论文标题
六型颗粒的剪切柱中的屈服,刚度和拉伸应力
Yielding, Rigidity, and Tensile Stress in Sheared Columns of Hexapod Granules
论文作者
论文摘要
非凸或细长颗粒的颗粒包装可以形成墙壁或拱形等独立结构。对于某些粒子形状,例如钉书钉,刚性是由颗粒对的互锁而产生的,但是非锁定颗粒的刚性起源仍不清楚。我们报告了“六脚架”的剪切柱的实验和数值模拟,这些粒子由三个相互正交的螺旋圆柱固定器组成,它们的中心重合。我们改变了直径至直径的长宽比,$α$的sphor-linders,并将包装填充到准直接剪切中。对于小$α$,我们观察到有限的屈服应力。但是,对于大$α$,剪切时圆柱变得刚性,支撑应力随着应变的增加而急剧增加。分析剪切过程中收集的X射线微型分层扫描(微CT)数据表明,僵硬与名义剪切平面附近的倾斜,扁平的六花群簇有关,其中颗粒变形和平均接触数都增加。仿真结果表明,即使颗粒不相互锁定,这些粒子也沿一个方向集体张力。这些紧张局势来自带有大扭矩的接触力,它们垂直于包装中的压缩应力。它们抵消了扩张的趋势,从而稳定了粒子簇。
Granular packings of non-convex or elongated particles can form free-standing structures like walls or arches. For some particle shapes, such as staples, the rigidity arises from interlocking of pairs of particles, but the origins of rigidity for non-interlocking particles remains unclear. We report on experiments and numerical simulations of sheared columns of "hexapods," particles consisting of three mutually orthogonal sphero-cylinders whose centers coincide. We vary the length-to-diameter aspect ratio, $α$, of the sphero-cylinders and subject the packings to quasistatic direct shear. For small $α$, we observe a finite yield stress. For large $α$, however, the column becomes rigid when sheared, supporting stresses that increase sharply with increasing strain. Analysis of X-ray micro-computed tomography (Micro-CT) data collected during the shear reveals that the stiffening is associated with a tilted, oblate cluster of hexapods near the nominal shear plane in which particle deformation and average contact number both increase. Simulation results show that the particles are collectively under tension along one direction even though they do not interlock pairwise. These tensions comes from contact forces carrying large torques, and they are perpendicular to the compressive stresses in the packing. They counteract the tendency to dilate, thus stabilize the particle cluster.