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Superelastic viscous dampers for seismically resilient steel frame structures

机译:用于地震弹性钢框架结构的超弹性粘性阻尼器

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This study proposes a passive control device based on superelastic behavior of shape memory alloys (SMAs) and investigates the device performance for improving response of steel frame structures subjected to multi-level seismic hazards. The device, named as Superelastic Viscous Damper (SVD), exhibits both re-centering and energy-dissipating capabilities and consists of SMA elements and a viscoelastic (VE) damper. SMA elements are mainly used as re-centering unit and the viscoelastic damper is employed as energy dissipation unit. The VE damper consists of two layers of VE material bonded with three steel plates. Energy is dissipated through the shear deformation of VE material. Each SMA element forms a continuous loop; wrapping the loops around the outer two plates improves compactness and efficiency. An analytical model of a three-story benchmark steel building with the installed SVDs is developed to determine the response of the structure under a ground motion input. A neuro-fuzzy model is used to capture nonlinear behavior of the SMA elements of the SVD. Nonlinear response history analyses are conducted at MCE level seismic hazard. A suite of 22 ground motion records is employed in dynamic analysis. Peak interstory drift, peak absolute floor acceleration, and residual story drift are selected as the primary demand parameters. Results shows that SVDs can effectively mitigate dynamic response of steel frame structures under strong ground motions and enhance their post-earthquake functionality.
机译:该研究提出了一种基于形状记忆合金(SMA)的超弹性行为的被动控制装置,并研究了改善经受多级地震危害的钢框架结构响应的装置性能。命名为超弹性粘性阻尼器(SVD)的装置,展示重定位和能量消散能力,包括SMA元件和粘弹性(VE)阻尼器。 SMA元件主要用作重定位单元,粘弹性阻尼器用作能量耗散单元。 Ve Damper由两层ve材料组成,与三个钢板粘合。通过VE材料的剪切变形来消散能量。每个SMA元素都形成连续循环;在外部两个板周围缠绕环,提高了紧凑性和效率。开发了一种具有安装SVDS的三层基准钢建筑的分析模型,以确定在地面运动输入下的结构的响应。神经模糊模型用于捕获SVD的SMA元素的非线性行为。非线性响应历史分析在MCE水平地震危险中进行。动态分析中采用了一套22个地面运动记录。峰值颠覆漂移,峰值绝对地板加速度和残留故事漂移作为主要需求参数。结果表明,SVDS可以在强大的地面运动下有效地减轻钢框架结构的动态响应,并增强其后地震功能。

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