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首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Evaluation of out-of-plane seismic performance of column-to-column precast concrete cladding panels in one-storey industrial buildings
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Evaluation of out-of-plane seismic performance of column-to-column precast concrete cladding panels in one-storey industrial buildings

机译:一层工业建筑中柱到柱预制混凝土砌面板的面外抗震性能评估

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摘要

Recent earthquakes in Italy (L'Aquila 2009 and Emilia 2012) highlighted the vulnerability of precast cladding panels, typically associated with a connection system not designed to account for displacement and rotation compatibility between the panels and the supporting structure. Experimental investigations were performed in the past to investigate the in-plane performance of cladding panels and design recommendations have been made accordingly; however, in the case of out-of-plane seismic loads, the load demand is commonly evaluated in the design practice by means of formulations for nonstructural components. This paper summarizes the results obtained from parametric analyses conducted to estimate the out-of-plane load demand in column-to-column cladding panels typical of one-storey commercial and industrial buildings. Empirical equations suitable for both new and existing panels are proposed and compared with the design equations given in Eurocode 8 and ASCE 7. The paper also considers the effects of the development of plastic hinges at the column base and of the roof flexibility on the load demand in panel-to-column connections. The roof flexibility may generate the torsion of the panels; consequently, an analytical procedure to account for such effects is proposed. Finally, general design recommendations are made.
机译:意大利最近发生的地震(L'Aquila 2009和Emilia 2012)突显了预制覆面板的脆弱性,通常与连接系统相关联,而该连接系统并非旨在考虑面板与支撑结构之间的位移和旋转兼容性。过去进行过实验研究以研究覆面板的面内性能,并据此提出了设计建议。但是,在面外地震荷载的情况下,通常在设计实践中通过非结构构件的公式评估荷载需求。本文总结了从参数分析中获得的结果,这些参数分析用于估计典型的单层商业和工业建筑的柱到柱覆面板中的平面外载荷需求。提出了适用于新面板和现有面板的经验方程式,并将其与欧洲规范8和ASCE 7中给出的设计方程式进行了比较。本文还考虑了立柱底部塑料铰链的发展以及车顶柔性对载荷需求的影响。在面板到列的连接中。屋顶的柔韧性可能会导致面板扭曲。因此,提出了解决这种影响的分析程序。最后,提出了一般设计建议。

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