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Experimental and Numerical Investigation of Steel Moment Resisting Frame with U-Shaped Metallic Yielding Damper

机译:U型金属屈服阻尼器抗弯矩试验与数值研究

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摘要

This study introduces U-shape metallic yielding damper (UMYD) as an energy dissipation system. This damper may be used as a replaceable and cost-effective tool and fuse in structural frames to improve lateral ductility, energy absorption and damping of structural systems under earthquakes. A series of static cyclic tests were conducted in order to examine the performance of UMYD and the response of force-displacement, lateral strength, elastic stiffness and energy absorption were achieved. Finite element numerical studies were conducted through changing damper geometrical parameters. Mathematical model was presented to estimate elastic stiffness of damper and was compared with numerical specimen results, which acceptable conformity. Finite elements models indicated that UMYD abilities energy absorbability in large displacements without loss of strength and stiffness, which may be a proper complementary system for lateral load-bearing systems. The behaviour of two 4- and 8-storey steel frames with moment resisting frame system was analysed under four different earthquakes under two states of with and without damper. The seismic performance of frames was analysed with respect to floors inter-storey drift, frame base shear and floors shear. The non-linear time historey analysis results demonstrated that 8-storey frame without UMYD failed to maintain the structure performance level within life-safety level, whilst under all states using damper, performance level remained within such level and a decrease in floors shear and inter-storey drift was observed.
机译:本研究介绍了U型金属屈服阻尼器(UMYD)作为能量消散系统。该减震器可用作结构框架中的可替换且具有成本效益的工具和保险丝,以改善地震作用下结构系统的横向延展性,能量吸收和阻尼。为了检验UMYD的性能,进行了一系列的静态循环测试,并获得了力-位移,横向强度,弹性刚度和能量吸收的响应。通过改变阻尼器的几何参数进行了有限元数值研究。提出了估计减震器弹性刚度的数学模型,并与数值样本结果进行了比较,结果令人满意。有限元模型表明,UMYD能够在大位移下吸收能量,而不会损失强度和刚度,这可能是侧向承重系统的合适补充系统。在有阻尼器和无阻尼器两种状态下,在四种不同的地震作用下,分析了两个带有抗弯框架系统的4层和8层钢框架的行为。分析了框架的抗震性能,涉及地板层间漂移,框架基础剪力和地板剪力。非线性时间历史分析结果表明,没有UMYD的8层框架无法将结构性能水平维持在生命安全水平内,而在使用阻尼器的所有状态下,性能水平均保持在该水平内,并且地板剪力和内力降低层漂移。

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