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Optimal sliding force characteristics of friction dampers for seismic response control of building structures considering sway-rocking motion

机译:考虑摇摆摇摆运动的建筑结构地震响应控制摩擦阻尼器的最佳滑动力特性

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摘要

This study aimed to understand the optimal characteristics of friction dampers considering sway-rocking (SR) motion in vibration control structures during earthquakes. The nonlinear seismic response was numerically obtained using a six-story reinforced-concrete building model with a friction damper and SR springs and damping elements. The results indicate that the SR case shows a less sensitive response change with increased damper sliding force and shows a higher optimal damper sliding force, compared with the fixed-base (FB) case. Moreover, a reversal phenomenon may occur in the response curve for the average peak story drift against the sliding force between the FB and SR cases. This response reversal phenomenon was further analyzed using experimental data from shake table testing using a specimen with a friction device supported by a SR mechanism. This study contributes to damper optimization and effective design for friction-damped structures considering soil-structure interactions.
机译:本研究旨在了解地震期间考虑振动控制结构中的摇摆摇摆(SR)运动的摩擦阻尼器的最佳特性。使用具有摩擦阻尼器和SR弹簧和阻尼元件的六层钢筋混凝土建筑模型进行数值基本地获得非线性地震反应。结果表明,与固定底座(FB)壳体相比,Sr案例显示了具有增加的阻尼滑动力并且显示出更高的最佳阻挡滑动力的敏感响应变化。此外,在响应曲线中可能发生反转现象,用于抵抗FB和SR壳体之间的滑动力的平均峰值故事。通过使用具有由SR机构支持的摩擦装置的摩擦装置的摇动台测试,使用实验数据进一步分析该响应反转现象。考虑到土结构相互作用,该研究有助于对摩擦阻尼结构的阻尼优化和有效设计。

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