Structural rehabilitation using high damping rubber bearing (HDRB)

A. Vatanshenas, Takahiro Mori, N. Murota
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引用次数: 1

Abstract

High damping rubber bearings show highly nonlinear stress-strain behaviour. Deformation-history integral (DHI) model which can estimate small strain stiffness degradation and nonlinear plasticity via a relatively simple innovative formulation is implemented in this study to model HDRB as the rehabilitation method for a seismically vulnerable building. Considered structure in this study is a three-dimensional, four-story steel frame residential building with a concentrically braced system. Nonlinear direct integration time history analysis and plastic hinges approach were implemented to evaluate structural behaviour of considered structure. It was observed that structural responses enhanced significantly after rehabilitation. Absolute maximum base shear values decreased 61.8% and 92.2% in the worst and best cases, respectively. Most of structural elements remained elastic after rehabilitation and required performance level was satisfied.
采用高阻尼橡胶支座(HDRB)进行结构修复
高阻尼橡胶支座具有高度非线性的应力-应变特性。本文采用变形历史积分(DHI)模型,通过一个相对简单的创新公式来估计小应变刚度退化和非线性塑性,将HDRB作为地震易损建筑的修复方法进行建模。本研究考虑的结构是一个具有同心支撑系统的三维四层钢框架住宅建筑。采用非线性直接积分时程分析和塑性铰方法对所考虑的结构进行了性能评价。观察到结构反应在康复后明显增强。在最差和最佳情况下,绝对最大基底剪切值分别下降61.8%和92.2%。修复后,大部分结构单元仍保持弹性,满足要求的性能水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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