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Multi-scale crystal plasticity finite element simulations of the microstructural evolution and formation mechanism of adiabatic shear bands in dual-phase Ti20C alloy under complex dynamic loading 被引量:3
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作者 Yu Zhou Qunbo Fan +3 位作者 Xin Liu Duoduo Wang Xinjie Zhu Kai Chen 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第24期138-148,共11页
A dynamic compression test was performed on α+β dual-phase titanium alloy Ti20C using a split Hopkinson pressure bar.The formation of adiabatic shear bands generated during the compression process was studied by com... A dynamic compression test was performed on α+β dual-phase titanium alloy Ti20C using a split Hopkinson pressure bar.The formation of adiabatic shear bands generated during the compression process was studied by combining the proposed multi-scale crystal plasticity finite element method with experimental measurements.The complex local micro region load was progressively extracted from the simulation results of a macro model and applied to an established three-dimensional multi-grain microstructure model.Subsequently,the evolution histories of the grain shape,size,and orientation inside the adiabatic shear band were quantitatively simulated.The results corresponded closely to the experimental results obtained via transmission electron microscopy and precession electron diffraction.Furthermore,by calculating the grain rotation and temperature rise inside the adiabatic shear band,the microstructural softening and thermal softening effects of typical heavily-deformed α grains were successfully decoupled.The results revealed that the microstructural softening stress was triggered and then stabilized(in general)at a relatively high value.This indicated that the mechanical strength was lowered mainly by the grain orientation evolution or dynamic recrystallization occurring during early plastic deformation.Subsequently,thermal softening increased linearly and became the main softening mechanism.Noticeably,in the final stage,the thermal softening stress accounted for 78.4% of the total softening stress due to the sharp temperature increase,which inevitably leads to the stress collapse and potential failure of the alloy. 展开更多
关键词 Titanium alloy Adiabatic shear band Multi-scale crystal plastic finite element method(cpfem) Orientation evolution Softening mechanism
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双相钛合金高温变形协调性的CPFEM研究 被引量:5
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作者 李学雄 徐东生 杨锐 《金属学报》 SCIE EI CAS CSCD 北大核心 2019年第7期928-938,共11页
基于率相关滑移为主的晶体塑性本构模型,结合Voronoi方法创建双相多晶体集合,研究不同组织特征的Ti-6Al-4 V合金的高温变形行为,重点关注双相组织中应力、应变空间分布特征及其演化,应力、应变相间分配,并提出一种变形协调性定量评估方... 基于率相关滑移为主的晶体塑性本构模型,结合Voronoi方法创建双相多晶体集合,研究不同组织特征的Ti-6Al-4 V合金的高温变形行为,重点关注双相组织中应力、应变空间分布特征及其演化,应力、应变相间分配,并提出一种变形协调性定量评估方法。结果表明,多晶变形过程中,晶界及其附近是变形的优先响应区域;β晶粒与a晶粒之间存在包围结构特征可加剧局域应变的差异分配;晶粒长短轴比越大,周围异相界面越多,则其局域变形协调性越低。α和β相应力频率统计呈双峰形态,α相中平均应变较高,而β相中应力较高。随α相体积分数增加,拉伸屈服强度和应力协调系数降低,而应变协调系数先降低后升高。随α基面织构体积分数增加,拉伸屈服强度和加工硬化率升高,且应力协调系数升高,而应变协调系数先降低后升高。 展开更多
关键词 双相钛合金 VORONOI 晶体塑性有限元法 应力应变分配 变形协调性
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