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- W1560659499 abstract "The investigation was based on the Ni--Cr-Al system at 75 at.% Ni. It was found that as the Al content increases, faster cooling rates from above the solution temperature are required to develop maximum room temperature hardness. Room temperature hardness, as well as tensile strength and creep strength at elevated temperatures also increase initially with increasing Al. An exhaustion effect is noted, by which the room temperature hardness of high Al compositions is less sensitive to changes in aging temperature than that of low-Al compositions. Very large particle sizes can be readily developed by slow cooling from above the solution temperature, and an optimummean-free-path between gamma prime particles exists, which results in minimum creep rate. This optimummean- free-path (along with the corresponding particle size for a given volume percent of gamma prime) varies with applied stress. Mn and Ti expand the lattice of the gamma matrix, and manganese reduces the quantity of gamma prime precipitate. (auth)" @default.
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- W1560659499 date "1960-09-01" @default.
- W1560659499 modified "2023-09-23" @default.
- W1560659499 title "The effect of gamma prime particle size upon the high temperature properties of nickel-base alloys" @default.
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