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On the prediction of shear brittle collapse mechanisms due to the infill-frame interaction in RC buildings under pushover analysis

机译:推覆分析下钢筋混凝土房屋中框架与框架相互作用引起的剪切脆性破坏机理预测

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摘要

A large number of research studies deal with the modeling and analysis of infilled reinforced concrete (RC) buildings under seismic actions, at the aim to understand the actual contribution given by masonry infills to the overall seismic resistance of a building. In this paper this aspect is investigated in the framework of pushover analyses, describing the theoretical and computational choices related to the involved parameters. Differently from the approaches available in literature and standards, the "double-strut model" is adopted to simulate the infill behavior, according to which an infill panel is represented by two equivalent non-parallel struts; the peculiarity is that the positions of the extremities of the two struts coincide with the points of application of the stress resultants on each side of the panel. The results show that, by adopting the double-strut model, it is possible to capture dangerous local shear failures which are usually neglected in pushover analysis and which can compromise the safety of the overall structure. By including in the analysis shear plastic hinges together with bending ones, it is evident how the additional shear forces, arising at the extremities of beams and columns, can substantially change the collapse mechanism of a structure under seismic action. The main features of the double-strut model are its low computational cost together with its accuracy, which make it particularly suitable for applications in the engineering practice. In fact it could be easily implemented in commercial calculation codes, representing a practical predictive tool able to enhance the safety level of infilled RC buildings. (C) 2016 Elsevier Ltd. All rights reserved.
机译:大量的研究涉及地震作用下的填充钢筋混凝土(RC)建筑物的建模和分析,目的是了解砖石填充物对建筑物整体抗震性的实际贡献。在本文中,在推覆分析的框架中研究了这一方面,描述了与所涉及参数有关的理论和计算选择。与文献和标准中可用的方法不同,采用“双支撑模型”来模拟填充行为,根据该方法,填充面板由两个等效的非平行支撑表示。唯一的特点是两个支柱的末端位置与面板两侧的应力合力施加点一致。结果表明,通过采用双支撑模型,可以捕获危险的局部剪切破坏,这些破坏通常在推覆分析中被忽略,并可能危及整个结构的安全性。通过在分析中包括剪切塑性铰链和弯曲塑性铰链,很明显,在梁和柱的末端产生的附加剪切力如何在地震作用下基本改变结构的坍塌机制。双支撑模型的主要特点是计算成本低,精度高,因此特别适合工程实践中的应用。实际上,它可以很容易地在商业计算代码中实施,代表着一种实用的预测工具,能够提高已填充钢筋混凝土建筑物的安全水平。 (C)2016 Elsevier Ltd.保留所有权利。

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