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- W3141158043 abstract "Manganese, carbon, and hydrogen are common alloying elements in austenitic Mn steels, which all influence the stacking fault energy (SFE), with Mn and H decreasing while C increasing it. The combined effects of Mn, C, and H on the SFE in austenitic Fe 1− x Mn x alloys, including pure Fe, Fe 31 Mn, Fe 15 Mn, Fe 7 Mn, and Fe 3 Mn, using first‐principles calculations, are investigated. The enhancing effect of C on the SFE is 29 mJ m −2 lower in Fe 3 Mn than in pure Fe, whereas it remains largely unchanged for low Mn concentrations. The noticeable combined Mn−C effect for Fe 3 Mn is mainly due to the formation of Mn−C−Mn trimer. Similarly, the boosting effect of H is weakened with increasing Mn content. As for the ternary Mn−C−H effect, it is found that it is generally stronger than that of binary effects. All the binary and ternary effects are much smaller than those of individual elements, indicating weak multiatom interactions of Mn, C, and H." @default.
- W3141158043 created "2021-04-13" @default.
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- W3141158043 date "2021-04-16" @default.
- W3141158043 modified "2023-10-15" @default.
- W3141158043 title "Combined Effects of Mn, C, and H on the Stacking Fault Energy in Austenitic Mn Steels" @default.
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- W3141158043 doi "https://doi.org/10.1002/srin.202000550" @default.
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