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Repair of fire-exposed preloaded rectangular concrete columns by postcompressed steel plates

机译:后压缩钢板修复火灾预应力矩形混凝土柱

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摘要

This paper describes an experimental study of axially loaded, fire-exposed, rectangular reinforced concrete (RC) columns repaired with post-compressed steel plates. Seven RC columns with identical section dimensions and reinforcement details were fabricated and tested. Six of them were exposed to a four-hour fire load according to the ISO 834 Standard. After one month of cooling, five of the fire-exposed columns were installed with precambered steel plates which were then post-compressed by a method newly developed by the authors. All columns were tested under axial compression to determine their ultimate load capacity, deformation and ductility. The effects of steel plate thickness, initial precamber displacements and preloading level on the ultimate load capacity of repaired RC columns were investigated. The test results show that up to 72% of the original capacity of the axial load-carrying capacity of fire exposed columns repaired with post-compressed steel plates can be restored. Furthermore, the repaired specimens show better ductility and post-peak deformability. An analytical model was adopted to predict the ultimate axial load capacity of fire exposed columns repaired with post-compressed steel plates. Comparison of the theoretical and experimental results reveals that the analytical model can accurately predict the ultimate axial load capacity of the repaired columns.
机译:本文描述了用后压缩钢板修复的轴向受力,暴露于火灾的矩形钢筋混凝土(RC)柱的试验研究。制作并测试了具有相同截面尺寸和钢筋细节的7根RC柱。根据ISO 834标准,其中有6个承受了4小时的火警负荷。冷却一个月后,在五个火柱中安装了预拱形钢板,然后通过作者新开发的方法对其进行后压缩。所有柱子均在轴向压缩下进行测试,以确定其极限载荷能力,变形和延性。研究了钢板厚度,初始前室位移和预压水平对修复后RC柱极限承载力的影响。测试结果表明,用后压缩钢板修复的裸露柱的轴向承载能力可恢复高达原始容量的72%。此外,修复后的样品表现出更好的延展性和峰后变形性。采用分析模型来预测用后压缩钢板修复的火柱的极限轴向承载能力。理论和实验结果的比较表明,该分析模型可以准确地预测修复后圆柱的极限轴向承载能力。

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  • 作者

    Wang L; Su KL;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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