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Unified plastic-damage model for concrete and its applications to dynamic nonlinear analysis of structures

机译:混凝土统一塑性损伤模型及其在结构动力非线性分析中的应用

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摘要

In this paper, the energy-based plastic-damage model previously proposed by the authors [International Journal of Solids and Structures, 43(3-4): 583-612] is first simplified with an empirically defined evolution law for the irreversible strains, and then it is extended to its rate-dependent version to account for the strain rate effect. Regarding the energy dissipation by the motion of the structure under dynamic loadings, within the framework of continuum damage mechanics a new damping model is proposed and incorporated into the developed rate-dependent plastic-damage mode, leading to a unified constitutive model which is capable of directly considering the damping on the material scale. Pertinent computational aspects concerning the numerical implementation and the algorithmic consistent modulus for the unified model are also discussed in details, through which the dynamic nonlinear analysis of damping structures can be coped with by the same procedures as those without damping. The proposed unified plastic-damage model is verfied by the simulations of concrete specimens under different quasi-static and high rate straining loading conditions, and is then applied to the Koyna dam under earthquake motions. The numerical predictions agree fairly well with the results obtained from experimental tests and/ or reported by other investigators, demonstrating its capability for reproducing most of the typical nonlinear performances of concrete under quasi-static and dynamic loading conditions.
机译:在本文中,作者首先提出了基于能量的塑性损伤模型[International Journal of Solids and Structures,43(3-4):583-612],该模型首先根据经验定义了不可逆应变的演化规律,然后将其扩展到其依赖于速率的版本,以解决应变率效应。关于结构在动态载荷作用下的运动所产生的能量耗散,在连续介质损伤力学的框架内,提出了一种新的阻尼模型,并将其纳入已开发的速率相关塑性损伤模型中,从而形成了一个统一的本构模型。直接考虑材料尺度上的阻尼。还详细讨论了与统一模型的数值实现和算法一致模量有关的计算方面,通过这些过程,阻尼结构的动态非线性分析可以通过与没有阻尼的方法相同的程序来解决。通过在不同准静态和高应变应变荷载条件下对混凝土试件进行仿真,验证了所提出的统一塑性损伤模型,然后将其应用于地震作用下的科伊纳大坝。数值预测与从实验测试获得的结果和/或其他研究者报告的结果非常吻合,表明其具有在准静态和动态载荷条件下再现大多数混凝土典型非线性性能的能力。

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