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A two-mechanism soil-structure interface model for three-dimensional cyclic loading

delete2020-07-27
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PRE
AI
J
Jingmao Liu
邹
邹德高 (Degao Zou) *
孔
孔宪京 (Xianjing Kong)
DOI:10.1002/nag.3118delete
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摘要

摘要

En 中文
A three-dimensional (3D) soil-structure interface model is proposed within the two-mechanism constitutive theory and bounding surface theory originally established for soils. The proposed model has two main characteristics: first, the model is formulated based on two different and superposed deformation mechanisms. The first mechanism is due to the stress ratio increment, and the second is due to the normal stress increment. Each mechanism induces a shear strain component and a normal strain component. The proposed model can be reduced to the conventional single-mechanism interface model. Second, the plastic modulus and stress dilatancy are defined using the bounding surface theory. The plastic flow rule under cyclic loading is modified and assumed to be dependent on both the stress state of the mapping point and the stress reversal loading direction. The proposed model was validated against the available 3D interface tests and was found to satisfactorily reflect the salient features of the interfaces under monotonic and cyclic loading paths with different normal boundaries. The problem in which the elastic normal stiffness in conventional single-mechanism interface models is often underestimated to enhance the simulation performance under varying normal stress conditions is solved by incorporating the second mechanism. And the effect of the second mechanism on the modeling behavior is discussed. The modified plastic flow direction accurately simulates the 3D cyclic shear response, and the difference between the model simulation and test result increases with the number of cycles by use of the plastic flow direction defined in conventional bounding surface theory.
Keyword:
bounding surface theory
cyclic loading
plasticity
soil-structure interface
two-mechanism
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期刊

International Journal for Numerical and Analytical Methods in Geomechanics 封面图
International Journal for Numerical and Analytical Methods in Geomechanics
IF:
3.6
论文数:
3.3K
被引数:
9.6K

机构

D
Dalian University of Technology
学者数:
6.0W
论文数: 4.4W
被引数: 5.5W
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