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首页> 外文期刊>Journal of intelligent material systems and structures >Development and design of a new self- centering energy-dissipative brace for steel structures
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Development and design of a new self- centering energy-dissipative brace for steel structures

机译:新型钢结构自定心耗能支架的设计与开发

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Buckling-restrained braces are able to provide significant energy dissipation along with large ductile capacity through their excellent hysteretic behavior. However, due to their lack of recentering capability, buckling-restrained braced frames experience large residual drifts following a strong earthquake, leading to enormous repair costs. To overcome this shortcoming, super-elastic shape memory alloy braces with excellent recentering capacity have been introduced as a viable alternative to steel braces. Nevertheless, their energy dissipation capacity is usually low for seismic applications. This article proposes a robust self-centering energy-dissipative brace to be used in structural frames. The brace is capable of providing adequate energy dissipation capacity in the structure while simultaneously bringing the structure to its original configuration after the earthquake.
机译:屈曲约束的支撑架具有出色的滞回性能,能够提供显着的能量消散以及较大的延展能力。但是,由于屈曲能力不足,受屈曲约束的支撑框架在强烈地震后会出现较大的残余漂移,从而导致巨大的维修费用。为了克服该缺点,已经引入了具有优异的重载能力的超弹性形状记忆合金支架,以替代钢支架。然而,对于地震应用,它们的能量消散能力通常较低。本文提出了一种坚固的自定心耗能支架,可用于结构框架。该支撑件能够在结构中提供足够的能量消散能力,同时在地震后将结构恢复到其原始配置。

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