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Superelastic NiTi SMA cables: Thermal-mechanical behavior, hysteretic modelling and seismic application

机译:超弹性NITI SMA电缆:热电机械行为,滞后模型和地震应用

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摘要

This paper reports a comprehensive study on the mechanical behavior, annealing (heat treatment) scheme, hysteretic modelling strategy, and potential seismic application of superelastic shape memory alloy (SMA) cables. The study commenced with the thermal-mechanical characterization of monofilament SMA wires, and in particular, the influence of annealing scheme on the mechanical and phase transformation characteristics of the material was revealed. A series of 7 x 7 SMA cable specimens were subsequently tested at room temperature under various cyclic loading protocols. It is observed, among other findings, that the SMA cables are able to reasonably "scale up" the satisfactory properties of the SMA wires, and the mechanical behavior of the SMA cables may be improved by annealing. Moderate annealing temperature and duration (i.e., 350-400 degrees C for 15 min) can generally increase the stiffness, energy dissipation, and form setting ability of the SMA cables considered in this study, whereas an overly high annealing temperature tends to compromise these characteristics. Following the experimental study, an effective numerical modelling approach is proposed which reliably captures the basic mechanical behavior of the SMA cables. A model bridge, where SMA cables are adopted as restrainers, is finally designed and analyzed to demonstrate the efficiency of the SMA components for seismic damage mitigation. The analysis result shows that the SMA-cable restrainers can effectively control the peak and residual displacements of the bridge girder, and make the bridge more resilient.
机译:本文报告了对超弹性形状记忆合金(SMA)电缆的力学行为,退火(热处理),滞质建模策略和潜在地震施加的综合研究。该研究采用单丝SMA线的热电机械表征,特别地,揭示了退火方案对材料的机械和相变特性的影响。随后在各种循环加载方案下在室温下测试一系列7×7 SMA电缆样本。在其他发现之外观察到SMA电缆能够合理地“扩大”SMA线的令人满意的性质,并且可以通过退火改善SMA电缆的机械行为。中等退火温度和持续时间(即350-400℃,15分钟)通常可以增加本研究中考虑的SMA电缆的刚度,能量耗散和形成能力,而过高的退火温度趋于损害这些特性。在实验研究之后,提出了一种有效的数值建模方法,可靠地捕获SMA电缆的基本力学行为。最终设计并分析了SMA电缆作为约束仪的模型桥,以证明SMA组件用于地震损伤减缓的效率。分析结果表明,SMA电缆抑制器可以有效地控制桥梁梁的峰值和残余位移,使桥梁更加弹性。

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