Effect of inter-particle friction on 3D accordance of stress, strain, and fabric in granular materials

被引:0
作者
Wei Zhou
Shuhan Yang
Jiaying Liu
Gang Ma
Tianqi Qi
Mingchun Lin
机构
[1] Wuhan University,State Key Laboratory of Water Resources and Hydropower Engineering Science
[2] Zhejiang University City College,Department of Civil Engineering
[3] Changjiang Engineering Group,undefined
来源
Acta Geotechnica | 2022年 / 17卷
关键词
DEM; Granular materials; Inter-particle friction; Lode angle; Strong and weak sub-network; True triaxial tests;
D O I
暂无
中图分类号
学科分类号
摘要
The inter-particle friction is mainly related to the roughness of particles, which plays an important role in both macroscopic and microscopic mechanical behaviors of granular materials. Under the real three-dimensional (3D) loads, the multiscale effects of inter-particle friction could be more complex. In this study, a series of true triaxial tests are conducted based on discrete element method (DEM). We identify that the inter-particle friction is key to triggering the disaccord of Lode angles between stress tensor and incremental strain tensor (also fabric tensor) on π-plane under 3D non-axisymmetric loading paths. A kind of function form is proposed to describe this disaccord, by incorporating the inter-particle friction coefficient μ and intermediate principal stress ratio b. We further observe that the evolution of strong contact network coincides with the overall stress tensor in the Lode coordinator system, irrespective of μ. The disaccord behaviors of overall contact fabric and the macroscopic stress mainly originate from the weak subset of contacts, and then, the inter-particle friction should play an important role on the rearrangements of weak contact network and finally lead to the disaccord behaviors at the macroscopic scale.
引用
收藏
页码:2735 / 2750
页数:15
相关论文
共 50 条
[41]   A micromechanics-based gradient model and the effect of high-order stress and particle rolling on localizations for granular materials [J].
Chenxi Xiu ;
Xihua Chu .
Granular Matter, 2017, 19
[42]   A micromechanics-based gradient model and the effect of high-order stress and particle rolling on localizations for granular materials [J].
Xiu, Chenxi ;
Chu, Xihua .
GRANULAR MATTER, 2017, 19 (04)
[43]   Cross-validation of 3D particle tracking velocimetry for the study of granular flows down rotating chutes [J].
Shirsath, S. S. ;
Padding, J. T. ;
Clercx, H. J. H. ;
Kuipers, J. A. M. .
CHEMICAL ENGINEERING SCIENCE, 2015, 134 :312-323
[44]   Effects of particle morphology on the shear response of granular soils by discrete element method and 3D printing technology [J].
Ma, Xiongying ;
Lei, Hang ;
Kang, Xin .
INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 2022, 46 (11) :2191-2208
[45]   Macro deformation and micro structure of 3D granular assemblies subjected to rotation of principal stress axes [J].
Li, Xia ;
Yang, Dunshun ;
Yu, Hai-Sui .
GRANULAR MATTER, 2016, 18 (03)
[46]   Macro deformation and micro structure of 3D granular assemblies subjected to rotation of principal stress axes [J].
Xia Li ;
Dunshun Yang ;
Hai-Sui Yu .
Granular Matter, 2016, 18
[47]   Effect of Particle Breakage of Sand Under High Oedometric Stress on its Microstructural Properties Using 3D X-ray Micro-tomography [J].
Messioud, Seyf Eddine ;
Dadda, Abdelali ;
Feia, Sadok ;
Elandaloussi, Radja ;
Mabrouki, Abdelhak .
INDIAN GEOTECHNICAL JOURNAL, 2024, 54 (06) :2379-2395
[48]   3D analysis of kinematic behavior of granular materials in triaxial testing using DEM with flexible membrane boundary [J].
Cil, Mehmet B. ;
Alshibli, Khalid A. .
ACTA GEOTECHNICA, 2014, 9 (02) :287-298
[49]   Study of shear behavior of granular materials by 3D DEM simulation of the triaxial test in the membrane boundary condition [J].
Wu, Kai ;
Sun, Weichen ;
Liu, Songyu ;
Zhang, Xiang .
ADVANCED POWDER TECHNOLOGY, 2021, 32 (04) :1145-1156
[50]   Designing and manufacturing of a customized instrumentation for measuring of granular materials mechanical properties by utilizing 3D printing technology [J].
Ivashchenko, A. T. ;
Babenkov, M. B. .
MATERIALS TODAY-PROCEEDINGS, 2020, 30 :369-372