Tensile Properties of Medium Mn Steel with a Bimodal UFG α + γ and Coarse δ-Ferrite Microstructure

被引:0
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作者
Seonjong Lee
Sunmi Shin
Minhyeok Kwon
Kyooyoung Lee
Bruno C. De Cooman
机构
[1] Pohang University of Science and Technology,Graduate Institute of Ferrous Technology
[2] Korea Institute of Industrial Technology,Advanced Manufacturing Process R&D Group
[3] POSCO,Steel Products Research Group, Technical Research Laboratories
关键词
Austenite; Martensite; Dynamic Strain Aging; Intercritical Annealing; Trip Effect;
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中图分类号
学科分类号
摘要
While the tensile strength and elongation obtained for medium Mn steel would appear to make it a candidate material in applications which require formable ultra-high strength materials, many secondary aspects of the microstructure–properties relationships have not yet been given enough attention. In this contribution, the microstructural and tensile properties of medium Mn steel with a bimodal microstructure consisting of an ultra-fine grained ferrite + austenite constituent and coarse-grained delta-ferrite are therefore reviewed in detail. The tensile properties of ultra-fine-grained intercritically annealed medium Mn steel reveal a complex dependence on the intercritical annealing temperature. This dependence is related to the influence of the intercritical annealing temperature on the activation of the plasticity-enhancing mechanisms in the microstructure. The kinetics of deformation twinning and strain-induced transformation in the ultra-fine grained austenite play a prominent role in determining the strain hardening of medium Mn steel. While excellent strength–ductility combinations are obtained when deformation twinning and strain-induced transformation occur gradually and in sequence, large elongations are also observed when strain-induced transformation plasticity is not activated. In addition, the localization of plastic flow is observed to occur in samples after intercritical annealing at intermediate temperatures, suggesting that both strain hardening and strain rate sensitivity are influenced by the properties of the ultra-fine-grained austenite.
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页码:1678 / 1700
页数:22
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