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Localised deformation in a wide-grained sand under triaxial compression revealed by X-ray tomography and digital image correlation

机译:通过X射线断层摄影和数字图像相关显示三轴压缩下的宽粒度砂的局部变形

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摘要

Understanding the mechanisms of deformation and failure of soils is essential in geotechnical engineering. In particular, strain localisation is a key issue for the failure of soils. In laboratory mechanical testing, localised deformation can be investigated efficiently through full-field measurements of displacement and strain in soil specimens. The objective of this study is to investigate the deformation and the failure of a soil under triaxial compression using in situ X-ray (i.e., X-ray scanning during the loading test) computed tomography (CT) and digital image correlation (DIC). This paper is concerned with the characterisation of internal strains and with strain localisation patterning in wide-grained sand undergoing triaxial compression at different confinement pressures using Three Dimensional (3D) volumetric DIC. Complete 3D images of specimens have been recorded at several stages throughout the triaxial tests and analysed using 3D Volumetric DIC in order to obtain 3D incremental displacement and strain fields. Based on the results of the combined X-ray tomography and DIC, the deformation process and especially the strain localisation are quantitatively characterised in space and time under different triaxial compression conditions. (C) 2015 The Japanese Geotechnical Society. Production and hosting by Elsevier Boy. All rights reserved.
机译:在土力工程中,了解土壤变形和破坏的机制至关重要。特别地,应变局部化是土壤破坏的关键问题。在实验室机械测试中,可以通过全场测量土壤样本中的位移和应变来有效地研究局部变形。这项研究的目的是利用X射线计算机断层扫描(CT)和数字图像相关技术(DIC)研究三轴压缩下土壤的变形和破坏。本文涉及三维应变(3D)体积DIC的内部应变特性和在三轴压缩条件下经受三轴压缩的宽粒度砂土中的应变局部化模式。在整个三轴测试的多个阶段中,已记录了标本的完整3D图像,并使用3D体积DIC进行了分析,以获得3D增量位移和应变场。基于X射线断层扫描和DIC结合的结果,在不同的三轴压缩条件下,在空间和时间上定量地描述了变形过程,尤其是应变局部化。 (C)2015年日本岩土学会。由Elsevier Boy制作和托管。版权所有。

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