Energy-Based CDM Model for Nonlinear Analysis of Confined Concrete

Jie Li, Jian‐Ying Wu
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引用次数: 7

Abstract

In this paper, a continuum damage mechanics (CDM) based constitutive model appropriate for confined concrete is presented. Basically, the tensile and shear damage variables are adopted to describe the degrading of macro-mechanical properties of concrete, and the corresponding damage criteria are established based on elastoplastic damage energy release rates, which can predict the enhancement of strength and ductility of concrete under biaxial compression. To describe the compressive consolidation mechanism under triaxial compressive confinement, the above Drucker-Prager type shear damage criterion is modified to take the third invariant of effective stress into account. The irreversible plastic strains are determined empirically in this paper, though the effective stress space plasticity method is also introduced here. Comparing to experimental tests of concrete under biaxial and triaxial compressive stress states, the predictive results of proposed model show good agreement with test data, which validate the capability of present model for reproducing the nonlinearity of confined concrete.
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基于能量的约束混凝土非线性分析CDM模型
本文提出了一种适用于约束混凝土的基于连续损伤力学的本构模型。基本上采用拉伸和剪切损伤变量来描述混凝土宏观力学性能的退化,并基于弹塑性损伤能量释放率建立相应的损伤准则,可以预测混凝土在双轴压缩下强度和延性的增强。为了描述三轴压缩约束下的压缩固结机制,对上述Drucker-Prager型剪切损伤准则进行修正,考虑了有效应力的第三个不变量。本文介绍了有效应力空间塑性法,并对不可逆塑性应变进行了经验测定。通过对混凝土在双轴和三轴压应力状态下的试验试验,该模型的预测结果与试验数据吻合较好,验证了该模型对约束混凝土非线性特性的再现能力。
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