Experimental study of anisotropy and non-coaxiality of granular solids

被引:0
|
作者
Yunming Yang
Wenbin Fei
Hai-Sui Yu
Jin Ooi
Michael Rotter
机构
[1] University of Nottingham Ningbo China,Department of Civil Engineering, International Doctoral Innovation Centre
[2] China Railway Siyuan Survey and Design Group Co.,Nottingham Center for Geomechanics
[3] LTD,School of Engineering
[4] University of Nottingham,undefined
[5] University of Edinburgh,undefined
来源
Granular Matter | 2015年 / 17卷
关键词
Anisotropy; Non-coaxiality; Granular solid; Principal stress rotation;
D O I
暂无
中图分类号
学科分类号
摘要
Previous experimental studies of anisotropy and non-coaxiality by using the hollow cylindrical apparatus are mainly focused on granular soils, which feature irregular particle shapes and non-uniform particle size distributions. This paper experimentally investigates these two characteristics on assemblages of particulate materials with regular particle shapes and uniform particle sizes. These assemblages are made from spherical, cylindrical and cubical particles, with an increasing order of particle angularity. Two types of loading paths in the hollow cylindrical apparatus are applied. One is the monotonic loading path with a range of fixed angles of major principal stress with respect to the horizontal bedding plan, used to investigate the anisotropy of materials. The other is the path of pure principal stress rotations, used to study the non-coaxiality. The experimental results indicate that these three materials exhibit a strong anisotropy and non-coaxiality. Their stress–strain responses are dependent on the orientation of major principal stress. The non-coaxiality is a function of stress ratio. In addition, there is a noticeable trend that these two characteristics are dependent on the angularity of particles. The more angular the particles are, the greater anisotropy and non-coaxiality take place.
引用
收藏
页码:189 / 196
页数:7
相关论文
共 50 条
  • [1] Experimental study of anisotropy and non-coaxiality of granular solids
    Yang, Yunming
    Fei, Wenbin
    Yu, Hai-Sui
    Ooi, Jin
    Rotter, Michael
    [J]. GRANULAR MATTER, 2015, 17 (02) : 189 - 196
  • [2] Micromechanics of Deformation Non-coaxiality in Granular Materials
    Li, Xia
    Yu, Hai-Sui
    [J]. POWDERS AND GRAINS 2013, 2013, 1542 : 1214 - 1217
  • [3] Experimental study of non-coaxiality of Hangzhou soft clay
    [J]. Zhou, Jan, 1600, Academia Sinica (35):
  • [4] Experimental study of non-coaxiality of Hangzhou soft clay
    Yang Yan-hao
    Zhou Jan
    Wen Xiao-gui
    Yan Jia-jia
    [J]. ROCK AND SOIL MECHANICS, 2014, 35 (10) : 2861 - 2867
  • [5] Experimental study of anisotropy and non-coaxiality behavior of natural clay by using drained shear test
    Chen, Jinmei
    Guo, Lin
    Cai, Yuanqiang
    Chen, Jingyu
    [J]. Yanshilixue Yu Gongcheng Xuebao/Chinese Journal of Rock Mechanics and Engineering, 2016, 35 : 3291 - 3298
  • [6] Explanation and modeling of non-coaxiality of soils from anisotropy
    Tian Yu
    Yao Yang-ping
    Luo Ting
    [J]. ROCK AND SOIL MECHANICS, 2018, 39 (06) : 2035 - 2042
  • [7] A flow rule incorporating the fabric and non-coaxiality in granular materials
    Shaverdi, Homayoun
    Taha, Mohd Raihan
    Kalantary, Farzin
    [J]. GRANULAR MATTER, 2014, 16 (05) : 675 - 685
  • [8] MEASURE OF NON-COAXIALITY
    GHOSH, SK
    [J]. JOURNAL OF STRUCTURAL GEOLOGY, 1987, 9 (01) : 111 - 113
  • [9] Experimental Study on the Anisotropy and Non-coaxiality of Frozen Standard Sand under Different Principal Stress Directions
    Chen, Dun
    Li, Guoyu
    Zhao, Xiaodong
    Ma, Wei
    Zhou, Zhiwei
    Mu, Yanhu
    Lai, Zejin
    Chen, Tuo
    [J]. GEOFLUIDS, 2022, 2022
  • [10] Constitutive Models with Kinematic Hardening: Effects on Anisotropy and Non-Coaxiality
    Elia, G.
    Amorosi, A.
    [J]. PORO-MECHANICS IV, 2009, : 1077 - 1082