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Uniaxial material model incorporating buckling for reinforcing bars in concrete structures subjected to seismic loads.

机译:结合了屈曲的钢筋混凝土结构单轴材料模型,承受地震荷载。

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摘要

For reinforced concrete (RC) structures subjected to seismic loads, buckling of longitudinal reinforcing bar is a significant damage stage. The objective of this research is to identify the critical parameters that control the buckling of reinforcing bars in typical circular and rectangular RC columns subjected to cyclic lateral loads. A series of nonlinear finite element simulations of laterally loaded RC columns are carried out to simulate reinforcing bar buckling behavior. Next, to achieve computational efficiency and enable a large range of simulations for a parametric study, a simplified "bar-with-springs" model is developed wherein the longitudinal reinforcing bar in a column is isolated and simulated as a flexural member. The combined restraining mechanism affected by transverse reinforcing and column size is represented by springs at the location of each transverse bar. The simplified "bar-with-springs" model is validated through comparison of average stress-strain curves with high-fidelity "full column" finite element models.;After validation of the proposed model, which is capable of providing with "average stress-strain" response of longitudinal bars, a comprehensive parametric study is performed to identify the effects of several important column parameters on the buckling behavior of the longitudinal reinforcement in RC columns. Features of average stress-strain curves of compressively loaded reinforcing bars are summarized and an equivalent material model is developed for reinforcing steel in RC columns that implicitly incorporates the degrading effects of bar buckling. Constitutive relations as functions of critical column parameters are developed for the direct use in nonlinear structural analysis of RC structures. Comparison of the numerically simulated global response of experimentally tested RC columns confirm the value and significance of the proposed equivalent material models as a simple and effective way to include bar buckling effects in finite element analysis of RC structures.
机译:对于承受地震载荷的钢筋混凝土(RC)结构,纵向钢筋的屈曲是一个重要的破坏阶段。这项研究的目的是确定关键参数,这些参数可控制典型的圆形和矩形RC柱中承受周期性侧向荷载的钢筋的屈曲。进行了一系列横向受力钢筋混凝土柱的非线性有限元模拟,以模拟钢筋的屈曲行为。接下来,为了获得计算效率并为参数研究提供广泛的模拟,开发了一种简化的“带弹簧的钢筋”模型,其中隔离了圆柱中的纵向钢筋并将其模拟为挠性构件。受横向钢筋和柱尺寸影响的组合约束机构由每个横向钢筋位置处的弹簧表示。通过将平均应力-应变曲线与高保真度的“全柱”有限元模型进行比较,验证了简化的“带有弹簧的钢筋”模型;在验证了所提出的模型之后,该模型能够提供“平均应力-钢筋的“应变”响应,进行了全面的参数研究,以识别几个重要的柱参数对RC柱中纵向钢筋的屈曲行为的影响。总结了受压钢筋的平均应力-应变曲线的特征,并建立了等效的材料模型,用于钢筋混凝土柱,隐含了钢筋屈曲的影响。建立了本构关系作为关键列参数的函数,可直接用于RC结构的非线性结构分析。对经过试验的钢筋混凝土柱进行数值模拟的整体响应的比较证实了所提出的等效材料模型的价值和重要性,这是将钢筋屈曲效应纳入钢筋混凝土结构有限元分析的一种简单有效的方法。

著录项

  • 作者

    Zong, Zhiyu.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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