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Synchrotron radiographic study and computer simulation of reactions between micropipes in silicon carbide

机译:碳化硅中微管间反应的同步射线照相研究和计算机模拟

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摘要

[[abstract]]By using synchrotron radiation phase sensitive radiography we have examined the reactions of screw superdislocations or micropipes in silicon carbide single crystals: bundling, twisting, and splitting. To understand the nature of these reactions, a model of micropipe motion during crystal growth has been proposed. Based on this model, a computer simulation of the evolution of a random micropipe ensemble has been performed. The simulation demonstrates that the coalescence of micropipes with opposite-sign Burgers vectors may be realized in two ways: (i) their straightforward movement towards each other or (ii) their revolution about one another. Twisted dislocation dipoles arise when two micropipes are under strong influence of the stress fields from dense groups of other micropipes. The transformation of dipoles into semiloops as well as the annihilation of micropipes result in diminishing of their average density
机译:[[摘要]]通过使用同步加速器辐射相敏射线照相技术,我们研究了碳化硅单晶中螺杆超位错或微管的反应:成束,扭曲和分裂。为了理解这些反应的性质,提出了晶体生长过程中微管运动的模型。基于此模型,已经对随机微管集合的演化进行了计算机仿真。该模拟表明,可以通过两种方式实现具有相反符号Burgers向量的微管的合并:(i)它们相互之间的直接运动或(ii)它们彼此之间的公转。当两个微管受到来自其他微管的密集群的应力场的强烈影响时,就会产生扭曲位错偶极子。偶极子转变为半环以及微管的the灭导致其平均密度降低

著录项

  • 作者

    Gutkin, M.Yu.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 [[iso]]en
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