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Seismic performance of full-scale reinforced concrete columns.

机译:大型钢筋混凝土柱的抗震性能。

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摘要

The deformation capacity of a concrete column can be expressed by using different ductility parameters such as curvature ductility, displacement ductility or drift capacity. However, little research has been conducted into the relationship among different ductility parameters. The objectives of this research are (1) to investigate the relationship among various ductility parameters by considering the effects of shear span-to-depth ratio and axial load level and (2) to develop methods and procedures that can be used to estimate the deformation capacity of reinforced concrete columns.; Five full-scale reinforced concrete columns were tested at The University of Texas at Austin. Test results indicated that the shear span-to-depth ratio and axial load level were important parameters influencing the relationship among various ductility parameters. Measured plastic hinge lengths of column specimens were also affected by the shear span-to-depth ratio and axial load.; The plastic hinge length of concrete columns was investigated by studying the compressive strain profile of the core concrete. An analytical procedure was used to study the effect of various parameters on plastic hinge length. Based on the results of the experiments and a parametric study, a new expression that can be used to estimate plastic hinge lengths was proposed.; Two methods that can be used to predict the deformation capacity of reinforced concrete columns were developed. One of these methods can be considered as a state-of-the-art analytical method, which employs various phenomenological models for confinement of concrete, reinforcing bar buckling, reinforcing bar slip and shear deformations. The other method consists of simple expressions derived by studying the lateral load response of columns as influenced by the P-Delta effect. The use of the rigorous analytical method provided reasonably accurate estimates for the deformation capacity of over one hundred columns tested by various researchers. The use of simple expressions, on the other hand, traced the lower-bound of the measured drift capacities of these columns. The simple expression is recommended for use in performance-based design of reinforced concrete columns.
机译:可以通过使用不同的延性参数(例如曲率延性,位移延性或漂移能力)来表示混凝土柱的变形能力。但是,关于延展性参数之间的关系的研究很少。这项研究的目的是(1)通过考虑剪切跨度-深度比和轴向载荷水平的影响来研究各种延性参数之间的关系,以及(2)开发可用于估计变形的方法和程序。钢筋混凝土柱的能力。在德克萨斯大学奥斯汀分校测试了五根全尺寸钢筋混凝土柱。试验结果表明,剪切跨度比和轴向载荷水平是影响各种延性参数之间关系的重要参数。测得的柱试样塑性铰长度也受剪切跨度与深度之比和轴向载荷的影响。通过研究核心混凝土的压缩应变曲线,研究了混凝土柱的塑性铰长度。使用分析程序来研究各种参数对塑料铰链长度的影响。根据实验结果和参数研究,提出了可用于估计塑料铰链长度的新表达式。开发了两种可用于预测钢筋混凝土柱变形能力的方法。这些方法中的一种可以被认为是最先进的分析方法,它采用各种现象学模型来限制混凝土,钢筋屈曲,钢筋滑移和剪切变形。另一种方法是通过研究受P-Delta效应影响的圆柱的侧向荷载响应而得出的简单表达式。严格的分析方法的使用为各种研究人员测试的一百多个柱的变形能力提供了合理准确的估计。另一方面,使用简单表达式可以跟踪这些列的测量漂移容量的下限。建议将该简单表达式用于钢筋混凝土柱的基于性能的设计。

著录项

  • 作者

    Bae, Sungjin.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 333 p.
  • 总页数 333
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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