包辛格效应
合金
可塑性
材料科学
晶界
变形机理
高熵合金
应变率
冶金
复合材料
微观结构
作者
Hoang-Giang Nguyen,Te‐Hua Fang,Dinh-Quan Doan
标识
DOI:10.1016/j.jallcom.2023.168838
摘要
High entropy alloys (HEAs) are newer siblings of multi-component metallic compound alloys with high tensile strength and ductility. The impact of temperature and strain rates under cyclic plasticity of AlCrCuFeNi HEA are investigated using molecular dynamics (MD) simulations. The modeling results show that interactions between partial dislocations in AlCrCuFeNi HEA during cycle deformation cause various lattice disorders. The impact of Bauschinger in the HEA is minimized by lattice disorder, which prevents dislocations from moving in reverse. Temperature, strain rates, and the twin boundary significantly impact Bauschinger's effect, which influences the plasticity cycle of AlCrCuFeNi. Furthermore, the effect of temperature, strain rates, and grain boundaries on lattice disorder is disclosed. The current study provides new insights into the mechanical property of AlCrCuFeNi HEA subjected to cyclic plasticity and deformation mechanism with atomic size.
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