材料科学
电子背散射衍射
分离式霍普金森压力棒
合金
变形(气象学)
应变率
可塑性
本构方程
钛合金
复合材料
位错
冶金
动载荷
压缩(物理)
钛
动态范围压缩
微观结构
结构工程
工程类
有限元法
作者
Chi Yan,Chu Wang,Miaoxia He,Yuecheng Dong,Igor V. Alexandrov,Hui Chang
出处
期刊:Crystals
[Multidisciplinary Digital Publishing Institute]
日期:2022-11-07
卷期号:12 (11): 1584-1584
被引量:3
标识
DOI:10.3390/cryst12111584
摘要
In this study, the dynamic compression properties of a new high-strength (>1000 MPa) and ductile (>15%) near-α titanium Ti-6Al-1Mo-2Zr-0.55Fe-0.1B alloy were investigated at high strain rates of 1620 s−1~2820 s−1 by a split Hopkinson pressure bar (SHPB). The microstructural evolution of the samples before and after the dynamic deformation was analyzed by electron backscatter diffraction (EBSD). The results indicated that the strength of the alloy enhanced significantly under the dynamic loading compared with the quasi-static compression and increased with the increase in the strain rate. An abundance of deformation twins released the dislocation pile-up and coordinated the plastic deformation of alloy during the dynamic loading. The dynamic plasticity constitutive equation of the alloy was obtained by fitting high strain rate experimental data at room temperature by the Johnson–Cook constitutive equation with the modified temperature term.
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