SHEN Xin-pu, SHEN Guo-xiao. A Fracture-Energy-Based Elasto-Softening-Plastic Constitutive Model for Joints of Geomaterials[J]. Applied Mathematics and Mechanics, 2002, 23(9): 975-981.
Citation:
SHEN Xin-pu, SHEN Guo-xiao. A Fracture-Energy-Based Elasto-Softening-Plastic Constitutive Model for Joints of Geomaterials[J]. Applied Mathematics and Mechanics, 2002, 23(9): 975-981.
SHEN Xin-pu, SHEN Guo-xiao. A Fracture-Energy-Based Elasto-Softening-Plastic Constitutive Model for Joints of Geomaterials[J]. Applied Mathematics and Mechanics, 2002, 23(9): 975-981.
Citation:
SHEN Xin-pu, SHEN Guo-xiao. A Fracture-Energy-Based Elasto-Softening-Plastic Constitutive Model for Joints of Geomaterials[J]. Applied Mathematics and Mechanics, 2002, 23(9): 975-981.
On the basis of plasticity and fracture mechanics for quasi-brittle materials, this article presented a constitutive model for gradual softening behavior of joints of geomaterials. Corresponding numerical tests are carried out at the local level. Characteristics of the model proposed are:1) plastic softening and dilatancy behavior are directly related to the fracture process of joint, and much less material and model parameters are required compared with those proposed by references; 2) the process of decohesion coupled with frictional sliding at both micro-scale and macro-scale is described.
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