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- W3206697039 abstract "The effect of the Ni/Cu ratio on hydrogen embrittlement (HE) behavior is studied in the context of the Cu–Ni binary alloy system. When classifying HE sensitivity as a function of the Ni fraction, two regimes are obtained: Regime 1 (wherein Ni fraction is less than 80 wt%) with moderate HE and Regime 2 (where Ni fraction exceeds 80 wt%) with more severe HE, although hydrogen- (H-)induced intergranular (IG) cracking is noted to be the common primary cause of H-induced degradation. Necessities of H-transportation towards grain boundaries (GBs) via H–dislocation interaction and/or dynamic H-diffusion are discussed via the slow strain rate tensile tests at −196 °C. Specifically, in Regime 1, H-transportation is necessary for the triggering of IG cracking. Conversely, in Regime 2, such H-transportation plays a minor role and the initially concentrated hydrogen along GBs can sorely cause IG cracking. • Hydrogen embrittlement (HE) behavior of seven Cu–Ni binary alloys were investigated. • Intergranular cracking was the common, key process for HE in all embrittled alloys. • HE tendency can be categorized into two regimes depending on Ni fraction. • Regime 1: HE was relatively mild and H-supply via dislocation activity was mandatory. • Regime 2: HE became more severe even without H-dislocation interactions." @default.
- W3206697039 created "2021-10-25" @default.
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- W3206697039 date "2021-11-01" @default.
- W3206697039 modified "2023-09-24" @default.
- W3206697039 title "The effect of the Ni/Cu ratio on H-induced ductility loss and its mechanism in Cu–Ni binary alloy system" @default.
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- W3206697039 doi "https://doi.org/10.1016/j.ijhydene.2021.09.140" @default.
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