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首页> 外文期刊>Journal of bridge engineering >Comparison between Shape Memory Alloy Seismic Restrainers and Other Bridge Retrofit Devices
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Comparison between Shape Memory Alloy Seismic Restrainers and Other Bridge Retrofit Devices

机译:形状记忆合金减震器与其他桥梁改型装置的比较

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摘要

Strong earthquakes can result in large longitudinal displacements in multiple-frame bridges. This could lead to excessive displacements/openings at the intermediate joints. Bridges with small seat widths are vulnerable to the unseating of their superstructure. Seismic steel restrainers are currently used to limit the joint openings in bridges. However, past earthquakes have shown that restrainer cables have limitations in regards to preventing unseating in bridges. Other devices have been proposed to limit joint displacements, including metallic dampers, viscoelastic dampers, and shape memory alloys (SMAs), which are known for their ability to recover their original shape after being deformed. A sensitivity study and a case study are conducted using computer simulations to compare the effectiveness of SMA retrofit devices with other devices. The results show that the effectiveness of the devices is a function of the characteristics of the bridge frames and the ground motion characteristics. In all cases, the steel restrainer cables were the least effective in limiting joint displacements. The SMA devices have the additional benefit of significantly limiting the residual joint displacement in bridges.
机译:强烈地震会导致多框架桥的纵向位移大。这可能会导致中间接头处的位移/开口过多。座椅宽度较小的桥梁容易受到上层建筑的束缚。目前,抗震钢制限位器用于限制桥梁的接缝开口。但是,过去的地震表明,约束电缆在防止桥梁不稳固方面有局限性。已经提出了其他限制关节位移的装置,包括金属阻尼器,粘弹性阻尼器和形状记忆合金(SMA),它们以变形后恢复其原始形状的能力而著称。使用计算机模拟进行敏感性研究和案例研究,以比较SMA改造设备与其他设备的有效性。结果表明,装置的有效性是桥架特性和地震动特性的函数。在所有情况下,钢制约束电缆在限制接头位移方面效果最差。 SMA设备的另一个好处是可以显着限制桥梁中的残余关节位移。

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