火灾后影响钢筋混凝土结构抗震性能的因素

A. Ilki, U. Demir
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引用次数: 1

摘要

在地震高发地区,应切实考虑火灾对钢筋混凝土(RC)结构抗震性能的影响,评估火灾损害,制定在剩余使用寿命内的再利用/修复/更换策略。在本研究范围内,对火灾引起的混凝土和钢筋力学特性的变化进行了文献综述,并特别强调了后冷却阶段。RC构件的冷却后性能与高温下的性能不同,因此在火灾后结构抗震性能评估中具有重要意义。除了材料方面的评估方法外,还通过对全尺寸现浇和预制柱进行火灾后模拟地震荷载试验来讨论RC结构构件的火灾后抗震性能。试验结果表明,火灾作用下现浇柱的侧向承载能力降低,而火灾暴露预制柱由于轴向载荷较低、高度较大,在残余侧向承载能力方面表现出较好的性能。所有柱在延性方面表现出令人满意的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FACTORS AFFECTING SEISMIC BEHAVIOUR OF REINFORCED CONCRETE STRUCTURES AFTER FIRE EXPOSURE
In the areas under high earthquake risk, the impact of fire damage on the seismic performance of the reinforced concrete (RC) structures ought to be realistically taken into account while assessing the fire damage to develop reuse/repair/replace strategies through the remaining service life. In the scope of this study, a literature review is conducted on the changes of mechanical characteristics of concrete and reinforcement caused by a fire with a particular emphasis on the post-cooling stage. Post-cooling behaviour of RC members is different than the behaviour under elevated temperatures and hence it is of vital importance on structural seismic performance assessment after a fire. Apart from material-wise assessment methodologies, post-fire seismic performance of RC structural members is also discussed through post-fire simulated seismic loading tests conducted on full-scale cast-in-place and precast columns. The test results pointed out to a reduction in lateral load bearing capacity of the cast-in-place columns subjected to fire whereas fire-exposed precast columns demonstrated better performance in terms of residual lateral load capacity due to the lower axial load and larger heights. All columns exhibited satisfactory performance in terms of ductility.
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