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- W2345381024 abstract "Abstract The impact of bainite transformation during initial quenching and partitioning steps on the microstructural evolution was studied in a Fe-0.4C-2.0Mn-1.7Si-0.4Cr (wt%) steel. By optimizing quenching cooling rate and partitioning time, the final microstructure comprised of initial-quenched bainite, carbon-depleted martensite, bainite formed during partitioning, and final-quenched martensite, together with retained austenite. High volume fraction of retained austenite with desired carbon-content was obtained by prolonging the partitioning time to 2700 s The initial-quenched bainite, bainite formed during partitioning, and martensite provided carbon atoms to austenite, leading to the formation of retained austenite with different degree of stability. Consequently, a good combination of strength and elongation (ultimate tensile strength: 1688 MPa, total elongation: 25.2%) was obtained." @default.
- W2345381024 created "2016-06-24" @default.
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- W2345381024 date "2016-06-01" @default.
- W2345381024 modified "2023-10-01" @default.
- W2345381024 title "Structure-property relation in a quenched-partitioned low alloy steel involving bainite transformation" @default.
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- W2345381024 doi "https://doi.org/10.1016/j.msea.2016.05.004" @default.
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