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Modeling RC column flexural failure modes under intensive seismic loading

机译:地震作用下钢筋混凝土柱弯曲破坏模式的建模

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The aim of this work is to model beam-column behavior in a computationally effective manner, revealing reliably the overall response of reinforced concrete members subjected to intensive seismic loading. In this respect, plasticity and damage are considered in the predominant longitudinal direction, allowing for fiber finite element modeling, while in addition the effect of inelastic buckling of longitudinal rebars, which becomes essential at later stages of intensive cyclic loading, is incorporated. smooth plasticity-damage model is developed for concrete, accounting for unilateral compressive and tensile behavior, nonlinear unloading and crack closure phenomena. This is used to address concrete core crushing and spalling, which triggers the inelastic buckling of longitudinal rebars. For this reason, a uniaxial local stress-strain constitutive relation for steel rebars is developed, which is based on a combined nonlinear kinematic and isotropic hardening law. The proposed constitutive model is validated on the basis of existing experimental data and the formulation of the buckling model for a single rebar is developed. The cross section of rebar is discretized into fibers, each one following the derived stress-strain uniaxial law. The buckling curve is determined analytically, while equilibrium is imposed at the deformed configuration. The proposed models for concrete and rebars are embedded into a properly adjusted fiber beam-column element of reinforced concrete members and the proposed formulation is verified with existing experimental data under intensive cyclic loading.
机译:这项工作的目的是以一种计算有效的方式对梁柱的行为进行建模,从而可靠地揭示了承受强烈地震载荷的钢筋混凝土构件的整体响应。在这方面,在主要的纵向方向上考虑了可塑性和损伤,从而允许对纤维进行有限元建模,同时还引入了纵向钢筋的非弹性屈曲效果,该效果在密集循环载荷的后期变得至关重要。针对混凝土开发了光滑的塑性-损伤模型,考虑了单侧压缩和拉伸行为,非线性卸载和裂缝闭合现象。这用于解决混凝土芯的破碎和剥落,这会引起纵向钢筋的非弹性屈曲。因此,建立了基于非线性运动学和各向同性硬化定律的钢筋的单轴局部应力-应变本构关系。在现有实验数据的基础上,对所提出的本构模型进行了验证,并为单根钢筋开发了屈曲模型。钢筋的横截面离散为纤维,每根纤维都遵循导出的应力-应变单轴定律。屈曲曲线是通过解析确定的,而在变形构型上施加了平衡。所提出的混凝土和钢筋模型被嵌入到适当调整的钢筋混凝土构件的纤维梁柱单元中,并利用现有的实验数据在强循环荷载下验证了所提出的公式。

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