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A framework of elastic-plastic damaging model for concrete under multiaxial stress states

机译:混凝土多轴应力状态下弹塑性损伤模型的框架

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The paper concerns the description and the validation of a constitutive model for concrete characterized by a combined plastic-hardening-damage-fracture dissipative criterion developed within the framework of the simple material model, so that its numerical implementation is easy and robust. Two different damage isotropic mechanisms associated with tensile and compressive strain processes are introduced and two hardening variables are used; the first rules the plastic hardening while the second controls the compaction of the material. The limit domain is defined through the envelope of three yield criteria presenting a strong and original coupling between plastic and damage dissipative mechanisms. It is demonstrated that the proposed framework allows the reproduction of some distinctive features of the behavior of concrete under multiaxial stress states, such as volumetric hardening in triaxial compression load processes, the increment of strength under confined compression, post-peak dilatancy, varying degradation of the elastic stiffness in tensile or compressive stress states, the increase of the limit strain in cyclic processes. A comparison of the numerical predictions with the literature experimental tests is presented. The limits of the proposed model are also discussed in the paper. (c) 2006 Published by Elsevier Ltd.
机译:本文涉及以简单材料模型的框架内开发的,以塑性-硬化-破坏-断裂耗散准则为特征的混凝土本构模型的描述和验证,因此其数值实现简便易行。介绍了与拉伸和压缩应变过程相关的两种不同的损伤各向同性机制,并使用了两个硬化变量。第一个控制塑性硬化,第二个控制材料的压实。通过三个屈服准则的包络来定义极限域,这三个屈服准则提出了塑性与破坏耗散机制之间的牢固且原始的耦合。结果表明,所提出的框架可以再现混凝土在多轴应力状态下的一些独特特征,例如三轴压缩载荷过程中的体积硬化,有限压缩下强度的增加,峰后膨胀,变形的变化。拉伸或压缩应力状态下的弹性刚度,循环过程中极限应变的增加。给出了数值预测与文献实验测试的比较。本文还讨论了所提出模型的局限性。 (c)2006年由Elsevier Ltd.发布。

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