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Characterization of the crystal structure kinematics stresses and rotations in angular granular quartz during compaction

机译:压实过程中角粒石英晶体的晶体结构运动学应力和旋转的表征

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摘要

Three-dimensional X-ray diffraction (3DXRD), a method for quantifying the position, orientation and elastic strain of large ensembles of single crystals, has recently emerged as an important tool for studying the mechanical response of granular materials during compaction. Applications have demonstrated the utility of 3DXRD and X-ray computed tomography (XRCT) for assessing strains, particle stresses and orientations, inter-particle contacts and forces, particle fracture mechanics, and porosity evolution in situ. Although past studies employing 3DXRD and XRCT have elucidated the mechanics of spherical particle packings and angular particle packings with a small number of particles, there has been limited effort to date in studying angular particle packings with a large number of particles and in comparing the mechanics of these packings with those composed of a large number of spherical particles. Therefore, the focus of the present paper is on the mechanics of several hundred angular particles during compaction using in situ 3DXRD to study the crystal structure, kinematics, stresses and rotations of angular quartz grains. Comparisons are also made between the compaction response of angular grains and that of spherical grains, and stress-induced twinning within individual grains is discussed.
机译:三维X射线衍射(3DXRD)是一种用于量化大块单晶的位置,取向和弹性应变的方法,最近已成为研究压实过程中粒状材料力学响应的重要工具。应用程序已经证明了3DXRD和X射线计算机断层扫描(XRCT)在评估应变,颗粒应力和方向,颗粒间接触和作用力,颗粒断裂力学以及原位孔隙演化方面的实用性。尽管过去使用3DXRD和XRCT进行的研究已经阐明了球形颗粒堆积和具有少量颗粒的角形颗粒堆积的力学,但迄今为止,在研究具有大量颗粒的角形颗粒堆积和比较球形颗粒堆积的力学方面所做的努力有限。这些填充物由大量球形颗粒组成。因此,本文的重点是使用原位3DXRD压实数百个角质颗粒的力学,以研究角质石英晶粒的晶体结构,运动学,应力和旋转。还比较了角粒和球形粒的压实响应,并讨论了单个晶粒内的应力诱导孪生。

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