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Effects of Cold-Rolling/Aging Treatments on the Shape Memory Properties of Ti49.3Ni50.7 Shape Memory Alloy

机译:冷轧/时效处理对Ti49.3Ni50.7形状记忆合金形状记忆性能的影响

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摘要

In this study, the combined effects of strengthening, precipitates, and textures on the shape recovery ability and superelasticity of thermomechanically treated Ti49.3Ni50.7 shape memory alloy (SMA) in both the rolling and transverse directions were studied by experimental measurements and theoretical calculations. Experimental results and theoretical calculations showed that the 300 °C × 100 h aged specimen exhibited the best shape memory effect because it possessed the most favorable textures, highest matrix strength, and most beneficially coherent stress induced by Ti3Ni4 precipitates. The 30% cold-rolled and then 300 °C × 100 h aged specimen exhibited the highest strength and superelasticity; however, its shape recovery ability was not as good as expected because the less favorable textures and the high strength inhibited the movements of dislocations and martensite boundaries. Therefore, to achieve the most optimal shape memory characteristics of Ni-rich TiNi SMAs, the effects of textures, matrix strength, and internal defects, such as Ti3Ni4 precipitates and dislocations, should all be carefully considered and controlled during thermomechanical treatments.
机译:在这项研究中,通过实验测量和理论计算,研究了强化,析出和织构对热机械处理的Ti49.3Ni50.7形状记忆合金(SMA)的轧制方向和横向形状恢复能力和超弹性的综合影响。 。实验结果和理论计算表明,300°C×100 h时效试样表现出最佳的形状记忆效果,因为它具有最有利的织构,最高的基体强度和最有益的Ti3Ni4析出物诱导的相干应力。 30%的冷轧然后300°C×100 h的时效试样具有最高的强度和超弹性。然而,其形状恢复能力不如预期的好,因为较差的质地和较高的强度抑制了位错和马氏体边界的运动。因此,为了获得富Ni的TiNi SMA的最佳形状记忆特性,在热机械处理过程中应仔细考虑并控制纹理,基体强度和内部缺陷(例如Ti3Ni4沉淀和位错)的影响。

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