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Shear strength, force distributions and friction mobilization in sheared packings composed of angular particles

机译:剪切强度,力分布和剪切填料中的摩擦动员组成的角粒子组成

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In this paper, we explore the effect of particle shape angularity on the mechanical behavior of sheared granular packings. A first series of contact dynamics simulations is performed in 2D with regular polygons with an increasing number of sides ranging from 3 (triangles) to 60. Then, in order to approach "idealized" angular particles, a second series of simulations is performed in 3D with irregular polyhedra with the number of faces ranging from 8 (octahedron-like) to 596. A counterintuitive finding is that the shear strength increases with angularity up to a maximum value and saturates as the particles become more angular (below 6 sides in 2D and 46 faces in 3D). A micromechanical analysis of force and contact orientations, all enhanced by face-face and face-side contacts, reveals that this increase is due to an increase of both contact and force anisotropies, and the saturation for higher angularities is a consequence of a rapid fall-off of the contact and normal force anisotropies compensated by an increase of the tangential force anisotropy.
机译:在本文中,我们探讨了颗粒形状角度对剪切粒状填料的力学行为的影响。第一系列接触动力模拟是在2D中进行的,其常规多边形具有越来越多的侧面,范围从3(三角形)到60.然后,为了接近“理想化”的角度粒子,在3D中执行第二系列模拟具有不规则的多面体,具有从8(八面体样)到596的面部的面积。逆行发现是,剪切强度随着角度增加而增加,随着颗粒变得更加角度(在2D和2D的6侧低于6侧)时,剪切强度随着最大值而饱和而饱和46面向3D)。通过面部和面部侧接触的力和接触方向的微机械分析,揭示了这种增加的是由于接触和力各向异性增加,并且更高角度的饱和度是快速堕落的结果接触和正常力各向异性的-off补偿了切向力各向异性的增加。

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