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Superelastic SMA U-shaped dampers with self-centering functions

机译:具有自定心功能的超弹性SMA U形阻尼器

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摘要

As high-performance metallic materials, shape memory alloys (SMAs) have been investigated increasingly by the earthquake engineering community in recent years, because of their remarkable self-centering (SC) and energy-dissipating capabilities. This paper systematically presents an experimental study on a novel superelastic SMA U-shaped damper (SMA-UD) with SC function under cyclic loading. The mechanical properties, including strength, SC ability, and energy-dissipating capability with varying loading amplitudes and strain rates are evaluated. Test results show that excellent and stable flag-shaped hysteresis loops are exhibited in multiple loading cycles. Strain rate has a negligible effect on the cyclic behavior of the SMA-UD within the dynamic frequency range of typical interest in earthquake engineering. Furthermore, a numerical investigation is performed to understand the mechanical behavior of the SMA-UD. The numerical model is calibrated against the experimental results with reasonable accuracy. Then, the stress-strain states with different phase transformations are also discussed.
机译:作为高性能金属材料,近年来,地震工程社区越来越多地研究了形状记忆合金(SMA),因为它们具有显着的自定向(SC)和能量消散能力。本文系统地提出了一种在循环加载下具有SC功能的新型超弹性SMA U形阻尼器(SMA-UD)的实验研究。评估具有不同负载幅度和应变率的强度,SC能力和能量消散能力的机械性能。测试结果表明,在多个装载循环中展出了优异的稳定形状的磁滞环。应变率对地震工程典型兴趣的动态频率范围内的SMA-UD的循环行为具有可忽略不计的影响。此外,进行数值研究以了解SMA-UD的机械行为。数值模型以合理的准确性校准实验结果。然后,还讨论了具有不同相变的应力 - 应变状态。

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