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Sensitivity analysis and multi-criteria optimization of SMA cable restrainers for longitudinal seismic protection of isolated simply supported highway bridges

机译:SMA电缆抑制器对隔离的高速公路桥梁纵向防护的敏感性分析及多标准优化

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摘要

Considering the flexibility of isolation bearings, isolated bridges are susceptible to unseating problems or even collapse due to excessive displacement under strong earthquakes. Shape memory alloy (SMA) wires can be utilized as seismic restrainers to confine this displacement. Recently, a design procedure for SMA restrainers has been proposed based on a linearized two degree-of-freedom analytical model. The key design parameters include three geometric factors (the ratio of the allowable displacement to the seat width, Delta(a)/L-sw, horizontal angle, theta(0), and normalized elongation parameter alpha), and three factors related to material properties of SMA (the maximum applied strain, epsilon(max), the elastic modulus, E-0, and the austenite to martensite start stress, f(y,SMA)). The objective of this study is to optimize the design procedure by evaluating the effect of each design factor on the seismic response of an isolated bridge which is retrofitted by SMA restrainers. After conducting a one-half fractional factorial analysis, it was found that the material factors have slight impact on the relative displacement between the pier and the girder, and the base shear of the pier, with percentage contributions smaller than 4% and 13%, respectively. Then, a full factorial analysis is followed through a multi-criteria decision making process in order to optimize the SMA restrainer. The results show that the optimal value of Delta(a)/L-sw, which effectively reduces the relative displacement and simultaneously control the base shear of the piers, is 0.4; the optimum value of theta(0) ranges from 0 to pi/4; and the most effective value of alpha is 1.0.
机译:考虑到隔离轴承的灵活性,由于强烈地震下的过度位移,隔离的桥梁易于取消定义问题甚至崩溃。形状记忆合金(SMA)电线可用作地震抑制因子来限制这种位移。最近,已经基于线性化了两种自由度分析模型来提出了SMA约束子的设计过程。关键设计参数包括三个几何因子(允许座椅宽度与座椅宽度的比率,Δ(a)/ l-sw,水平角度,θ(0)和归一化伸长率参数alpha)以及与材料相关的三个因素SMA的性质(最大施加的应变,ε(最大),弹性模量,E-0和奥氏体到马氏体开始应力,F(Y,SMA))。本研究的目的是通过评估每个设计因素对由SMA抑制剂改造的隔离桥的地震响应的效果来优化设计程序。在进行一半的分数阶段分析之后,发现材料因素对码头和梁之间的相对位移产生了轻微影响,以及码头的基础剪切,占率小于4%和13%,分别。然后,通过多标准决策过程遵循完整的因子分析,以便优化SMA约束符。结果表明,δ(A)/ L-SW的最佳值,有效地降低了相对位移并同时控制墩的基剪,为0.4; Theta(0)的最佳值范围为0到PI / 4;并且最有效的alpha值为1.0。

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