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首页> 外文期刊>International Journal of Geosynthetics and Ground Engineering >Direct Shear Behavior of a Mixture of Sand and Tire Chips Using X-ray Computed Tomography and Discrete Element Method
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Direct Shear Behavior of a Mixture of Sand and Tire Chips Using X-ray Computed Tomography and Discrete Element Method

机译:X射线计算机断层摄影和离散元方法对沙土和轮胎碎片混合物的直接剪切行为

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摘要

Granular materials such as soils, powders, and other particulate materials have been widely used in geotechnical engineering. In particular, sandy soils are one of the representative ones. Recently, there has been attention on environment-friendly materials such as tire chips or other waste materials. Besides, one of the key behaviors for these materials is shear behavior, including the effect of dilatancy. In this paper, direct shear behavior of sands as rigid particles and tire chips as elastic particles is discussed. Here, micro-focus-type X-ray-computed tomography (CT) scanner is used with direct shear tests to investigate the close behavior in granular materials. To discuss the results of CT scanning quantitatively, a digital image correlation method is used and then, the distribution of the displacements in the shear box, shear strain, and volumetric strain are measured using CT data. In addition, a series of numerical analysis using discrete element method (DEM), which is often used for granular materials, is carried out for the same cases as direct shear test to validate the CT results. Finally, based on the comparative discussion between test results with CT scanning and DEM results, the direct shear behavior of different granular materials is precisely investigated for the first time using X-ray CT. The use of tire chips mixed with sand decreases the dilatant behavior under shear stress, and the peaks in shear stress are no longer observed. In addition, tire chips seem to prevent shear bands to propagate in the material.
机译:诸如土壤,粉末和其他颗粒材料之类的颗粒材料已广泛用于岩土工程中。特别是沙质土壤是代表性的土壤之一。近来,已经关注诸如轮胎碎片或其他废料的环保材料。此外,这些材料的关键行为之一是剪切行为,包括膨胀效应。本文讨论了作为刚性颗粒的沙子和作为弹性颗粒的轮胎碎片的直接剪切行为。在这里,微焦距型X射线计算机断层扫描(CT)扫描仪与直接剪切试验一起使用,以研究颗粒材料中的紧密行为。为了定量讨论CT扫描的结果,使用了数字图像相关方法,然后使用CT数据测量了剪切盒中的位移,剪切应变和体积应变的分布。另外,在与直接剪切试验相同的情况下,对颗粒材料经常使用离散元素方法(DEM)进行了一系列数值分析,以验证CT结果。最后,基于CT扫描测试结果与DEM结果的比较讨论,首次使用X射线CT精确研究了不同颗粒材料的直接剪切行为。轮胎碎屑与沙子混合使用会降低剪切应力下的膨胀性能,并且不再观察到剪切应力的峰值。另外,轮胎碎片似乎阻止了剪切带在材料中传播。

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