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Numerical modeling and seismic evaluation of masonry-infilled reinforced concrete frames retrofitted with carbon fiber-reinforced polymer wraps

机译:碳纤维增强聚合物包裹体加固的砖石填充钢筋混凝土框架的数值模拟和抗震评估

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摘要

This article investigates the efficiency of various retrofitting schemes using carbon fiber-reinforced polymers in improving the seismic performance of a substandard masonry-infilled reinforced concrete frame. One virtual five-story reinforced concrete frame was designed according to out-of-date Chinese codes. In total, 15 carbon fiber-reinforced polymers retrofitting schemes were adopted before earthquakes, and three sets of earthquakes representing low, medium, and high frequency contents were selected to conduct the incremental dynamic analysis. The influence of infills' collapse due to out-of-plane effect was discussed detailedly, and then, the effectiveness of different retrofitting schemes was evaluated. It was found that the collapse of infills obviously reduced the seismic capacity and finally resulted in a soft-story failure mechanism for the reinforced concrete frame. For earthquakes with low frequency content, the enhancement efficiency of retrofitting infills or both columns and infills was increased with the increase in the number of retrofitted stories; however, for medium and high earthquake frequency contents, retrofitting infills or both columns and infills were inefficient when less than half of the structure height was retrofitted. Among the adopted 15 schemes, carbon fiber-reinforced polymers retrofit of both columns and infills along the full building height was found to be the most efficient. Improper selection of a retrofitting scheme could lead to the change of soft-story location. The inter-story drift ratio capacity of effectively retrofitted frames can meet the requirements of current seismic code.
机译:本文研究了使用碳纤维增强聚合物的各种改建方案在改善不合格砖石填充钢筋混凝土框架抗震性能方面的效率。根据过时的中文规范设计了一个虚拟的五层钢筋混凝土框架。总共在地震前采用了15种碳纤维增强聚合物改型方案,并选择了代表低,中,高频含量的三组地震进行增量动力分析。详细讨论了由于平面外效应而导致的填充物塌陷的影响,然后评估了不同改造方案的有效性。结果表明,填充物的倒塌明显降低了其抗震能力,最终导致钢筋混凝土框架的软层破坏机制。对于低频地震,随着加固层数的增加,加固填料或柱和填料的加固效率都提高了;但是,对于中等和高地震频次的内容,当对结构高度进行不到一半的改造时,对填充物或对柱和填充物的改造都是无效的。在所采用的15种方案中,发现沿着整个建筑物高度对立柱和填充物进行碳纤维增强聚合物改造是最有效的。改型方案选择不当可能会导致软楼层位置发生变化。有效改造框架的层间漂移比能力可以满足当前地震规范的要求。

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