Structural signature and contact force distributions in the simulated three-dimensional sphere packs subjected to uniaxial compression

被引:0
|
作者
LIU LianFeng1
2 School of Science
机构
关键词
packing; contact force distribution; discrete element method; particles; boundary effect;
D O I
暂无
中图分类号
O313 [动力学];
学科分类号
摘要
Packing of spherical particles in a three-dimensional cylindrical container is simulated by using Discrete Element Method.The packed bed of spheres is also subjected to vertical compression which results in a dense compact.Microstructures of the packing during compaction are examined in detail in terms of the contact number,deviator fabric,and radial distribution function.Furthermore,contact force distributions are measured at different locations in the pack,i.e.the centre,the side wall,and the base(or bottom wall) of the container.The simulations show that random close packing(RCP) tends to exist in the centre of the pack,while ordered packing structures exist near the container’s walls.The uniaxial compression doesn’t seem to alter the packing structure in the pack centre remarkably,but to reduce the structural anisotropy of the packing close to the container’s base.The simulated results have also helped to establish the correlations between packing structures and contact force distributions.Further,it is shown that small contact force distributions are sensitive to local packing structures.The simulated results are shown to be consistent with the recent experimental and simulation findings.
引用
收藏
页码:892 / 904
页数:13
相关论文
共 50 条
  • [21] Theoretical and Numerical Study on Three-Dimensional Internal Crack Specimen Under Uniaxial Compression
    Zhang, Zhitao
    Yu, Shuyang
    Yang, Enbin
    GEOTECHNICAL AND GEOLOGICAL ENGINEERING, 2020, 38 (04) : 4059 - 4072
  • [22] Grain breakage under uniaxial compression using a three-dimensional discrete element method
    Nader, Francois
    Silvani, Claire
    Djeran-Maigre, Irini
    GRANULAR MATTER, 2017, 19 (03)
  • [23] Theoretical and Numerical Study on Three-Dimensional Internal Crack Specimen Under Uniaxial Compression
    Zhitao Zhang
    Shuyang Yu
    Enbin Yang
    Geotechnical and Geological Engineering, 2020, 38 : 4059 - 4072
  • [24] Robust contact force estimation for robot manipulators in three-dimensional space
    Jung, J.
    Lee, J.
    Huh, K.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2006, 220 (09) : 1317 - 1327
  • [25] The establishment of the normal contact force model for a one-dimensional sphere chain subjected to impact load
    Liu, Jun
    Zhao, Futian
    Xiao, Zhimin
    Wang, Yue
    Liu, Zheng
    Zheng, Haowen
    INTERNATIONAL JOURNAL OF MECHANICAL SYSTEM DYNAMICS, 2022, 2 (01): : 131 - 142
  • [26] Semi-contact measurements of three-dimensional surfaces utilizing a resonant uniaxial microprobe
    Goj, Boris
    Dressler, Lothar
    Hoffmann, Martin
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2014, 25 (06)
  • [27] Sim-to-Real for High-Resolution Optical Tactile Sensing: From Images to Three-Dimensional Contact Force Distributions
    Sferrazza, Carmelo
    D'Andrea, Raffaello
    SOFT ROBOTICS, 2022, 9 (05) : 926 - 937
  • [28] Stochastic three-dimensional modeling and the mechanical behavior of vesicular amygdaloidal basalts under uniaxial compression
    Zhou Hui-ying
    Li Shu-chen
    Wang Man-ling
    Yuan Chao
    Zhang Jun-ting
    Feng Jian-peng
    ROCK AND SOIL MECHANICS, 2024, 45 (04) : 1214 - 1232
  • [29] Three-Dimensional Analysis of Crack Driving Force in Simulated Weld Residual Stress Fields
    Dewees, Dave
    Osage, David A.
    Prueter, Philip E.
    Dodds, Robert H., Jr.
    TRENDS IN WELDING RESEARCH: PROCEEDINGS OF THE 9TH INTERNATIONAL CONFERENCE, 2013, : 479 - 488
  • [30] Force distributions in three-dimensional granular assemblies: Effects of packing order and interparticle friction
    Blair, DL
    Mueggenburg, NW
    Marshall, AH
    Jaeger, HM
    Nagel, SR
    PHYSICAL REVIEW E, 2001, 63 (04): : 413041 - 413048