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- W2022096899 abstract "Slow strain rate tensile tests and scanning electron fractography were used to evaluate the hydrogen embrittlement of three metallic glasses, Ni40Fe40B20,Ni39Fe39Mo4Si6B12 and Ni40Fe6Co20Cr12Mo6B16. The cathodic polarization in 0.1 N H2SO4 of these alloys reduced their fracture strengths and produced brittle fracture. With increasing cathodic current density the fracture stress decreased and reached a plateau value of 20%–40% of the fracture stress in air. Fractography revealed the presence of a translucent film on the ductile fracture surfaces which was probably formed by incipient melting of the shear band during the final fracture stage. A large number of microvoids of various sizes were observed on the hydrogen-embrittled fracture surfaces which may have nucleated because of hydrogen. The present results support the mechanism of ductile fracture proposed by Takayama and Maddin for metallic glasses." @default.
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- W2022096899 date "1983-10-01" @default.
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- W2022096899 title "Hydrogen embrittlement of three metallic glasses" @default.
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- W2022096899 doi "https://doi.org/10.1016/0025-5416(83)90122-2" @default.
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