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Seismic response control of a structure isolated by flat sliding bearing and nonlinear restoring spring: Experimental study for performance evaluation

机译:滑动滑动轴承与非线性复位弹簧隔离的结构的地震响应控制:性能评估的实验研究

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This study presents the outcome of an experimental evaluation of a structure isolated by flat sliding bearing with nonlinear restoring springs. The composite device of flat sliding bearing with nonlinear stiffening springs, which has been proposed recently, has the following advantages: (i) its behavior is similar to that of flat sliding bearing for minor to moderate level of shaking, (ii) for high intensity shaking, the device reduces the peak bearing displacement in comparison to the flat sliding bearing, and (iii) the device minimizes the bearing residual displacement irrespective of intensity of shaking. The experimental study conducted with a steel moment-resisting frame demonstrates that the device is quite effective in reducing the peak and residual bearing displacements. Further, it is found that other parameters such as peak inter-story drift and peak horizontal floor acceleration are not significantly affected by addition of restoring springs. Hence, the proposed system is an ideal candidate for a cost-effective base isolation system.
机译:这项研究提出了对带有非线性恢复弹簧的平面滑动轴承隔离的结构进行实验评估的结果。最近提出的带有非线性加劲弹簧的平面滑动轴承的复合装置具有以下优点:(i)其行为类似于平面滑动轴承的轻微至中度振动,(ii)高强度振动时,与平面滑动轴承相比,该设备可减少峰值轴承位移;(iii)该设备可将轴承残余位移降至最低,而与振动强度无关。在钢制抗弯框架上进行的实验研究表明,该装置在减少峰值和残余轴承位移方面非常有效。此外,发现其他参数(例如层间峰值漂移和水平地板峰值加速度)不受复位弹簧的影响。因此,所提出的系统是具有成本效益的基础隔离系统的理想候选者。

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