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Experimental assessment of the seismic behavior of unbraced steel storage pallet racks

机译:无支撑钢制托盘货架抗震性能试验评估

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摘要

Steel storage racks are typically made of thin-walled cold formed steel profiles, which prove to be the most versatile, economic and sustainable elements for industrial rack construction. Their lightweight structural systems are usually designed to resist heavy load units, reaching considerable heights. However, the global behavior of storage racks under seismic actions is much less predictable than the behavior of steel buildings made of standard steel profiles and connections, mainly due to the perforations in their thin walled upright columns, and their semi-rigid beam-column and base plate joints. Full scale experimental investigations are greatly needed in order to understand and quantify the global performance of storage racks, and improve their design for seismic actions.ududFor the first time in Europe, thanks to the funding provided by Research Fund for Coal and Steel (RFCS), an extensive full-scale push-over testing program has been carried out on 8 fully-loaded pallet racking specimens (4 unbraced and 4 braced racks), provided by 4 different international rack producers.ududThis paper presents the experimental results of full scale push-over tests performed in the down-aisle (longitudinal) direction on fully-loaded unbraced specimens. In particular, experimental global capacity curves of the tested specimens are presented, discussing the key factors influencing the racks’ response, as well as the failure mechanisms of the different rack typologies. Furthermore, the behavior factor (q) values of each specimen are derived from re-analysis of the test results. Vulnerability of unbraced racks to soft-storey mechanism is demonstrated, highlighting its causes. Design guidelines are provided in order to guarantee a globally homogenous ductility under seismic actions, along with the new safety requirements for the design of the floor connections of unbraced racks.
机译:钢存储架通常由薄壁冷成形钢型材,这被证明是最通用的,对于工业机架结构经济和可持续的元件。他们的轻质结构系统通常被设计为抵抗重负载单位,达到相当大的高度。然而,在地震作用的存储架的全局行为是远远超过在其薄壁立柱制成的标准钢型材和连接,主要是由于穿孔钢建筑的行为更不可预测,以及它们的半刚性梁柱和底板关节。满刻度实验研究都是非常需要以理解和定量存储机架的整体性能,并提高他们的设计地震作用。 UD udFor第一次在欧洲,由于通过研究基金煤钢提供的资金(RFCS),广泛的满量程推过测试程序已被8满载托盘货架试样(4个无支撑和4支撑机架)中进行,提供了一种由4个不同的国际机架生产者。 UD udThis文件介绍了满刻度的实验结果推过在满载无支撑标本的向下过道(纵向)方向上执行的测试。具体地,所测试的样品的实验全球容量曲线呈现,讨论影响齿条响应,以及不同机架类型学的失效机理的关键因素。另外,每个样品的行为因数(Q)值是从测试结果的再分析的。无支撑的机架到软层机构的脆弱性证明,突出其原因。为了保证在地震作用全球同质的延展性,与无支撑机架的地板的连接设计的新的安全要求一起提供设计指南。

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