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Seismic retrofit of infilled RC frames with textile reinforced mortars: State-of-the-art review and analytical modelling

机译:用纤维增强砂浆对钢筋混凝土框架进行抗震改造:最新技术回顾和分析模型

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摘要

Significant damage to existing reinforced concrete (RC) frame structures during recent earthquakes has highlighted the potential detrimental effect of non-structural masonry infills. Several experimental studies have hence investigated the use of composite materials for in-plane retrofitting to reduce the risk of brittle collapse of the infills. In this review, the state-of-the-art on strengthening infilled RC frames with textile-reinforced mortars (TRM), a new class of composite material consisting of open-mesh textiles embedded in a cementitious matrix, is presented, highlighting the great potential of this retrofit solution for large-scale interventions on the existing building stock. A database of experimental results is compiled to evaluate the effect of different parameters on the effectiveness of the retrofitting applications. The stiffness of the fibre material, as well as the angle of application are found to be crucial factors. To ensure adequate analytical modelling for predicting the retrofitted behaviour, a macro-model, using an additional tensile tie to account for the TRM, is first calibrated by means of the experimental data gathered from the literature. Correlation between experimental parameters and the obtained effective strain is then assessed and an empirical formulation of effective strain in terms of fibre stiffness and retrofit amount is finally proposed.
机译:在最近的地震中,对现有钢筋混凝土(RC)框架结构的重大破坏凸显了非结构砌体填充物的潜在有害影响。因此,一些实验研究已经研究了复合材料在平面内改型中的使用,以减少填充物脆性塌陷的风险。在这篇综述中,介绍了用纺织增强砂浆(TRM)加固填充RC框架的最新技术,TRM是一种新型复合材料,由嵌入水泥基中的网状织物组成,强调了这种改造解决方案对现有建筑群进行大规模干预的潜力。编译了一个实验结果数据库,以评估不同参数对改造应用程序有效性的影响。发现纤维材料的刚度以及施加角度是关键因素。为了确保有足够的分析模型来预测改装性能,首先使用从文献中收集的实验数据对使用附加拉伸连接来说明TRM的宏观模型进行校准。然后评估实验参数与获得的有效应变之间的相关性,并最终提出根据纤维刚度和改造量的有效应变的经验公式。

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