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首页> 外文期刊>Arabian journal of geosciences >Dynamic behavior of soil and rock mixture using cyclic triaxial tests and X-ray computed tomography
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Dynamic behavior of soil and rock mixture using cyclic triaxial tests and X-ray computed tomography

机译:循环三轴试验和X射线计算断层扫描的土壤和岩石混合物的动态行为

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摘要

This paper aims at investigating the meso-scale mechanisms that result in damage evolution in soil and rock mixtures (SRM). Although the macroscopic cyclic stress-strain response of SRM has been well investigated, the mesoscopic damage cracking mechanisms are still not well understood. In this work, artificial SRM sample with a rock block percentage (RBP) of 30% (mass ratio) was investigated by carrying out cyclic triaxial compression tests with a constant stress amplitude and low strain level, under tomographic monitoring using a 450 kV industrial X-ray computed tomography (CT). A series of 2D CT images were obtained at different loading stages throughout the test and from different positions in the sample using CT scanning. The results show that the hysteresis loop presents a sparse-dense-sparse pattern caused by the accumulation of plastic strain during the test. Besides, parameters of damping ratio and resilient modulus vary as increasing cycles, much energy loss, and decreasing resilient ability occur with large plastic strain. The study also finds that a linear relationship exists between the hysteresis loop area and total crack area extracted from the CT images. Volumetric dilatancy caused by the damage cracking behavior has closed link with the evolution of hysteresis loop, which are controlled by the meso-structural changes during sample deformation.
机译:本文旨在调查导致土壤和岩石混合物(SRM)中损伤演变的中间规模机制。虽然SRM的宏观循环应力 - 应变响应已经很好地研究,但介绍损伤裂解机制仍然不太了解。在这项工作中,通过使用450 kV工业X进行断层监测,通过进行循环三轴压缩试验来研究具有30%(质量比)的人造SRM样品(RBP),以恒定应力幅度和低应变水平进行分断层监测-Ray计算机断层扫描(CT)。在整个测试中在不同的装载阶段获得一系列2D CT图像,并且使用CT扫描在样品中的不同位置。结果表明,滞后回路呈现出在试验期间塑性应变累积引起的稀疏密集稀疏模式。此外,阻尼比和弹性模量的参数随着循环的增加而变化而变化,并且具有大的塑性应变发生了大量的能量损失和降低的弹性能力。该研究还发现,在CT图像中提取的滞后回路区域和总裂缝区域之间存在线性关系。由损伤开裂行为引起的体积膨胀具有与滞后回路的演变的封闭连接,其由样品变形期间的中学结构变化控制。

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