Villarruel F X, Lauderdale B E, Mueth D M, Jaeger H M
The James Franck Institute and Department of Physics, The University of Chicago, 5640 South Ellis Avenue, Chicago, Illinois 60637, USA.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Jun;61(6 Pt B):6914-21. doi: 10.1103/physreve.61.6914.
We report on experiments to measure the temporal and spatial evolution of packing arrangements of anisotropic, cylindrical granular material, using high-resolution capacitive monitoring. In these experiments, the particle configurations start from an initially disordered, low-packing-fraction state and under vertical vibrations evolve to a dense, highly ordered, nematic state in which the long particle axes align with the vertical tube walls. We find that the orientational ordering process is reflected in a characteristic, steep rise in the local packing fraction. At any given height inside the packing, the ordering is initiated at the container walls and proceeds inward. We explore the evolution of the local as well as the height-averaged packing fraction as a function of vibration parameters and compare our results to relaxation experiments conducted on spherically shaped granular materials.
我们报告了一系列实验,通过高分辨率电容监测来测量各向异性圆柱形颗粒材料堆积排列的时空演化。在这些实验中,颗粒构型从初始无序、低堆积分数状态开始,在垂直振动作用下演变为一种致密、高度有序的向列相状态,其中颗粒的长轴与垂直管壁对齐。我们发现,取向有序化过程反映在局部堆积分数的特征性急剧上升上。在堆积内部的任何给定高度处,有序化从容器壁开始并向内推进。我们研究了局部以及高度平均堆积分数随振动参数的演化,并将我们的结果与对球形颗粒材料进行的松弛实验结果进行比较。