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PASSIVE SEISMIC CONTROL USING SHAPE MEMORY ALLOY SPRINGS

机译:使用形状记忆合金弹簧的被动地震控制

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摘要

In this paper, seismic response analysis is made both experimentally and numerically for a passive isolation device with pseudoelastic shape memory alloy (SMA) spring as a restoring force component. Thanks to the material nonliniarity and the geometrical nonliniarity, the SMA spring used in the device has well-defined softening, or "force limiting", property that can suppress the acceleration response of the superstructure by limiting the seismic force transmitted from the ground. To illustrate how the presented device can suppress the acceleration response under the prescribed level, shaking table tests of a reduced-scale model of uniaxial isolator are carried out with seismic inputs appropriately scaled both in time and in amplitude. Then, a Preisach model of the SMA spring is constructed for the purpose of design study, and verified by comparing the simulated seismic responses with the exoerimental ones.
机译:在本文中,对以伪弹性形状记忆合金(SMA)弹簧作为恢复力分量的被动隔振装置进行了实验和数值分析。由于材料的非直线性和几何非直线性,设备中使用的SMA弹簧具有定义明确的软化或“力限制”特性,可通过限制从地面传递的地震力来抑制上部结构的加速度响应。为了说明所提出的设备如何在规定的水平上抑制加速度响应,对单轴隔离器的缩比例模型的振动台测试进行了地震输入的时间和振幅适当缩放。然后,为进行设计研究,构建了SMA弹簧的Preisach模型,并通过将模拟地震响应与实验响应进行了比较来进行验证。

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