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Experimental Shake Table Testing of an Adaptive Passive Negative Stiffness Device within a Highway Bridge Model

机译:公路桥梁模型中自适应被动负刚度装置的实验振动台测试

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摘要

The implementation of a mechanical negative stiffness device (NSD) within a reduced-scale highway bridge model and its performance under seismic loading conditions is evaluated via shaking table tests. Four different isolation system configurations are considered: isolated bridge (TB), TB with viscous dampers, TB with NSDs, and IB with viscous dampers and NSDs. In addition, two bridge pier configurations were considered: one with flexible piers (mimicking a middle span of a multi-span bridge) and one with braced piers (mimicking a single span bridge supported on abutments). The main feature of the NSD is a large pre-compressed spring, which can push the structure away from its initial undeformed position and thus induce negative stiffness behavior. The experimental results clearly demonstrate the effectiveness of the NSDs in limiting the seismic response of the bridge and provide validation of numerical simulation results wherein numerical models of the bridge model components were calibrated via system identification testing.
机译:通过振动台试验评估了在缩小规模的公路桥梁模型中机械负刚度装置(NSD)的实现及其在地震荷载条件下的性能。考虑了四种不同的隔离系统配置:隔离桥(TB),带粘性阻尼器的TB,带NSD的TB和带粘性阻尼器和NSD的IB。此外,还考虑了两种桥墩配置:一种具有柔性墩(模仿多跨度桥梁的中间跨度),一种具有支撑墩(模仿支撑在基台上的单跨度桥梁)。 NSD的主要特征是较大的预压缩弹簧,可以将结构推离其初始未变形位置,从而引起负刚度行为。实验结果清楚地证明了NSD在限制桥梁地震响应方面的有效性,并提供了数值模拟结果的验证,其中通过系统识别测试对桥梁模型部件的数值模型进行了校准。

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