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Wire rope isolators for seismically base-isolated lightweight structures: Experimental characterization and mathematical modeling

机译:地震基础隔离轻质结构的钢丝绳隔离器:实验表征和数学建模

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The results of an extensive series of dynamic and static experimental tests conducted on four Wire Rope Isolators (WRIs) under different values of vertical load are presented. The main aim of this work is identifying the mechanical characteristics of WRIs in three displacements ranges, that is, small, relatively large and large displacements ranges, to allow the use of these metal devices in the base isolation system of seismically base-isolated lightweight structures. In order to simulate the dynamic behavior of WRIs in the two principal horizontal directions, namely, Roll and Shear directions, a one dimensional (Id) Nonlinear Exponential Model, able to simulate the increase of the tangent stiffness observed at larger displacements, is proposed. Compared to the widely used Bouc-Wen model, the proposed one does not require the numerical solution of a first order ordinary nonlinear differential equation, thus decreasing the computational effort of nonlinear time history analyses, and contains a smaller number of parameters to be identified. The mathematical model has been validated by comparing the experimental hysteresis loops obtained during cyclic tests with those predicted analytically. (C) 2017 Elsevier Ltd. All rights reserved.
机译:给出了在不同垂直载荷值下对四个钢丝绳隔离器(WRI)进行的一系列动态和静态实验测试的结果。这项工作的主要目的是在三个位移范围(即小,相对大和大位移范围)中识别WRI的机械特性,以允许将这些金属器件用于地震基础隔离轻质结构的基础隔离系统中。为了模拟WRI在两个主要水平方向(即滚动和剪切方向)上的动态行为,提出了一种一维(Id)非线性指数模型,该模型能够模拟在较大位移下观察到的切线刚度的增加。与广泛使用的Bouc-Wen模型相比,提出的模型不需要一阶常态非线性微分方程的数值解,从而减少了非线性时程分析的计算量,并且包含较少的待识别参数。通过将循环测试过程中获得的实验磁滞回线与解析预测的结果进行比较,验证了数学模型的有效性。 (C)2017 Elsevier Ltd.保留所有权利。

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