微晶
衍射
材料科学
从头算
各向异性
位错
结晶学
从头算量子化学方法
凝聚态物理
傅里叶变换
X射线晶体学
分子物理学
矿物学
化学
光学
物理
数学
数学分析
复合材料
有机化学
分子
作者
Gábor Ribárik,Tamàs Ungár,Jenő Gubicza
标识
DOI:10.1107/s0021889801011451
摘要
A computer program has been developed for the determination of microstructural parameters from diffraction profiles of materials with cubic or hexagonal crystal lattices. The measured profiles or their Fourier transforms are fitted by ab initio theoretical functions for size and strain broadening. In the calculation of the theoretical functions, it is assumed that the crystallites have log-normal size distribution and that the strain is caused by dislocations. Strain and size anisotropy are taken into account by the dislocation contrast factors and the ellipticity of the crystallites. The fitting procedure provides the median and the variance of the size distribution and the ellipticity of the crystallites, and the density and arrangement of the dislocations. The efficiency of the program is illustrated by examples of severely deformed copper and ball-milled lead sulfide specimens.
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