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Integrated shape memory alloy devices toward a high-performance glazed curtain wall seismic retrofit

机译:集成形状记忆合金器件,用于高性能玻璃幕墙抗震改造

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Recent dynamic events, such as Alaska and San Fernando earthquakes, have shown shortcomings in contemporary façade design processes, exacerbated by the occurrence of non-structural component damage and failure when subjected to extreme wind loads or seismic events. Accordingly, in the present work the feasibility of an original and advanced dissipation technology is pursued investigating on the façade performance by testing and modeling strategies.Initially, based on the experimental activities performed at the Construction Technologies Institute (ITC) laboratories of the Italian National Research Council (CNR), numerical simulations are run to interpret and reproduce the experimentally tested response of two full-scale façade units. Thereafter, sophisticated 3D finite element models are calibrated acquiring information on the fundamental mechanisms accountable for the dynamics in façades.Subsequently, by virtue of the peculiar properties of Shape Memory Alloys (SMA), such as superelasticity and shape memory effect, innovative curtain wall joints are designed, focusing on the improvement of the façade energy dissipation performance and on the enhancement of the overall structural behavior.Finally, the improvements are demonstrated both globally and locally: on one hand, traditional and novel curtain wall force-drift capacity curves are compared; on the other hand, the effectiveness of the suggested device is shown, when built on a reference structure.
机译:最近的动态事件,例如阿拉斯加和圣费尔南多地震,显示了当代立面设计过程中的缺陷,当遭受极端风荷载或地震事件时,非结构性组件的损坏和破坏会加剧这种缺陷。因此,在目前的工作中,通过测试和建模策略来研究一种新颖和先进的消散技术的可行性。首先,基于意大利国家研究中心建筑技术研究所(ITC)实验室进行的实验活动理事会(CNR)进行了数值模拟,以解释和重现两个满比例立面单元的试验测试响应。此后,对复杂的3D有限元模型进行校准,以获取有关立面动力学的基本机理信息。随后,由于形状记忆合金(SMA)的特殊特性(例如超弹性和形状记忆效应),创新了幕墙接缝设计时着重于改善幕墙的消能性能和整体结构性能。最后,在全球和局部范围内都进行了改进:一方面,比较了传统的和新颖的幕墙力-漂移能力曲线。 ;另一方面,显示了建议的设备在参考结构上的有效性。

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