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QP980钢拉伸过程的晶体塑性模拟 被引量:4
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作者 杨浩 汪华苗 李大永 《上海交通大学学报》 EI CAS CSCD 北大核心 2021年第11期1476-1482,共7页
淬火配分QP980钢变形过程中存在马氏体相变,对材料的力学性能产生明显影响.通过电子背散射衍射方法表征了QP980钢变形前后的微观组织,基于马氏体相变晶体学唯象理论建立了考虑相变的弹-黏塑性自洽多晶体塑性模型,模拟了QP980钢在单向拉... 淬火配分QP980钢变形过程中存在马氏体相变,对材料的力学性能产生明显影响.通过电子背散射衍射方法表征了QP980钢变形前后的微观组织,基于马氏体相变晶体学唯象理论建立了考虑相变的弹-黏塑性自洽多晶体塑性模型,模拟了QP980钢在单向拉伸过程中的宏观流动应力和织构演化.材料初始包含铁素体(F)、马氏体和残余奥氏体(RA),各相均为轧制织构,变形后残余奥氏体含量明显减少,残余奥氏体的〈111〉丝织构、铁素体和马氏体的〈110〉丝织构在拉伸方向有明显增强.相变提高了材料的强度和加工硬化率,但对各相的织构演化影响很小.根据计算变形过程中应变和应力的分配情况,铁素体和回火马氏体对变形起主要作用,变形过程中新生马氏体的应力最大,成为断裂的潜在萌生点. 展开更多
关键词 淬火配分钢 晶体塑性 马氏体相变 弹-黏塑性自洽
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Microscopic and mesoscopic deformation behaviors of dual-phase Mg-Li-Gd alloys 被引量:1
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作者 Jing Li Li Jin +3 位作者 Fulin Wang Chuhao Liu Huamiao Wang Jie Dong 《Journal of Materials Science & Technology》 CSCD 2024年第27期1-15,共15页
The Mg-Li dual-phase alloys, comprised of hexagonal (HCP) and body-centered cubic (BCC) phases, exhibit a better combination of strength and ductility than Mg single-phase alloys. In this work, the deformation behavio... The Mg-Li dual-phase alloys, comprised of hexagonal (HCP) and body-centered cubic (BCC) phases, exhibit a better combination of strength and ductility than Mg single-phase alloys. In this work, the deformation behaviors of Mg-6Li-2Gd and Mg-2Gd alloys, representatives of dual-phase and single-phase alloys, have been studied at both microscale and mesoscale to elucidate the underlying mechanisms. Nanoindentation results show that the α-Mg phase in the Mg-6Li-2Gd alloy is harder than the β-Li phase. The intergranular deformation incompatibility, which arises from the elastic-plastic interactions, different strain accommodation behaviors, and strain hardening behaviors between the hard α-Mg phase and the soft β-Li phase, leads to pronounced hetero-deformation induced (HDI) stress of the Mg-6Li-2Gd alloy. The HDI stress strengthens the two phases simultaneously, so that the yield strength of the dual-phase Mg-6Li-2Gd alloy is higher than the Mg-2Gd alloy as well as the harder α-Mg phase in the Mg-6Li-2Gd alloy. Due to the decreased strength difference between the two phases caused by the HDI stress strengthening, the dual-phase alloy exhibits homogeneous plasticity at the mesoscale, which benefits the elongation of the Mg-6Li-2Gd alloy. The HDI strengthening magnitude in the Mg-6Li-2Gd alloy is further quantified. Based on the equal strain upper bound and equal stress lower bound approximations, the yield strength improved by the HDI stress is estimated to be 18–37 MPa, which is in the same range as the elastic visco-plastic self-consistent (EVPSC) simulation results. As the tensile strain is larger than ∼3 %, the HDI strengthening magnitude for the Mg-6Li-2Gd alloy reaches 50–65 MPa, accounting for 35 % of the corresponding flow stress. 展开更多
关键词 Mg-Li-Gd dual-phase alloy HDI stress Yield strength ELONGATION evpsc simulation
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