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Analytical and experimental study on slender concrete-filled steel tube columns and beam-columns.

机译:细长混凝土钢管柱和梁柱的分析和实验研究。

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摘要

The use of composite steel-concrete columns and beam-columns in many structural systems is increasing globally due to the intrinsic synergy when these materials are designed and detailed together properly. However, limited test data are available to justify the structural system response factors and comprehensive design equations in current design specifications. This research, through the testing of 18 full-scale, slender concrete-filled steel tube (CFT) beam-columns, attempts to address the latter need. The circular and rectangular CFT specimens tested for this research are by far the longest and the most slender full-scale CFT members tested worldwide. These CFT specimens were subjected to a complex load protocol that includes pure compression, uniaxial and biaxial bending combined with compression, pure torsion, and torsion combined with compression. In addition, data from the hydrostatic pressure on the steel tubes due to the fresh concrete at casting was evaluated. The single most important contribution of this research is the clarification of the interaction between strength and stability in slender composite concrete-filled columns and beam-columns. Parallel to the experimental study, advanced computational analyses were carried out to calibrate material and element models that characterize the salient features of the observed CFT response, such as steel local buckling and residual stresses, concrete confinement, stability effects, strength, and stiffness degradation, among others. Based on the observed behavior, simplified guidelines for the computation of the strength and stiffness parameters for CFT columns and beam-columns are proposed for design purposes.
机译:当适当地设计和细化这些材料时,由于固有的协同作用,在全球许多结构系统中,越来越多地使用复合钢-混凝土柱和梁柱。但是,有限的测试数据可用于证明结构体系的响应因子和当前设计规范中的综合设计方程式。这项研究通过测试18个全尺寸,细长的钢管混凝土(CFT)梁柱,试图解决后者的需求。迄今为止,为这项研究测试的圆形和矩形CFT标本是全世界测试时间最长,最细长的全面CFT构件。这些CFT样品经受了复杂的载荷方案,包括纯压缩,单轴和双轴弯曲与压缩相结合,纯扭转和扭转与压缩相结合。另外,还评估了由于浇铸时新鲜混凝土而产生的钢管静水压力数据。这项研究最重要的贡献是澄清了细长复合混凝土填充柱和梁柱的强度与稳定性之间的相互作用。与实验研究并行,进行了高级计算分析,以校准表征观察到的CFT响应的显着特征的材料和元素模型,例如钢局部屈曲和残余应力,混凝土约束,稳定性影响,强度和刚度退化,其中。基于观察到的行为,出于设计目的,提出了用于计算CFT柱和梁柱的强度和刚度参数的简化指南。

著录项

  • 作者

    Perea, Tiziano.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 703 p.
  • 总页数 703
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:57

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