不同热处理工艺下大直径NiTi-SMA棒材的超弹性试验研究
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1.陕西建工控股集团未来城市创新科技有限公司;2.长安大学

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Experimental Study on Superelasticity of Large Diameter NiTi-SMA Bars under Different Heat Treatment Processes
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1.Shaanxi Construction Engineering Holding Group Science and Technology Innovation of Future City;2.Chang’an University

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    摘要:

    在阻尼元件中添加大直径超弹性NiTi形状记忆合金(NiTi-SMA)棒可以使其获得良好的自复位能力,但由于SMA材料对温度具有较高的敏感性,不同的热处理工艺会对NiTi-SMA棒的力学性能产生一定的影响,导致含NiTi-SMA棒材阻尼器或支撑的耗能能力及自复位能力受到不同程度的影响,因此有必要探究不同热处理工艺对大直径NiTi-SMA棒材力学性能的影响。本文首先对7根工作段直径均为9mm的Ni-59.9%atTi棒进行不同热处理工艺随后进行增幅循环拉伸试验,研究了不同热处理工艺和增幅循环拉伸对试件的应力-应变关系、残余应变、耗能能力等性能的影响。研究结果表明,适当的热处理可显著提高NiTi-SMA棒材的超弹性,其应力-应变曲线呈典型的旗帜形,工作直径为9mm的NiTi-SMA棒材的最佳热处理温度和时长分别为400°C和30min;越接近最佳热处理工艺,试件的耗能能力、割线刚度及等效阻尼比愈发稳定。

    Abstract:

    Adding large-diameter hyperelastic NiTi shape memory alloy (NiTi-SMA) bars to damping elements can achieve good self centering ability. However, due to the high sensitivity of SMA materials to temperature, different heat treatment processes can have a certain impact on the mechanical properties of NiTi-SMA bars, resulting in varying degrees of influence on the energy dissipation and self centering ability of dampers or supports containing NiTi-SMA bars. Therefore, it is necessary to explore the effects of different heat treatment processes on the mechanical properties of large-diameter NiTi-SMA bars. This article first conducted different heat treatment processes on 7 Ni-59.9% atTi bars with a working section diameter of 9mm, followed by amplification cyclic tensile tests to investigate the effects of different heat treatment processes and amplification cyclic tensile tests on the stress-strain relationship, residual strain, energy dissipation capacity, and other properties of the specimens. The research results indicate that appropriate heat treatment can significantly improve the superelasticity of NiTi-SMA bars, with a typical flag shaped stress-strain curve. The optimal heat treatment temperature and duration for NiTi-SMA bars with a working diameter of 9mm are 400 ° C and 30min, respectively; The closer to the optimal heat treatment process, the more stable the energy dissipation capacity, secant stiffness, and equivalent damping ratio of the specimen become.

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  • 收稿日期:2025-03-05
  • 最后修改日期:2025-05-18
  • 录用日期:2025-06-01
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