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Experimental study on seismic performance of post-fire reinforced concrete frames

机译:火灾后钢筋混凝土框架抗震性能的试验研究

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To investigate the post-fire seismic behaviour of reinforced concrete (RC) frames with different column-to-beam bending capacity ratios, four specimens were fabricated, which included a strong-beam-weak-column frame and a strong-column-weak-beam frame either under room temperature or after being exposed to fire. The fire test was conducted in a furnace chamber, followed by quasi-static tests under a low-frequency cyclic load. The crack patterns, hysteretic loops, plastic hinges, and failure modes were investigated in the loading process. The influence of two factors, i.e., the fire exposure and the column-to-beam bending capacity ratio, on the mechanical performance, ductility, stiffness degradation, and energy dissipation was compared and analysed. The experimental results indicated that the ultimate bearing capacity, the stiffness, the ductility factor, and the energy dissipation capacity of the RC frames decreased after fire exposure. The bearing capacity of the strong-beam-weak-column frame decreased even more seriously. Although the yielding displacements of the post-fire frames increased, their ultimate displacements decreased. In addition, the strong-column-weak-beam frame under room temperature failed in the form of beam-end plastic hinging, while after being exposed to fire, the failure mode changed to shear-bond failure in column.
机译:为了研究具有不同柱-梁抗弯能力比的钢筋混凝土(RC)框架的火灾后地震行为,制作了四个标本,其中包括一个强横梁-弱柱框架和一个强横梁-弱柱框架。梁架在室温下或暴露于火中后。燃烧测试在炉膛中进行,然后在低频循环负载下进行准静态测试。在加载过程中研究了裂纹模式,磁滞回线,塑料铰链和破坏模式。比较并分析了火灾和柱梁弯曲能力比这两个因素对机械性能,延展性,刚度降低和能量耗散的影响。实验结果表明,钢筋混凝土框架的极限承载力,刚度,延性因子和能量耗散能力在火灾后降低。强光束弱柱框架的承载能力更加严重地下降。尽管后枪架的屈服位移增加了,但最终位移却减小了。此外,室温下的强柱弱梁框架以梁端塑性铰的形式失效,而暴露于火中后,失效模式变为柱体的剪切粘结失效。

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