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Geometric anisotropy modeling and shear behavior evaluation of graded crushed rocks

机译:梯度碎石的几何各向异性建模与剪切特性评估

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摘要

To reveal the meso-mechanical mechanism of shear behaviors in the graded crushed rocks (GCRs), which are heterogeneous in geometry and widely used in the flexible pavement, a numerical technique was proposed to simulate the geometric anisotropy of the GCRs using randomly generated models. Then, studies on meso-mechanical responses during the loading were performed through the biaxial shear test and California bearing ratio (CBR) test. The results showed that the changes of both friction and anisotropy had a similar trend with the particle size enlarging in the dense assembly, which maintain stable when the size is less than 3.0 mm. In addition, the breaking sieve (BS) between coarse and fine aggregates was six times of the base diameter (0.8 mm). The predicted shear properties in macrostructure were in good agreement with those laboratory measurements. For the shear behaviors, the fractures and force chains were mainly distributed in the area of action that was limited by force size and side boundary. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了揭示几何形状不均且在柔性路面中广泛使用的梯度碎石(GCR)剪切行为的细观力学机制,提出了一种数值技术,使用随机生成的模型来模拟GCR的几何各向异性。然后,通过双轴剪切试验和加利福尼亚承载比(CBR)试验对加载过程中的细观力学响应进行了研究。结果表明,在致密组件中,摩擦系数和各向异性的变化具有相似的趋势,即粒径增大,当粒径小于3.0 mm时保持稳定。另外,粗骨料和细骨料之间的破碎筛(BS)是基径(0.8 mm)的六倍。宏观结构中预测的剪切性能与实验室测量值非常吻合。对于剪切行为,断裂和力链主要分布在受力大小和侧边界限制的作用区域。 (C)2018 Elsevier Ltd.保留所有权利。

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