The effect of rolling and subsequent aging on microstructures and tensile properties of a Fe–Mn–Al–C austenitic steel

Zhuang Li, Yingchun Wang*, Xingwang Cheng, Zongyuan Li, Chong Gao, Shukui Li

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摘要

The influence of rolling and subsequent aging on the microstructures and tensile properties of an austenitic Fe–23.38Mn–6.86Al–1.43C–0.038Nb–0.29Mo steel was systematically investigated. After hot rolling, the average grain size decreases; the microstructures are heterogeneous due to coarse grains surrounded by fine grains together with the formation of three-types of sub-micron particles along the grain boundaries. Additionally, nanosized κ-carbides consist of large ones mainly located in the vicinity of tangled dislocations and ultra-fine ones evenly distributed in the matrix. Consequently, the strength is significantly increased after rolling. With increasing the rolling reduction from 20% to 60%, the strength gradually increases but ductility decreases primarily due to an increased dislocation density. Meanwhile, the size and number of the relatively large κ-carbides are reduced and the distribution of κ-carbides is gradually homogenized, which affect the strain hardening rate. After subsequent aging at 550 °C, intra-granular κ-carbides are coarsened, leading to an increase in the strength and a decrease in the ductility. The well balance between the κ-carbides precipitation and the dislocation recovery contributes to the optimized tensile properties after rolling at a reduction of 40% and subsequent aging at 450 °C.

源语言英语
文章编号141683
期刊Materials Science and Engineering: A
822
DOI
出版状态已出版 - 3 8月 2021

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引用此

Li, Z., Wang, Y., Cheng, X., Li, Z., Gao, C., & Li, S. (2021). The effect of rolling and subsequent aging on microstructures and tensile properties of a Fe–Mn–Al–C austenitic steel. Materials Science and Engineering: A, 822, 文章 141683. https://doi.org/10.1016/j.msea.2021.141683