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Fizika Tverdogo Tela, 2015 Volume 57, Issue 6, Pages 1149–1157 (Mi ftt11528)

This article is cited in 8 papers

Mechanical properties, strength physics and plasticity

Effect of the milling energy on the anisotropy of deformation distortions in nanocrystalline powders of nonstoichiometric tantalum carbide TaC$_y$

A. I. Gusev, A. S. Kurlov, A. M. Bel’kov, T. D. Bel'kova

Institute of Solid State Chemistry, Urals Branch of the Russian Academy of Sciences, Ekaterinburg

Abstract: The effect of the milling energy and nonstoichiometry of cubic tantalum carbide TaC$_y$ (0.81 $\le y\le$ 0.96) on the strain anisotropy of the crystal and the size of particles in nanocrystalline powders has been experimentally investigated using X-ray diffraction. The functional dependence of the reduced broadening of diffraction reflections on the scattering vector, which takes into account the contributions of the size, strain, and inhomogeneous broadenings, has been obtained. The average size of coherent scattering regions and the crystallite microstrain accounting for the anisotropy of deformation distortions have been estimated. It has been shown that a more precise description of the experimental data on the broadening of diffraction reflections is achieved by the inclusion of the microstrain anisotropy and inhomogeneous broadening in the analysis.

Received: 27.11.2014


 English version:
Physics of the Solid State, 2015, 57:6, 1166–1176

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