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首页> 外文期刊>Journal of structural engineering >Modeling Material Failure in Concrete Structures under Cyclic Actions
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Modeling Material Failure in Concrete Structures under Cyclic Actions

机译:循环作用下混凝土结构材料破坏的建模

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摘要

A constitutive model devised for the analysis of concrete structures, and suitable for generic two- or three-dimensional applications, is presented and validated. For plain concrete a tension-compression distinguishing stress split is performed, and two scalar damage variables account for the degradation induced by the tensile and compressive stress components. As outcomes the model reproduces the stiffness recovery upon load reversal, and it captures the strength enhancement under multiaxial compression. Besides, the simple formulation as well as the extremely reduced number of parameters involved in the concrete model makes it quite suitable for the analysis of real structures, and constitutes a useful design tool. As regards to the nonlinear performance of the steel reinforcement, the explicit Giuffre-Menegotto-Pinto model is adopted. Efficiency of the global model is illustrated via two seismic applications: one concerning an arch dam, and the other a six-floor reinforced concrete wall. The latter application is presented for validation putposes.
机译:提出并验证了一种用于混凝土结构分析的本构模型,该模型适用于一般的二维或三维应用。对于普通混凝土,会执行区分拉伸和压缩的应力分离,并且两个标量损伤变量说明了由拉伸和压缩应力分量引起的退化。结果,该模型再现了负载反向时的刚度恢复,并捕获了多轴压缩下的强度增强。此外,混凝土模型中涉及的简单公式以及参数的数量大大减少,使其非常适合于实际结构的分析,并且构成了有用的设计工具。关于钢筋的非线性性能,采用显式的Giuffre-Menegotto-Pinto模型。通过两个地震应用来说明全局模型的效率:一个涉及拱坝,另一个涉及六层钢筋混凝土墙。提出后一个应用程序用于验证对象。

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