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Seismic Isolation Devices Based on Sliding Between Surfaces with Variable Friction Coefficient

机译:基于变摩擦系数的面间滑动的隔震装置

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摘要

Base isolators are effective tools to favor a high level of building performance under lateral load, providing protection to both structural and nonstructural elements. In this context, this paper discusses the possibility of employing materials with different frictional properties to enhance the response of flat and curved-surface base isolators. Two innovative devices, referred to as "BowTie" and "BowC," are introduced and discussed in some detail. A series of nonlinear time history analyses are then conducted using a customized computer program and considering a number of case study structures, designed applying a displacement-based approach. The results of the analyses are used to discuss the key differences between variable friction and constant friction sliding isolation devices. It is shown that the newly proposed isolators may represent an improvement on classic base-isolation solutions, in light of their higher energy absorption capacity, which contributes to significantly enhance their performance.
机译:基础隔离器是有效的工具,可在侧向载荷作用下提高建筑性能,为结构和非结构元件提供保护。在这种情况下,本文讨论了使用具有不同摩擦特性的材料来增强平面和曲面基础隔离器的响应的可能性。介绍并详细讨论了两种创新的设备,分别称为“ BowTie”和“ BowC”。然后,使用定制的计算机程序并考虑了许多案例研究结构(采用基于位移的方法设计),进行了一系列非线性时程分析。分析结果用于讨论可变摩擦和恒定摩擦滑动隔离装置之间的关键区别。结果表明,鉴于其较高的能量吸收能力,新提出的隔离器可代表对经典的基础隔离解决方案的改进,这有助于显着提高其性能。

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  • 来源
    《Earthquake spectra》 |2016年第4期|2291-2315|共25页
  • 作者单位

    Univ Washington, Dept Civil & Environm Engn, Seattle, WA 98195 USA;

    Studio Calvi Srl, Pavia, Italy;

    Scuola Univ Super, IUSS, Pavia, Italy;

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  • 正文语种 eng
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