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利用弱束暗场图像中的厚度条纹确定CaIrO(3)变形钙钛矿和后钙钛矿中的柏氏矢量。

Burgers vector determination in deformed perovskite and post-perovskite of CaIrO(3) using thickness fringes in weak-beam dark-field images.

作者信息

Miyajima Nobuyoshi, Walte Nicolas

机构信息

Bayerisches Geointitut, Universität Bayreuth, Bayreuth D-95440, Germany.

出版信息

Ultramicroscopy. 2009 May;109(6):683-92. doi: 10.1016/j.ultramic.2009.01.010. Epub 2009 Feb 1.

Abstract

The thickness-fringe method [Ishida et al., Philosophical Magazine 42 (1980) 453] for complete determination of the character of a dislocation Burgers vector has been performed in CaIrO(3) perovskite and post-perovskite deformed at high pressures and high temperatures. By selecting several main zone axes and determining the number of terminating thickness fringes at the extremity of a dislocation from a wedge-shaped thin-foil specimen in weak-beam dark-field transmission electron microscope (TEM) images, the Burgers vectors were unambiguously determined. The results demonstrate that [100] screw and edge dislocations on the (010) slip plane are dominant in the post-perovskite phase. Curved [100] and [010] dislocations and straight 110 screw dislocations on a potential (001) slip plane were identified in the perovskite phase as well as a high density of {110} twins. Low-angle tilt boundaries consisting of different groups of parallel edge dislocations on the {110} and (001) planes indicate diffusion-assisted climb in perovskite at high temperatures. The differences in dislocation microstructures could be due to activations of limited numbers of slip systems for post-perovskite and of a large number of multiple slip systems for perovskite, which may result in the strong crystallographic preferred orientation (CPO) in post-perovskite and the lack of CPO in deformed perovskite.

摘要

采用厚度条纹法[石田等人,《哲学杂志》42 (1980) 453]在高压和高温下变形的钙钛矿CaIrO₃和后钙钛矿中,完整测定位错柏氏矢量的特征。通过选择几个主要晶带轴,并在弱束暗场透射电子显微镜(TEM)图像中从楔形薄箔试样的位错末端确定终止厚度条纹的数量,明确确定了柏氏矢量。结果表明,在(010)滑移面上的[100]螺型和刃型位错在后钙钛矿相中占主导地位。在钙钛矿相中也识别出了潜在(001)滑移面上的弯曲[100]和[010]位错以及直的110螺型位错,以及高密度的{110}孪晶。由{110}和(001)面上不同组平行刃型位错组成的低角度倾斜边界表明钙钛矿在高温下存在扩散辅助攀移。位错微观结构的差异可能是由于后钙钛矿中有限数量滑移系的激活以及钙钛矿中大量多滑移系的激活,这可能导致后钙钛矿中强烈的晶体学择优取向(CPO)以及变形钙钛矿中CPO的缺乏。

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