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SAE AMS4892

Alloy Castings, Corrosion and Heat-Resistant 66Ni - 29Cu - 4.0Si As Cast

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Organization: SAE
Publication Date: 1 September 2017
Status: active
Page Count: 6
scope:

Form

This specification covers a nickel-copper alloy in the form of castings.

Application

These castings have been used typically for parts requiring resistance to wear and galling under light-to-medium loads against dissimilar materials of higher hardness, and retention of hot hardness up to 1000 °F (538 °C), but usage is not limited to such applications.

Document History

SAE AMS4892
September 1, 2017
Alloy Castings, Corrosion and Heat-Resistant 66Ni - 29Cu - 4.0Si As Cast
Form This specification covers a nickel-copper alloy in the form of castings. Application These castings have been used typically for parts requiring resistance to wear and galling under...
September 1, 2006
Alloy Castings, Corrosion and Heat-Resistant 66Ni - 29Cu - 4.0Si As Cast
Form This specification covers a nickel-copper alloy in the form of castings. Application These castings have been used typically for parts requiring resistance to wear and galling under...
September 1, 2006
Alloy Castings, Corrosion and Heat Resistant 66Ni - 29Cu - 4.0Si as Cast
Form This specification covers a nickel-copper alloy in the form of castings. Application These castings have been used typically for parts requiring resistance to wear and galling under...
January 1, 1999
Alloy Castings, Corrosion and Heat Resistant 66Ni - 29Cu - 4.0Si as Cast
SCOPE: Form: This specification covers a nickel-copper alloy in the form of castings. Application: These castings have been used typically for parts requiring resistance to wear and galling under...
July 1, 1985
Alloy Castings, Sand and Centrifugal, Corrosion and Heat Resistant 66Ni - 29Cu - 4.0Si as Cast
A description is not available for this item.
January 15, 1959
ALLOY CASTINGS, SAND AND CENTRIFUGAL, CORROSION AND HEAT RESISTANT Nickel Base - 29.5Cu - 4Si As Cast
APPLICATION: Primarily for parts requiring resistance to wear and galling under light to medium loads against dissimilar materials of higher hardness, and retention of hot hardness up to 1000 F.

References

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