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- W3197482361 abstract "The focus of this study is to analyze hydrogen embrittlement susceptibility of a modified AISI 4130 steel by means of incremental step loading tests. Three different microstructures with a hardness of 40 HRC were analyzed: martensite with large and small prior austenite grains and dual-phase (martensite/ferrite). According to the results, the dual-phase microstructure presented the lowest hydrogen embrittlement susceptibility and martensite with large prior austenite grains, the highest. This behavior was attributed to the lower fraction of high-angle boundaries presented by the martensite with large prior austenite grains, which led to a higher diffusible hydrogen content. Moreover, the ferrite local deformation in the dual-phase microstructure enhanced its hydrogen embrittlement resistance by lowering the stress concentration. A synergic effect of decohesion and localized plasticity was identified on the hydrogen induced fracture of the tested microstructures leading to an intergranular + quasi-cleavage fracture in the martensite and quasi-cleavage in the dual-phase microstructure." @default.
- W3197482361 created "2021-09-13" @default.
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- W3197482361 date "2021-10-01" @default.
- W3197482361 modified "2023-10-14" @default.
- W3197482361 title "Effect of specific microstructures on hydrogen embrittlement susceptibility of a modified AISI 4130 steel" @default.
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- W3197482361 doi "https://doi.org/10.1016/j.ijhydene.2021.08.147" @default.
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