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A New Shape Memory Alloy-Based Damping Device Dedicated to Civil Engineering Cables

机译:一种专用于土木工程电缆的新型形状记忆合金的阻尼装置

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Most of civil engineering cable structures are subjected to potential damages mainly due to dynamic oscillations induced by wind, rain or traffic. If vibration amplitudes of bridge cables for example are too high, it may cause a fatigue phenomenon. Recently, researches had been conducted dealing with the use of damping devices in order to reduce vibration amplitudes of cables. Thin shape memory alloy (SMA) NiTi (Nickel-Titanium) wires were used as a simplified damping device on a realistic full scale 50 m long cable specimen in Ifsttar (Nantes - France) laboratory facility, and its efficiency was shown. It has been done using finite element simulations, as well as experimental test methods. The aim of this work is to link the wire material behavior with the local damping induced along the cable qualitatively. Indeed, thermomechanical energy dissipation of the NiTi-based wires enables their damping power. The hysteretic behavior in NiTi-based alloys demonstrates a consequent dissipation because of an exothermic martensitic transformation and then an endothermic reverse transformation.
机译:大多数土木工程电缆结构都受到潜在的损坏,主要是由于风,雨或交通引起的动态振荡。如果例如桥接电缆的振动幅度太高,则可能导致疲劳现象。最近,已经进行了处理阻尼装置的研究,以减少电缆的振动振幅。薄的形状记忆合金(SMA)NITI(镍钛)电线用作IFSTTAR(NANTES - 法国)实验室设施的现实满量程50米长电缆标本的简化阻尼装置,并显示了其效率。它已经使用有限元模拟,以及实验测试方法完成。这项工作的目的是将电线材料行为与沿电缆诱导的局部阻尼联系起来。实际上,基于NITI的线的热机械能量耗散使其阻尼功率能够。由于放热的马氏体转化,并且具有吸热的反向变换,基于NITI基合金中的滞回的合金中的滞后性表明了耗散。

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