形状记忆合金减震器在几种桥梁节点条件下的减震效果

IF 1.2 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Frattura ed Integrita Strutturale Pub Date : 2023-03-21 DOI:10.3221/igf-esis.64.07
Mohamed H. El-Feky, A. Eraky, Alaa M. Sharabash
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引用次数: 1

摘要

桥梁中需要活动缝来适应纵向伸缩。需要有足够的接缝宽度,以适应地震期间接缝的纵向膨胀和预期运动。这可能导致接头开口过大。已经提出了可以耗散能量的装置来减少关节位移。形状记忆合金(SMA)是这些能量耗散装置中的一种,其在变形后能够恢复到其自然形状是众所周知的。使用MATLAB中开发的软件程序,对桥梁的几种情况和不同的地震事件条件进行了建模和测试,以显示在桥梁接缝开口内使用SMA的效率。这些模型包括两个相邻框架内有SMA的情况(2个框架)、每两个框架之间有恒定滞回SMA的多框架的情况(N个框架),考虑到框架之间地震力的延迟(延迟)的具有恒定滞回SMAs的多框架情况,以及桥梁框架质量可变的情况。此外,还进行了参数研究,以显示桥梁框架和SMA改造装置的所有参数对抗震接缝开口的影响。结果表明,超弹性SMA装置在控制桥梁开口方面发挥着巨大作用,并能够在地震期间限制所有模型的接缝宽度,在某些情况下,根据桥梁框架特性、地震动特性和SMA装置的滞回特性,不同的值达到60%。
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Efficiency of shape memory alloy seismic restrainers for several conditions of bridge joints
Movement joints are needed in bridges to accommodate longitudinal expansion and contraction. Enough joint width needs to be available to accommodate not only longitudinal expansion but also expected movements of joints during earthquakes. This may result in excessive joint openings. Devices that can dissipate energy have been suggested to reduce joint displacements. Shape memory alloy (SMA) is one of these energy dissipation devices, which is well known for its ability to return to its natural shape after being deformed. Several cases of bridges and different conditions of seismic events are modeled and tested using developed software programs in MATLAB to show the efficiency of using SMA inside bridge joint openings. These models include the case of two adjacent frames with SMA inside them (2–frames), the case of multi–frames with constant hysteretic SMAs between every two of them (N–frames), the case of multi–frames with constant hysteretic SMAs taking the delay of seismic forces between frames into consideration (delay), and the case of variable masses of bridge frames. Also, parametric studies are performed to show the impacts of all parameters of bridge frames and SMA retrofit devices on seismically joint openings. The results show that the superelastic SMA device plays a huge role in controlling bridge opening and enables limiting the joint width of all models during earthquakes with different values reaching 60% in some cases depending on bridge frame properties, ground motion characteristics, and the hysteretic properties of SMA devices.
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来源期刊
Frattura ed Integrita Strutturale
Frattura ed Integrita Strutturale Engineering-Mechanical Engineering
CiteScore
3.40
自引率
0.00%
发文量
114
审稿时长
6 weeks
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