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作 者:Ye Liu Shuran Chu Hui Guo Mengyao Kong Chenxi Liu Jingwen Zhang Ran Ding Yongchang Liu
机构地区:[1]State Key Lab of Hydraulic Engineering Simulation and Safety,School of Materials Science&Engineering,Tianjin University,Tianjin,300350,China [2]School of Mechanical and Electrical Engineering,Guangdong University of Science and Technology,Dongguan,523083,China
出 处:《Acta Metallurgica Sinica(English Letters)》2025年第1期139-150,共12页金属学报(英文版)
基 金:National Key R&D Program of China(Grant Nos.2022YFE0110800 and 2022YFB3705300);the National Natural Science Foundation of China(Grant Nos.52104380 and 52171123)for grant and financial support.
摘 要:As a representative of the third generation advanced high-strength steels(AHSSs),medium Mn steels(MMS)have broad development prospects in the field of automobile manufacturing.MMS with typical austenite reversion treatment have a soft duplex microstructure,i.e.ferrite+austenite,presenting a high ductility but a low yield strength.Here we show that a flash heating and cooling after austenite reversion treatment can replace the ferrite with strong martensite,which greatly enhances the yield strength of a 0.25C-4Mn steel by about 461–886 MPa.By adjusting the reversion temperature before the flash treatment,the C and Mn concentrations of reverted austenite can be altered,which determine the fraction of reverted austenite surviving the flash treatment.In addition,the mechanical stability of final retained austenite is also linked to the reversion temperature,resulting different work hardening behaviors due to transformation induced plasticity(TRIP)effect.By tweaking the reversion temperature before the flash treatment,an optimized combination of strength and ductility can be achieved.The micromechanical differences caused by the replacement of the matrix are also investigated via in-situ digital image correlation method.
关 键 词:Medium Mn steel Retained austenite Flash treatment Transformation induced plasticity(TRIP)effect Mechanical properties
分 类 号:TG1[金属学及工艺—金属学]
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