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Interaction of a transonic dislocation with subsonic dislocation and point defect clusters

机译:跨音速位错与亚音速位错和点缺陷簇的相互作用

摘要

The moving speeds of all observed dislocations in crystals are subsonic. There has been a view in the literature that the speed of subsonic dislocations can not be accelerated above the speed of sound because the energy required would be infinitely large. Recent molecular dynamics (MD) simulation had shown that it is possible to generate dislocations with an initial moving speed higher than the velocity of sound in solids. This raises a question: what will happen when a supersonic dislocation meets other defects along its moving path? This work reports the results of MD simulation on the interaction of a transonic dislocation with other subsonic dislocations as well as with point defect clusters. The results show that a vacancy cluster such as a void has an insignificant slow-down effect on the transonic dislocation, while a subsonic dislocation slows down the transonic dislocation to subsonic one. In some cases, the subsonic dislocation (or a subsonic part of a transonic dislocation) can overcome the traditional sound barrier.
机译:晶体中所有观察到的位错的移动速度均为亚音速。在文献中已经有观点认为,亚音速位错的速度不能被加速到高于声速,因为所需的能量将是无限大的。最近的分子动力学(MD)模拟表明,可以产生位错,其初始移动速度高于固体中的声速。这就提出了一个问题:当超音速位错沿其移动路径遇到其他缺陷时,将会发生什么?这项工作报告了关于跨音速位错与其他亚音速位错以及点缺陷簇相互作用的MD模拟结果。结果表明,空位簇如空隙对跨音速位错的减慢作用不明显,而亚音速位错减慢了跨音速位错至亚音速的位错。在某些情况下,亚音速错位(或跨音速错位的亚音速部分)可以克服传统的声障。

著录项

  • 作者

    Shi SQ; Huang H; Woo CH;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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