tetragonal zro2
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Author(s):  
Xuefeng Liu ◽  
Quan Zhang ◽  
Jianmin Liu ◽  
Tao Wang ◽  
Yanqiao Xu ◽  
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2020 ◽  
Vol 495 ◽  
pp. 111141
Author(s):  
Huahua Zhao ◽  
Huanling Song ◽  
Fangyuan Wang ◽  
Zhichao Miao ◽  
Lingjun Chou

2020 ◽  
pp. 121872
Author(s):  
Sangaraju Sambasivam ◽  
Chandu V.V. Muralee Gopi ◽  
Pardha Saradhi Maram ◽  
Hammad Mueen Arbi ◽  
Venkatesha Narayanaswamy ◽  
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2020 ◽  
Vol 128 (13) ◽  
pp. 135101
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Y. R. Than ◽  
M. R. Wenman ◽  
R. W. Grimes

2020 ◽  
pp. 156766
Author(s):  
Jianhui Song ◽  
He Zhang ◽  
Zongyu Feng ◽  
Jianxing Zhang ◽  
Fang Chen ◽  
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2020 ◽  
Vol 53 (4) ◽  
pp. 1060-1072 ◽  
Author(s):  
Edward L. Pang ◽  
Peter M. Larsen ◽  
Christopher A. Schuh

Resolving pseudosymmetry has long presented a challenge for electron backscatter diffraction and has been notoriously challenging in the case of tetragonal ZrO2 in particular. In this work, a method is proposed to resolve pseudosymmetry by building upon the dictionary indexing method and augmenting it with the application of global optimization to fit accurate pattern centers, clustering of the Hough-indexed orientations to focus the dictionary in orientation space and interpolation to improve the accuracy of the indexed solution. The proposed method is demonstrated to resolve pseudosymmetry with 100% accuracy in simulated patterns of tetragonal ZrO2, even with high degrees of binning and noise. The method is then used to index an experimental data set, which confirms its ability to efficiently and accurately resolve pseudosymmetry in these materials. The present method can be applied to resolve pseudosymmetry in a wide range of materials, possibly even some more challenging than tetragonal ZrO2. Source code for this implementation is available online.


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