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首页> 外文期刊>Journal of structural engineering >Experimental Performance Assessment of Large-Scale Polyurethane-Enhanced Damage-Resistant Bridge Columns with Energy Dissipation Links. Ⅱ: Quantitative Results
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Experimental Performance Assessment of Large-Scale Polyurethane-Enhanced Damage-Resistant Bridge Columns with Energy Dissipation Links. Ⅱ: Quantitative Results

机译:大型聚氨酯增强抗损伤桥柱具有能量耗散环节的实验性能评估。 Ⅱ:定量结果

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This paper, which is the first of two companion papers, investigates the performance of a novel bridge column design, termed polyurethane (PU)-enhanced rocking column with energy dissipation (ED) links, through a large-scale testing program. The proposed column design offers explicit damage control via damage-resistant end segments made of PU, ED and flexural strength/stiffness through ED links, and self-centering through internal unbonded post-tensioning. The PU segments have high deformability, allowing large lateral column deformations with negligible damage. The ED links are in the form of buckling-restrained bars made of high-performance steel and offer hysteretic damping and flexural stiffness and strength to reduce the seismically induced displacement demands. The experimental program included cyclic testing, at various loading rates, of large-scale (approximately 1:2.5) PU-enhanced cantilever rocking columns with two designs for the PU segment: (1) solid PU segment, and (2) axisymmetrically bilayered segment with an exterior PU layer to withstand seismic loads and an internal reinforced concrete core to sustain long-term axial service loads and provide resistance against creep. The specimens are subjected to displacement-controlled lateral cyclic loading of increasing amplitude (exceeding a 10% drift ratio) at several drift ratio rates (up to 1=s). A tested column is repaired via ED link release and retightening to demonstrate their rapid reparability characteristics and are retested to demonstrate the recovery of the original column properties. While ED link release and retightening (i.e., ED link reuse) is adopted in this study, because the yielding of the ED links was small as verified in the second companion paper by the practically identical response of the original and retrofitted column, it can be deduced that ED link replacement (i.e., use of new/pristine ED links) would also restore the original column properties. A rocking-only precast concrete column is also tested under the same loading protocols to serve as reference for comparisons. This first companion paper outlines the experimental program, quantifies the observed damage of the proposed column design for a range of seismic hazard intensities and compares it with that of the rocking-only column, and validates the capability of ED link release and retightening (and, by extension, ED link replacement) as a repair method that recovers the damage resistance/avoidance properties of the original system. Compared to conventional RC rocking columns, the proposed column design demonstrated significantly higher resistance against damage in terms of concrete spalling and crushing. (C) 2021 American Society of Civil Engineers.
机译:本文是两个伴随文件中的第一个,调查了一种新型桥柱设计的性能,通过大规模测试程序,通过耗散节能(ED)链接,使聚氨酯(PU)-Enhing摇摆柱的性能进行调查。所提出的柱设计通过通过ED链路的PU,ED和弯曲强度/刚度制成的损坏端部段提供明确的损伤控制,并通过内部未粘附后张紧的自定心。 PU段具有高变形性,允许大的横向柱变形具有可忽略的损坏。 ED链路采用屈曲限制的钢筋,由高性能钢制成,提供滞后阻尼和抗弯刚度和强度,以降低地震诱导的位移需求。实验计划包括循环测试,以各种装载率,大规模(约1:2.5)PU-增强悬臂摇摆柱,具有两个设计用于PU段:(1)固体PU段,和(2)轴对称双层段外部PU层承受地震载荷和内部钢筋混凝土芯,以维持长期轴向服务负荷并提供抗蠕变的抵抗力。在几个漂移比率(最多1 = S最多1 = S)下,将样本受到增加的幅度(超过10%漂移比)的位移控制的横向循环负载。通过ED链路释放和重新调整测试栏,以证明它们的快速可折续性特性,并重新测试以证明原始列特性的恢复。在本研究中采用ED链路释放和预测(即,ED链路重用),因为ED链路的屈服小,因为通过原始和改装柱的实际上相同的响应在第二次伴纸中验证,因此可以推断出ED链路替换(即使用新/原始ED链接)还将恢复原始列属性。仅在相同的装载方案下测试仅摇摆的预制混凝土柱,以作为比较的参考。本第一个伴随论文概述了实验计划,量化了所拟议的柱设计的观察到一系列地震危险强度,并将其与摇摆柱的损伤进行比较,并验证ED链路释放和重新升级的能力(以及,通过扩展,ED链路替换)作为恢复原始系统的损坏电阻/避免性能的修复方法。与传统的RC摇摆柱相比,所提出的柱设计在混凝土剥落和破碎方面表现出对抗损坏的显着较高。 (c)2021年美国土木工程师协会。

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