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Seismic Assessment of Concentrically Braced Steel Frames with Shape Memory Alloy Braces

机译:带形状记忆合金支撑的同心支撑钢框架的抗震评估

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摘要

The use of special concentrically braced frames has increased since the 1994 Northridge and 1995 Hyogoken-Nanbu Earthquakes. However, past performance suggests limited ductility and energy dissipation in braced frame systems due to buckling of conventional braces. In order to address this limitation, three- and six-story concentrically braced frames with superelastic shape memory alloy (SMA) braces are studied to evaluate their seismic performance in comparison to traditional systems. SMAs are unique metallic alloys that have the ability to undergo large deformations while reverting back to their original undeformed shape providing recentering capabilities to the braced frame. Detailed analytical models of the frames with SMA braces are developed and two suites of ground motions are used to evaluate the structures with respect to interstory drift and residual drift. The results suggest that the SMA braces are effective in limiting interstory drifts and residual drifts during an earthquake, in part, due to the recentering nature of superelastic SMAs.
机译:自1994年Northridge地震和1995年Hyogoken-Nanbu地震以来,增加了使用特殊的同心支撑框架。但是,过去的性能表明,由于传统支撑的屈曲,支撑框架系统的延展性和能量消耗有限。为了解决这个限制,研究了三层和六层同心支撑框架以及超弹性形状记忆合金(SMA)支撑,以评估它们与传统系统相比的抗震性能。 SMA是独特的金属合金,能够承受较大的变形,同时又恢复到其原始未变形的形状,从而为支撑框架提供重新定位的能力。开发了具有SMA支撑的框架的详细分析模型,并使用了两组地面运动来评估结构的层间位移和残余位移。结果表明,SMA支架有效地限制了地震期间的层间漂移和残余漂移,这在一定程度上是由于超弹性SMA的最新性质。

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