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首页> 外文期刊>Journal of structural engineering >Experimental Study of Novel Self-Centering Seismic Base Isolators Incorporating Superelastic Shape Memory Alloys
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Experimental Study of Novel Self-Centering Seismic Base Isolators Incorporating Superelastic Shape Memory Alloys

机译:具有超弹性形状记忆合金的新型自定心地震底座隔离器的实验研究

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This paper proposes novel self-centering (SC) seismic base isolators by utilizing shape memory alloy U-shaped dampers (SMA-UDs) with favorable superelastic behavior. Two different designs, which incorporate the SMA-UDs into a conventional laminated rubber bearing with a lead core or that with steel-UDs, are investigated. In both designs, four groups of superelastic SMA-UDs are arranged symmetrically around the rubber bearings. In the SC seismic base isolators, the laminated rubber bearings withstand the high vertical loads from superstructures, and the lead cores or the steel-UDs provide the majority of energy dissipation through hysteresis behavior under cyclic loading. Moreover, the superelastic SMA-UDs spontaneously offer excellent SC force, which can effectively minimize residual deformations and reduce downtime after earthquakes. This study first illustrates the working mechanism and performance of the SMA-UDs in the base isolators through a series of component tests under loadings with different directions (i.e., in-plane and out-of-plane directions), protocols, and frequencies. Subsequently, the principles and performances of the SC base isolators are examined systematically through the quasistatic cyclic loading tests of the conventional and proposed base isolators. Test results demonstrate that these SC base isolators can exhibit satisfactory SC capability and stable energy dissipation. Moreover, the hysteresis characteristics of the SC base isolators are nearly isotropic, thereby enabling the SC base isolators to resist seismic actions in any horizontal direction. In comparison with conventional seismic base isolators, the proposed SC base isolators will provide a promising type of high-performance seismic-resilient devices required by modern civil infrastructure. (C) 2020 American Society of Civil Engineers.
机译:本文采用具有良好的超弹性行为的形状记忆合金U形阻尼器(SMA-UDS)提出了新型自定心(SC)地震基座隔离器。研究了两种不同的设计,其将SMA-UDS与具有引线芯或具有钢 - UDS的传统层压橡胶轴承中的常规层压橡胶轴承。在两个设计中,四组超弹性SMA-UDS在橡胶轴承周围对称地布置。在SC地震基底隔离器中,叠层橡胶轴承可承受来自上部结构的高垂直载荷,并且铅芯或钢 - 通过循环载荷下的滞后行为提供大部分能量耗散。此外,超弹性SMA-UDS自发地提供优异的SC力,可以有效地减少残留变形并减少地震后的停机时间。该研究首先通过在具有不同方向(即面内和面内方向),协议和频率的加载中,通过一系列元件测试来说明基础隔离器中的SMA-UDS的工作机制和性能。随后,系统地通过传统的基本隔离器的Quasistatic循环负载测试系统地检查SC基分离器的原理和性能。测试结果表明,这些SC碱隔离器可以表现出令人满意的SC能力和稳定的能量耗散。此外,SC碱隔离器的滞后特性几乎是各向同性的,从而使SC基座隔离器能够抵抗任何水平方向的地震动作。与传统的地震基础隔离器相比,所提出的SC基部隔离器将提供现代民用基础设施所需的有希望的高性能地震弹性装置。 (c)2020年美国土木工程师协会。

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