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Analysis on the mechanical behaviors of soil-rock mixtures using Discrete Element Method

机译:不同元素法的土岩混合物机械行为分析

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Two-dimensional numerical direct shear tests were carried out using the Discrete Element Method (DEM) to study the effects of rock content on the mechanical behaviors of soil-rock mixtures (SRM).The mixtures were made from particles of contrasting size and stiffness. The DEM simulation captured the behaviors of SRM as observed in previous experiments, showing that the peak shear stress and the dilation increased with an increasing rock content. Moreover, it also found that the peak friction angle and dilation angle increased while cohesion decreased with an increasing rock content. On the other hand, the DEM provided insight to the distribution of contact force chains, the magnitude and orientation of the principal stresses, and the rotation of particles experience as the shearing progressed which could not be revealed in the physical experiments. The results indicated that the rock content also had a meaningful effect on these micromechanical observations. At last, how the rock content influenced the shear strength of SRM was discussed according to Taylor's theory. It was concluded that the shear strength of SRM increased for higher rock content mainly because of the contribution of the interlocking, while the contribution of the contact friction was demonstrated to be very small.
机译:使用离散元素法(DEM)进行二维数值直接剪切测试,以研究岩石含量对土岩混合物(SRM)的机械行为的影响。混合物由对比度尺寸和刚度的颗粒制成。 DEM仿真捕获了在先前实验中观察到的SRM的行为,表明峰值剪切应力和扩张随着岩石含量的增加而增加。此外,它还发现峰值摩擦角和扩张角度随着岩石含量的增加而降低而增加。另一方面,DEM为接触力链的分布提供了深入的接触力链,主应力的幅度和取向,以及颗粒体验的旋转,因为在物理实验中无法揭示。结果表明,岩石含量对这些微机械观测也有意义。最后,根据泰勒的理论讨论了岩石内容如何影响SRM剪切强度。得出结论是,SRM的剪切强度增加对于更高的岩石含量,主要是因为互锁的贡献,而接触摩擦的贡献被证明是非常小的。

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