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Seismic behavior of properly designed CBFs equipped with NiTi SMA braces

机译:正确设计的配备NiTi SMA支架的CBF的抗震性能

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摘要

Shape memory alloys (SMA) exhibit superelasticity which refers to the capability of entirely recovering large deformation upon removal of applied forces and dissipating input energy during the cyclic loading reversals when the environment is above the austenite finish temperature. This property is increasingly favored by the earthquake engineering community, which is currently developing resilient structures with prompt recovery and affordable repair cost after earthquakes. Compared with the other SMAs, NiTi SMAs are widely deemed as the most promising candidate in earthquake engineering. This paper contributes to evaluate the seismic performance of properly designed concentrically braced frames (CBFs) equipped with NiTi SMA braces under earthquake ground motions corresponding to frequently-occurred, design-basis and maximum considered earthquakes. An ad hoc seismic design approach that was previously developed for structures with idealized SMAs was introduced to size the building members, by explicitly considering the strain hardening characteristics of NiTi SMA particularly. The design procedure was conducted to compliant with a suite of ground motions associated with the hazard level of design-basis earthquake. A total of four six-story CBFs were designed by setting different ductility demands for SMA braces while designating with a same interstory drift target for the structural systems. The analytical results show that all the designed frames successfully met the prescribed seismic performance objectives, including targeted maximum interstory drift, uniform deformation demand over building height, eliminated residual deformation, controlled floor acceleration, and slight damage in the main frame. In addition, this study indicates that the strain hardening behavior does not necessarily impose undesirable impact on the global seismic performance of CBFs with SMA braces.
机译:形状记忆合金(SMA)表现出超弹性,是指当环境温度高于奥氏体终点温度时,在循环载荷反转过程中,移除施加的力后可完全恢复大变形并耗散输入能量的能力。此属性越来越受到地震工程界的青睐,该界目前正在开发具有复原力的结构,并能在地震后迅速恢复并以可负担的维修费用进行维修。与其他SMA相比,NiTi SMA被广泛认为是地震工程领域最有希望的候选材料。本文有助于评估配备有NiTi SMA支撑的适当设计的同心支撑框架(CBF)在地震地震动(对应于频繁发生的设计基准和最大考虑的地震)下的抗震性能。通过明确考虑到NiTi SMA的应变硬化特性,引入了以前针对具有理想SMA的结构开发的临时抗震设计方法来确定建筑构件的尺寸。进行设计程序时要遵守与设计基准地震的危害程度相关的一系列地面运动。通过为SMA支架设置不同的延展性要求,同时为结构系统指定相同的层间位移目标,总共设计了四个六层CBF。分析结果表明,所有设计框架均成功达到了规定的抗震性能目标,包括目标最大层间位移,建筑物高度上的均匀变形要求,消除了残余变形,受控的地板加速度以及主框架受到轻微损坏。此外,这项研究表明,应变硬化行为并不一定会对带有SMA支撑的CBF的整体抗震性能产生不良影响。

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