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Seismic performance of steel moment resisting frames utilizing superelastic shape memory alloys

机译:采用超弹性形状记忆合金的抗弯矩钢框架的抗震性能

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摘要

Steel structures dissipate the seismic energy through steel yielding, which results in residual deformations. Although conventional earthquake-resisting structural systems provide adequate seismic safety, they experience significant structural damage when exposed to strong ground shaking. Seismic residual drifts complicate the repair of damaged structures or render the structure as irreparable. Therefore, systems that can minimize the seismic residual deformations are needed. Superelastic shape memory alloys (SMAs) have the ability to undergo large deformations and recover all plastic deformations upon unloading. Their utilization in steel structures can significantly reduce seismic residual deformations, which will facilitate post-seismic retrofitting. Although the literature provides few research data on using SMA in steel beam-column connections, previous research did not address their optimum use. This paper identifies the required locations of SMA connections in a typical steel moment resisting frame to enhance its seismic performance in terms of maximum inter-storey drift, residual deformations, and damage scheme. (C) 2016 Elsevier Ltd. All rights reserved.
机译:钢结构通过屈服来耗散地震能量,从而导致残余变形。尽管常规的抗震结构系统提供了足够的地震安全性,但是当暴露于强烈的地面震动时,它们会遭受重大的结构破坏。地震残余漂移使受损结构的修复复杂化或使该结构无法修复。因此,需要能够使地震残余变形最小化的系统。超弹性形状记忆合金(SMA)具有承受大变形并在卸载时恢复所有塑性变形的能力。它们在钢结构中的利用可以显着减少地震残余变形,这将有助于地震后的改造。尽管文献很少提供有关在钢制梁柱连接中使用SMA的研究数据,但先前的研究并未解决它们的最佳使用问题。本文确定了典型钢制抗弯框架中SMA连接的所需位置,以通过最大层间漂移,残余变形和破坏方案来增强其抗震性能。 (C)2016 Elsevier Ltd.保留所有权利。

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