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- W1963778421 abstract "Hydrogen embrittlement of Ni3Fe alloys is investigated at room temperature as a function of testing atmosphere (vacuum, air and H2 gas), strain rate, and atomic order by the tensile test. It is shown that Ni3Fe alloys are embrittled neither in air nor in vacuum, but are severely embrittled in H2 gas. This embrittlement occurs only in the flly ordered condition, accompanied by intergranular fracture. It is suggested that embrittlement observed in the fully ordered structure is due to a less accommodated grain boundary structure, leading to the feature that hydrogen atoms can occupy the sites on the grain boundaries of a Ni3Fe alloy, which thereby results in reduced grain boundary cohesion. Also, it is suggested that embrittlement in H2 gas is due to the chemical nature of the two (or either of two) transition metals comprising this alloy that play a catalytic in role promoting decomposition of molecular hydrogen (H2), which then results in penetration of atomic hydrogen into the material." @default.
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- W1963778421 date "1994-01-01" @default.
- W1963778421 modified "2023-10-17" @default.
- W1963778421 title "The influence of constituent elements and atomic ordering on hydrogen embrittlement of Ni3Fe polycrystals" @default.
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- W1963778421 doi "https://doi.org/10.1016/0966-9795(94)90062-0" @default.
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