Considerations of the double-cross-slip mechanism for basal and rhombohedral twinning in sapphire (α-Al2O3)

A. He, K. Lagerlöf, J. Castaing, A. Heuer
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引用次数: 6

Abstract

Abstract Several different dislocation models have been proposed to explain basal and rhombohedral twinning in sapphire (α-Al2O3). To provide evidence for these models, sapphire samples deformed under hydrostatic confining pressures and containing both basal and rhombohedral twins were characterized using conventional transmission eletron microscopy (TEM) techniques. We found that perfect prism dislocations with a [1010] Burgers vector had dissociated into three ⅓[1010] partials in such a way that these dislocations acted as twinning partials for a basal twin and that all three partials lay in the twin boundary. For the case of rhombohedral twinning, a twin was found which had one flat boundary and one boundary that showed wavy curvature. These TEM observations are only consistent with the type of double-cross-slip twinning mechanism first proposed by Pirouz for silicon.
蓝宝石(α-Al2O3)基孪晶和菱形孪晶双交叉滑移机制的思考
摘要:为了解释蓝宝石(α-Al2O3)中的基面孪晶和菱形孪晶,人们提出了几种不同的位错模型。为了为这些模型提供证据,我们使用传统的透射电子显微镜(TEM)技术对在静水围压下变形的蓝宝石样品进行了表征,这些样品中含有基底孪晶和菱形孪晶。我们发现,具有[1010]Burgers矢量的完美棱镜位错已经分解成三个1 / 3[1010]部分,这样这些位错就像基孪晶的孪晶部分一样,并且所有三个部分都位于孪晶边界。在菱形孪晶的情况下,我们发现了一个孪晶的边界是平坦的,另一个边界是波浪状的。这些TEM观察结果只与Pirouz首次提出的硅的双交叉滑移孪晶机制相一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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