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Hysteretic performance of a new blind bolted connection to concrete filled columns under cyclic loading: An experimental investigation

机译:循环荷载作用下混凝土填充柱新型盲螺栓连接的滞回性能:实验研究

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摘要

The structural performance and reliability of a new blind-bolting technique is investigated in this study. The new blind-bolt is termed Extended Hollobolt (EHB) and is a modification of the standard Hollobolt. The EHB enhances the tensile resistance and stiffness of the fastener by anchoring it in the concrete infill of a tubular column. This paper reports on an investigation into the cyclic behaviour of end-plate connections to concrete filled tubular (CFT) columns using the EHB. A series of six full-scale connections were tested under quasi-static cyclic loading. The key parameters investigated were amplitude of cyclic loading procedure, bolt grade, tube wall thickness, and concrete grade. The strength, stiffness, rotation capacity and energy dissipation capacity of the connections were evaluated at different load cycles. The EHB provided stable hysteretic behaviour with appropriate level of strength and stiffness, where strength is comparable to that of standard bolt-and-nut fasteners and where rigid behaviour can be achieved. The influence of tube wall thickness and concrete grade on the performance of the connection in terms of strength, stiffness, ductility and failure mode is investigated. It is shown that the required performance can be achieved by controlling the tube wall thickness and concrete strength. The results indicate that the connection can offer energy dissipation capacity and ductility appropriate for its potential use in seismic design. © 2012 Elsevier Ltd.
机译:在这项研究中,研究了一种新的螺栓连接技术的结构性能和可靠性。新的盲栓称为扩展Hollobolt(EHB),是对标准Hollobolt的修改。 EHB通过将紧固件锚固在管状柱的混凝土填充物中来增强其抗拉强度和刚度。本文报告了有关使用EHB的端板连接至钢管混凝土(CFT)柱的循环行为的研究。在准静态循环载荷下测试了一系列六个全尺寸连接。研究的关键参数是循环加载程序的振幅,螺栓等级,管壁厚度和混凝土等级。在不同的负载循环下评估了连接的强度,刚度,旋转能力和能量耗散能力。 EHB具有适当的强度和刚度水平,可提供稳定的磁滞性能,其强度可与标准螺栓和螺母紧固件相媲美,并且可实现刚性性能。研究了管壁厚度和混凝土等级对连接性能的影响,包括强度,刚度,延性和破坏模式。结果表明,通过控制管壁厚度和混凝土强度可以实现所需的性能。结果表明,该连接可以提供适合其在地震设计中潜在用途的能量消散能力和延展性。 ©2012爱思唯尔有限公司。

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