材料科学
级联
分子动力学
极限抗拉强度
辐照
空位缺陷
不稳定性
打滑(空气动力学)
晶体缺陷
复合材料
拉伤
分子物理学
结晶学
热力学
计算化学
机械
化学
物理
内科学
医学
核物理学
色谱法
作者
Pan-dong Lin,Junfeng Nie,Meidan Liu
标识
DOI:10.1142/s021797922150140x
摘要
The molecular dynamics method is used to investigate the formation and properties of irradiation-induced damage (point defects). Displacement cascade simulations are performed to study the effects of primary knock-on atom (PKA) energy, temperature, vacancy concentration and tensile pre-strain on irradiation-induced damage in [Formula: see text]-Fe. An increase in PKA energy, vacancy concentration and tensile pre-strain can lead to an increase in defect numbers. In contrast, an increase in temperature decreases the defect numbers. After cascade collisions, tensile tests are performed to investigate the effect of point defects on mechanical properties. The yield stress and corresponding strain of irradiated Fe decrease with an increase in the number density of Frenkel pairs. Results show that irradiation accelerates damage of the internal structure, decreases the number of slip bands and increases the instability of the structure during plastic deformation.
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