Numerical Modeling of Steel Fiber Reinforced Recycled Concrete Filled Steel Tube Column Under Cyclic Loading

Mohamed A. Sakr, Ayman A. Seleemah, Omnia F. Kharoob, Mostafa Aboelnour
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Abstract

A finite element model (FEM) was created with the aim of analyzing the behavior of steel fiber reinforced recycled concrete (SFRRC)-filled steel tube columns under combined cyclic loading and monotonic axial load. The FEM considered the effect of steel tube confinement on the inner concrete behavior under cyclic loading. The numerical model was described in detail, with a focus on modeling the materials involved (normal concrete, SFRRC, and steel) under cyclic loading. A constitutive concrete model - with and without considering confinement - was based on utilizing a concrete damaged plasticity (CDP) model. The steel tube - concrete core interface was modeled by a surface-to-surface contact. A stress-strain constitutive concrete model, confined by circular steel tubes, was implemented, and validated using experimental results from the literature. The developed FEM considered various parameters: steel tube thickness, volume ratios of steel fibers, besides strengths of both concrete core and the steel tube. The FEM results showed great similarity to the under- cyclic- loading tested columns. The results indicated that the concrete confining pressure must be considered in CDP model. A good correlation between numerical and experimental findings was obvious, including failure modes, and hysteretic curves of load-displacement.
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循环载荷下钢纤维加固再生混凝土填充钢管柱的数值建模
建立有限元模型(FEM)的目的是分析钢纤维增强再生混凝土(SFRRC)填充钢管柱在组合循环荷载和单调轴向荷载下的行为。有限元模型考虑了循环荷载下钢管约束对内部混凝土行为的影响。对数值模型进行了详细描述,重点是循环荷载下相关材料(普通混凝土、SFRRC 和钢)的建模。利用混凝土损伤塑性(CDP)模型,建立了一个考虑和不考虑约束的混凝土组成模型。钢管--混凝土核心界面通过表面--表面接触建模。实施了由圆形钢管限制的混凝土应力-应变构成模型,并利用文献中的实验结果进行了验证。所开发的有限元模型考虑了各种参数:钢管厚度、钢纤维体积比,以及混凝土核心和钢管的强度。有限元分析结果与循环加载下的测试柱非常相似。结果表明,CDP 模型必须考虑混凝土约束压力。数值结果与实验结果之间存在明显的相关性,包括破坏模式和荷载-位移滞后曲线。
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