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Influence of particle size and gradation on shear strength dilation relation of granular materials

机译:粒度对粒状剪切强度扩张关系的影响

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Upon close scrutiny of data reported in the literature, taking into account particle-scale characteristics to optimize the precision of the well-known empirical Bolton's equations and imposing particle-size limits on them is recommended. The present paper examines the potential influence of particle size and grading on the shear strength-dilation relation of granular materials from the results of 276 symmetrical direct shear tests. The applicability of physical symmetrical direct shear tests to interpret the plane strain frictional shearing resistance of granular materials has been widely discussed using the discrete element method (DEM) computer code SiGran. Sixteen different grain-size distribution curves of three different materials were tested at different normal pressures and initial relative densities. It is demonstrated that while the contribution of dilatancy to shear strength is not influenced by the variation in the coefficient of uniformity,C-u, in the investigated range, it significantly decreases with increasing mean particle size, D-50. The coefficients of Bolton's equations have been, therefore, adjusted to account for D-50. A comparison of the predictions by the proposed empirical formulas with plane strain friction angle,phi(ps), and dilation angle,psi, data from the literature shows that accounting for the grain size yields more accurate results.
机译:在文献中报告的数据紧密审查后,考虑到粒子规模特征来优化众所周知的经验博尔顿方程的精度,并建议施加粒度限制。本文研究了粒度和分级对276个对称直接剪切试验结果的颗粒尺寸和分级对粒状材料的剪切强度扩张关系的潜在影响。物理对称直接剪切试验的适用性解释粒状材料的平面应变摩擦剪切电阻已广泛使用离散元素方法(DEM)计算机代码SIGran广泛讨论。在不同的正常压力和初始相对密度下测试三种不同材料的粒度尺寸分布曲线。据证明,虽然抗胁迫对剪切强度的贡献没有受到均匀系数的变化的影响,但在调查范围内,随着平均粒度D-50的增加,它显着降低。因此,博尔顿方程的系数调整为占D-50。所提出的经验公式的预测与平面应变摩擦角,PHI(PS)和扩张角,PSI,来自文献的数据的预测表明,谷物尺寸的算法产生更准确的结果。

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