DEM Analysis of Single-Particle Crushing Considering the Inhomogeneity of Material Properties

被引:0
作者
Tao Zhang
Wenxiong Huang
机构
[1] Hohai University,College of Mechanics and Materials
来源
Acta Mechanica Solida Sinica | 2022年 / 35卷
关键词
Bonded particle method; Inhomogeneous properties; Size effect; Coordination number; Symmetry; Relative size;
D O I
暂无
中图分类号
学科分类号
摘要
Crushing characteristics of single particles are the basis of granular material simulation with discrete element method (DEM). To improve the universality and precision of crushable DEM model, inhomogeneous stiffness and strength properties are introduced into the bonded particle method, with which the Weibull distribution and size effect of particle strength can be reproduced without deleting elementary balls. The issues of particle strength and carrying capacity under complex contact conditions are investigated in this work by symmetric loading tests, asymmetric loading tests, and ball–ball loading tests. Results of numerical experiments indicate that particle carrying capacity is significantly influenced by coordination numbers, the symmetry of contact points, as well as the relative size of its neighbors. Contact conditions also show impact on single-particle crushing categories and the origin position of inner particle cracks. The existing stress indexes and assumptions of particle crushing criterion are proved to be inappropriate for general loading cases. Both the inherent inhomogeneity and contact conditions of particles should be taken into consideration in the simulation of granular materials.
引用
收藏
页码:26 / 39
页数:13
相关论文
共 135 条
  • [21] Amon A(2013)The contribution of DEM to the science of comminution Powder Technol 5 551-8
  • [22] McDowell GR(1998)Fragmentation of grains in a two-dimensional packing Eur Phys J B 105 190-300
  • [23] Tarantino A(1999)Numerical model of crushing of grains inside two-dimensional granular materials Powder Technol 131 1295-204
  • [24] Hyde AFL(2005)Discrete element method evaluation of granular crushing under direct shear test conditions J Geotech Geoenviron Eng 8 195-90
  • [25] Cil MB(2006)Discrete element method analysis of railtrack ballast degradation during cyclic loading Granular Matter 16 79-67
  • [26] Alshibli KA(2013)Discrete element modelling of one-dimensional compression of cemented sand Granular Matter 84 58-60
  • [27] Karatza Z(2017)DEM investigation of the effect of intermediate principle stress on particle breakage of granular materials Comput Geotech 2 155-28
  • [28] Ando E(2012)Scale effects in rockfill behaviour Géotech Lett 18 1-17
  • [29] Papanicolopulos SA(2015)The bonded-particle model as a tool for rock mechanics research and application: current trends and future directions Geosyst Eng 127 1101-89
  • [30] Viggiani G(2021)Analysis of one-dimensional compression under a wide range of stress with densely arrayed BPM Comput Model Eng Sci 5 175-312