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Effects of the long‐term behaviour of isolation devices on the seismic response of base‐isolated buildings

机译:隔离装置长期行为对基层底座建筑地震响应的影响

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Seismic isolation is widely used around the world for the protection of buildings, but its long-term behaviour was not considered in detail in past seismic design of isolated structures. Nevertheless, the American seismic code has recently introduced an explicit procedure aimed at evaluating upper-bound and lower-bound values of isolation system properties. Yet there are few studies on the evolution and extent of the deterioration of elastomeric (e.g., high-damping rubber bearings) and sliding (e.g., flat sliding bearings) isolators during their lifetime and on their impact on the seismic behaviour of the superstructure. To investigate this problem, six-storey-reinforced concrete buildings, base isolated with high-damping rubber bearings acting alone or in combination with flat sliding bearings, are designed without considering the variability of mechanical properties of the isolation system due to ageing and air temperature. Then, based on experimental results from accelerated ageing tests at high temperature, mathematical models are implemented to account for oxidation of elastomers and friction changes. The variability of mechanical properties at different mean temperatures, due to seasonal thermal variations, is also considered. Finally, fragility curves are developed for the base-isolation system and superstructure on the basis of nonlinear dynamic analysis of the degraded test structures.
机译:地震隔离广泛应用于世界各地,以保护建筑物,但它在过去的结构的过去的地震设计中没有考虑其长期行为。尽管如此,美国地震代码最近介绍了一种明确的程序,旨在评估隔离系统属性的上限和较低限制的值。然而,少数关于弹性体(例如,高阻尼橡胶轴承)的劣化的进化和程度的研究以及在它们的寿命期间滑动(例如,平滑轴承)隔离器和对上部结构的地震行为的影响。为了调查这个问题,设计了六层钢筋混凝土建筑,用高阻尼橡胶轴承独立或与平滑轴承组合的高阻尼橡胶轴承隔离,而无需考虑由于老化和空气温度导致隔离系统的机械性能的可变性。然后,基于高温加速老化试验的实验结果,实施了数学模型以考虑弹性体的氧化和摩擦变化。还考虑了由于季节性热变化而在不同平均温度下的机械性能的可变性。最后,基于非线性动力学分析的降解测试结构的基于基础隔离系统和超结构,开发脆弱曲线。

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