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Shape Memory Alloy-based Smart Rc Bridges: Overview Of State-of-the-art

机译:基于形状记忆合金的Smart Rc桥:最新技术概述

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Shape Memory Alloys (SMAs) are unique materials with a paramount potential for various applications in bridges. The novelty of this material lies in its ability to undergo large deformations and return to its undeformed shape through stress removal (superelasticity) or heating (shape memory effect). In particular, Ni-Ti alloys have distinct thermomechanical properties including superelasticity, shape memory effect, and hysteretic damping. SMA along with sensing devices can be effectively used to construct smart Reinforced Concrete (RC) bridges that can detect and repair damage, and adapt to changes in the loading conditions. SMA can also be used to retrofit existing deficient bridges. This includes the use of external post-tensioning, dampers, isolators and/or restrainers. This paper critically examines the fundamental characteristics of SMA and available sensing devices emphasizing the factors that control their properties. Existing SMA models are discussed and the application of one of the models to analyze a bridge pier is presented. SMA applications in the construction of smart bridge structures are discussed. Future trends and methods to achieve smart bridges are also proposed.
机译:形状记忆合金(SMA)是独特的材料,在桥梁的各种应用中具有极其重要的潜力。这种材料的新颖之处在于它能够承受较大的变形,并通过消除应力(超弹性)或加热(形状记忆效应)恢复到未变形的形状。尤其是,Ni-Ti合金具有独特的热机械特性,包括超弹性,形状记忆效应和滞后阻尼。 SMA与传感设备一起可以有效地用于构建智能钢筋混凝土(RC)桥,该桥可以检测和修复损坏并适应载荷条件的变化。 SMA也可以用于改造现有的缺陷桥梁。这包括使用外部后张紧,阻尼器,隔离器和/或约束器。本文严格审查了SMA和可用的传感设备的基本特征,着重介绍了控制其特性的因素。讨论了现有的SMA模型,并提出了其中一种模型在分析桥墩中的应用。讨论了SMA在智能桥梁结构施工中的应用。还提出了实现智能桥梁的未来趋势和方法。

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