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- W2024741011 abstract "Hydrogen (H) embrittlement in austenitic stainless steels is restricted to the surface due to the low diffusion coefficient of H in face-centred cubic (fcc) structures. Depth-sensing indentation is a very important tool to investigate the mechanical properties of hydrogenated steels at near-surface regions. In the present work, the effect of glow discharge nitriding on the mechanical properties of steels submitted to cathodic hydrogenation was analyzed by instrumented indentation. Cracks are present at the surface after outgassing in the untreated sample. Hardness and elastic modulus are related to the nitriding process and charging time. Hardness of nitrided samples is higher at the near surface region. However, after hydrogenation, the hardness still increases, mainly due to the presence of martensitic phases. In nitrided samples, hydrogen and methane bubbles can be formed after hydrogenation, probably due to high hydrogen concentration under the nitrided layer. Load versus displacement curves in the ni..." @default.
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- W2024741011 date "2006-11-21" @default.
- W2024741011 modified "2023-09-27" @default.
- W2024741011 title "Effect of hydrogen on mechanical properties of nitrided austenitic steels" @default.
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- W2024741011 doi "https://doi.org/10.1080/14786430600589097" @default.
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