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Elastoplastic cup model for cement-based materials

Elastoplastic cup model for cement-based materials
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摘要 Based on experimental data obtained from triaxial tests and a hydrostatic test, a cup model was formulated. Two plastic mechanisms, respectively a deviatoric shearing and a pore collapse, are taken into account. This model also considers the influence of confining pressure. In this paper, the calibration of the model is detailed and numerical simulations of the main mechanical behavior of cement paste over a large range of stress are described, showing good agreement with experimental results. The ease study shows that this cup model has extensive applicability for cement-based materials and other quasi-brittle and high-porosity materials in a complex stress state. Based on experimental data obtained from triaxial tests and a hydrostatic test, a cup model was formulated. Two plastic mechanisms, respectively a deviatoric shearing and a pore collapse, are taken into account. This model also considers the influence of confining pressure. In this paper, the calibration of the model is detailed and numerical simulations of the main mechanical behavior of cement paste over a large range of stress are described, showing good agreement with experimental results. The ease study shows that this cup model has extensive applicability for cement-based materials and other quasi-brittle and high-porosity materials in a complex stress state.
出处 《Water Science and Engineering》 EI CAS 2010年第1期102-112,共11页 水科学与水工程(英文版)
基金 supported by the National Natural Science Foundation of China (Grant No.50808066) the Scientific Research Foundation for Returned Overseas Chinese Scholars
关键词 cup model cement-based materials plastic shearing mechanism plastic porecollapse mechanism numerical simulation cup model cement-based materials plastic shearing mechanism plastic porecollapse mechanism numerical simulation
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