论文标题

微卷作为颗粒介质的上坡流动

Microrollers Flow Uphill as Granular Media

论文作者

Wilson-Whitford, Samuel R., Gao, Jinghui, Roffin, Maria Chiara, Buckley, William E., Gilchrist, James F.

论文摘要

将沙子倒入容器中,仅在顶部表面移动附近的谷物。通过多体相互作用,将与晶粒的转化和旋转能量相关的集体运动很快被散开。或者,如果将扭矩施加到每个粒子上,请考虑颗粒床会发生什么。在本文中,我们演示了一个实验系统,其中扭矩通过密集的微卷床中的旋转磁场在组成液水平上施加。最终结果是谷物上坡滚动,形成了一个负相位角度的堆。已经确定了与粒子中颗粒的迁移率或流动性有关的两个不同的机制。近表面流动层的速度法以与流动的散装颗粒流相似的方式揭示了这些响应颗粒尺度的集体运动。一个简单的颗粒模型(包括内聚力)准确地预测了摩擦的明显负系数。与模仿热力学原理的主动或响应颗粒的响应相反,该系统导致宏观集体行为具有纯粹耗散颗粒系统的运动学。

Pour sand into a container and only the grains near the top surface move. The collective motion associated with the translational and rotational energy of the grains in a thin flowing layer is quickly dissipated as friction through multibody interactions. Alternatively, consider what will happen to a bed of particles if one applies a torque to each individual particle. In this paper, we demonstrate an experimental system where torque is applied at the constituent level through a rotating magnetic field in a dense bed of microrollers. The net result is the grains roll uphill, forming a heap with a negative angle of repose. Two different regimes have been identified related to the degree of mobility or fluidization of the particles in the bulk. Velocimetry of the near surface flowing layer reveals the collective motion of these responsive particles scales in a similar way to flowing bulk granular flows. A simple granular model that includes cohesion accurately predicts the apparent negative coefficient of friction. In contrast to the response of active or responsive particles that mimic thermodynamic principles, this system results in macroscopic collective behavior that has the kinematics of a purely dissipative granular system.

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