresses are low, but usage is not limited to such applications.
Standard

Steel, Corrosion Resistant, Sheet and Strip 18Cr - 8Ni Cold Rolled, 150 Ksi (1034 MPa) Tensile Strength

2019-09-23
WIP
AMS5518N
This specification covers a corrosion-resistant steel in the form of sheet and strip. These products have been used typically for parts requiring strength and moderate forming or bending, but usage is not limited to such applications. Mechanical properties specified herein are obtained by cold working (strain hardening) and not by heat treatment. Therefore, the cold-worked product should not be heated to a temperature which adversely affects the mechanical properties or corrosion resistance before, during, or after fabrication.
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