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Compressive behavior of FRP-confined concrete-encased steel columns

机译:FRP约束混凝土包裹钢柱的抗压性能

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摘要

FRP-confined concrete-encased steel I-section columns (FCSCs) are an emerging form of hybrid columns. An FCSC consists of an outer FRP tube, an encased steel section and a concrete infill. The FCSCs possess many advantages over conventional reinforced concrete columns, including the excellent corrosion resistance, excellent ductility and ease for construction. Existing studies on FCSCs, however, have been rather limited. This paper presents a combined experimental and theoretical study on the behavior of FCSCs under concentric and eccentric compression. The experimental program included the testing of a total of 14 specimens, with the main variables being the section configuration, the thickness of the FRP tube and the loading scheme. The theoretical part included the development of a model for section analysis based on the so-called fiber element approach. The test results showed that the buckling of steel section was well constrained and the concrete was effectively confined in FCSCs, leading to a very ductile response under both concentric and eccentric compression. The theoretical model was shown to provide reasonably accurate predictions of the test results.
机译:FRP约束混凝土包裹的钢制I型截面柱(FCSC)是混合柱的一种新兴形式。 FCSC由外部FRP管,包裹的钢型材和混凝土填充物组成。与传统的钢筋混凝土柱相比,FCSC具有许多优点,包括出色的耐腐蚀性,出色的延展性和易于施工的特点。但是,有关FCSC的现有研究非常有限。本文对FCSC在同心和偏心压缩下的行为进行了组合的实验和理论研究。实验程序包括总共14个样品的测试,主要变量是截面配置,FRP管的厚度和加载方案。理论部分包括基于所谓的纤维元素方法的截面分析模型的开发。试验结果表明,钢截面的屈曲受到了很好的约束,混凝土被有效地限制在FCSC中,从而在同心和偏心压缩下都具有非常好的延性响应。理论模型显示出可以对测试结果提供合理准确的预测。

著录项

  • 作者

    Yu, T; Lin, G; Zhang, SS;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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