层错能
材料科学
堆积
叠加断层
变形(气象学)
分子动力学
产量(工程)
能量(信号处理)
航程(航空)
断层(地质)
凝聚态物理
复合材料
位错
计算化学
地震学
化学
地质学
物理
统计
核磁共振
数学
作者
Valery Borovikov,Mikhail I. Mendelev,Alexander H. King,R. LeSar
标识
DOI:10.1088/0965-0393/23/5/055003
摘要
Starting from a semi-empirical potential designed for Cu, we developed a series of potentials that provide essentially constant values of all significant (calculated) materials properties except for the intrinsic stacking fault energy, which varies over a range that encompasses the lowest and highest values observed in nature. These potentials were employed in molecular dynamics (MD) simulations to investigate how stacking fault energy affects the mechanical behavior of nanotwinned face-centered cubic (fcc) materials. The results indicate that properties such as yield strength and microstructural stability do not vary systematically with stacking fault energy, but rather fall into two distinct regimes corresponding to low and high stacking fault energies.
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