4.7 Article

Enhanced mechanical properties of a Fe-Mn-Al-C austenitic low-density steel by increasing hot-rolling reduction

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MATERIALS CHARACTERIZATION
卷 204, 期 -, 页码 -

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.matchar.2023.113237

关键词

Fe-Mn-Al-C; Low-density steel; Hot rolling; Grain refinement; Dislocation strengthening; Slip band; Microband; Strain-hardening behavior

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The microstructure evolution and mechanical properties of a Fe-Mn-Al-C austenitic low-density steel were studied at different hot-rolling reductions. It was found that increasing the hot-rolling reduction resulted in a uniform grain refinement and an increase in dislocation density. This led to enhancements in yield strength and ultimate tensile strength, while only causing a slight decrease in ductility and toughness. The research suggests that increasing the hot-rolling reduction is an effective approach to enhance the overall mechanical properties of the low-density steel with a fully austenitic microstructure.
The microstructure evolution and mechanical properties of a Fe-Mn-Al-C austenitic low-density steel at different hot-rolling reductions have been investigated. It was found that with the increase in hot-rolling reduction from 45% to 82%, the grain size was uniformly refined and the dislocation density was continuously increased. As a result, both yield strength and ultimate tensile strength were effectively enhanced while the ductility and toughness only slightly decreased. An excellent combination of yield strength, ultimate tensile strength, total elongation, and toughness of 648 MPa, 976 MPa, 50%, and 105 J/m2, respectively, was obtained. The yield strength increment was interpreted by the stronger grain boundary strengthening and dislocation strengthening, and the minor loss of ductility and toughness was arising from the faster saturation of the slip band refinement (slip band spacing reached-50 nm) and an earlier occurrence of microbands due to the finer grain size. Based on this research, it is proposed that increasing the hot-rolling reduction was an effective approach to enhance the overall mechanical properties of the low-density steel with a fully austenitic microstructure.

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