材料科学
高熵合金
粒度
格子(音乐)
原子堆积因子
失真(音乐)
固溶体
热力学
冶金
微观结构
结晶学
化学
物理
光电子学
放大器
CMOS芯片
声学
作者
Zhipeng Wang,Qihong Fang,Jia Li,Bin Liu,Yong Liu
标识
DOI:10.1016/j.jmst.2017.07.013
摘要
Abstract An analytical model is established to study the influence of lattice distortion and fraction of Hf on the yield strength of the BCC TiNbTaZrHf x multi-component high entropy alloys (HEAs). Meanwhile, the mechanism of solid solution strengthening caused by lattice distortion is also discussed in the HEA. The distorted unit cell is introduced to indicate the lattice distortion effects induced by the differences of the atomic size and shear modulus by doping other elements in Ti-based metal. The results show that the calculated values of the alloying yield strength considering the path of least resistance are obtained with regard to various grain sizes for the equiatomic TiNbTaZrHf HEA, which is well in line with the experimental results. Furthermore, it is predicted that the alloying yield strength is the largest value in the case of the same grain size for the Hf atomic fraction of 0.122. The meaningful modeling could provide a theoretical method to investigate the yield strength and alloying design of other BCC HEAs in the future.
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