Cyclic stress-strain response of compacted gravel

被引:27
作者
Modoni, G. [1 ]
Koseki, J. [2 ]
Dan, L. Q. Anh
机构
[1] Univ Cassino, Cassino, Italy
[2] Univ Tokyo, Inst Ind Sci, Tokyo 1138654, Japan
来源
GEOTECHNIQUE | 2011年 / 61卷 / 06期
基金
日本学术振兴会;
关键词
compaction; elasticity; gravels; plasticity; INDUCED ANISOTROPY; MODEL; SAND; STIFFNESS; BEHAVIOR;
D O I
10.1680/geot.7.00150
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The positive effect of artificial densification on the stress-strain performance of granular materials is acknowledged from very ancient times but its importance greatly increased after the development of powerful machineries for the construction of large earth and rockfill dams. It is, however, pointed out that the extensive exploitation of gravelly soil is rarely supported by a thorough analytical assessment of the compaction effects on the constitutive relationships of materials, as would be desirable considering the massive dimension of these works and the complexity of typical loading conditions. The present research aims to fill this gap by means of a detailed experimental investigation and a theoretical analysis on the stress-strain response of dense gravels under monotonic and cyclic loading. The experimental campaign consists of a large number of triaxial tests performed at different initial mean effective stresses, following different stress paths and sequences, on artificially reconstituted samples of large dimensions compacted at different initial densities. The great care placed in the accuracy of laboratory instrumentation enables a high repeatability of experimental results, which is necessary to provide a clear focus on non-linearity in the limited strain range of the pre-failure response of the gravel. Based on the curve-fitting method the ingredients of an elasto-plastic constitutive model have been defined to predict the response of gravel under monotonic and cyclic loading. Elastic stiffness is simulated with a model derived from the literature which assumes a dependency on soil density together with inherent and stress-induced anisotropy. Plastic strain development from different initial stress and volume states of gravel is simulated by a critical state, multiple yielding constitutive model. Hardening and flow rules for the latter have been obtained by modifying previously existing laws in order better to reproduce the observations under monotonic compression, extension and cyclic loading. Validation of the proposed model is finally provided by comparing simulations and experimental results in a variety of testing conditions.
引用
收藏
页码:473 / 485
页数:13
相关论文
共 50 条
  • [41] A Continuum Model for the Effect of Dynamic Recrystallization on the Stress-Strain Response
    Kooiker, H.
    Perdahcioglu, E. S.
    van den Boogaard, A. H.
    MATERIALS, 2018, 11 (05)
  • [42] Stress-Strain Degradation Response of Railway Ballast Stabilized with Geosynthetics
    Indraratna, Buddhima
    Nimbalkar, Sanjay
    JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2013, 139 (05) : 684 - 700
  • [43] Experimental study and constitutive model on complete stress-strain relations of plain concrete in uniaxial cyclic tension
    Chen, Xudong
    Xu, Lingyu
    Bu, Jingwu
    KSCE JOURNAL OF CIVIL ENGINEERING, 2017, 21 (05) : 1829 - 1835
  • [44] Nonlinear stress-strain response of soft Chicago glacial clays
    Taesik Kim
    Jin-tae Han
    Wanjei Cho
    KSCE Journal of Civil Engineering, 2015, 19 : 1139 - 1149
  • [45] Anisotropic stress-strain response and microstructure evolution of textured α-uranium
    Knezevic, Marko
    Capolungo, Laurent
    Tome, Carlos N.
    Lebensohn, Ricardo A.
    Alexander, David J.
    Mihaila, Bogdan
    McCabe, Rodney J.
    ACTA MATERIALIA, 2012, 60 (02) : 702 - 715
  • [46] Machine learning predictions on the compressive stress-strain response of lattice-based metamaterials
    Xiao, Lijun
    Shi, Gaoquan
    Song, Weidong
    INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2024, 300
  • [47] Stress-Strain Response of Multi-Layered Geocell Reinforced Soil by Triaxial Test
    Tafreshi, S. N. M.
    Noori, B.
    Khalaj, O.
    DESIGN AND PRACTICE OF GEOSYNTHETIC-REINFORCED SOIL STRUCTURES, 2013, : 34 - 43
  • [48] Compressive stress-strain relation of recycled aggregate concrete under cyclic loading
    Hu, Xiaobin
    Lu, Qinwang
    Xu, Zihao
    Zhang, Wenliang
    Cheng, Shanshan
    CONSTRUCTION AND BUILDING MATERIALS, 2018, 193 : 72 - 83
  • [49] Cyclic stress-strain relation of recycled aggregate concrete under confining pressure
    Dai, Zexu
    Hu, Xiaobin
    Fu, Shaojun
    CONSTRUCTION AND BUILDING MATERIALS, 2025, 468
  • [50] A new approach to finite element modelling of cyclic thermomechanical stress-strain responses
    Seruga, Domen
    Nagode, Marko
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2019, 164