Collapse simulation of reinforced concrete including localized failure and large rotation using extended RBSM

Y. Yamamoto
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引用次数: 3

Abstract

In this study, an extended Rigid-Body-Spring Model (RBSM) considering geometric nonlinearity including finite rotation is developed based on an equivalence between the RBSM and the reduced integration Timoshenko beam element in order to simulate not only damage localization behavior but also large displacement and large rotation collapse behavior of reinforced concrete structures. Firstly, an elastic buckling response of a column is simulated by using the proposed method. By comparing the simulation result and the exact solution, it is confirmed that the proposed model can reproduce the large displacement and large rotation behavior in the elastic range. In addition, several numerical simulations of failure behavior of concrete and reinforced concrete members are presented. It is also confirmed that the model can simulate localized damage, rebar buckling and large rotational collapse behavior.
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基于扩展RBSM的钢筋混凝土局部破坏和大旋转破坏模拟
为了模拟钢筋混凝土结构的损伤局部化行为和大位移、大旋转破坏行为,基于广义刚体-弹簧模型(RBSM)与降积分Timoshenko梁单元的等价性,建立了考虑有限旋转等几何非线性的扩展刚体-弹簧模型(RBSM)。首先,采用该方法对柱的弹性屈曲响应进行了数值模拟。通过仿真结果与精确解的比较,证实了所提模型能在弹性范围内再现大位移和大旋转行为。此外,还对混凝土和钢筋混凝土构件的破坏行为进行了数值模拟。验证了该模型能较好地模拟钢筋的局部损伤、屈曲和大范围旋转破坏行为。
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