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Achieving superelasticity in additively manufactured NiTi in compression without post-process heat treatment

机译:无需后期热处理即可在压缩条件下实现增材制造的NiTi的超弹性

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摘要

Shape memory alloys (SMAs), such as Nitinol (i.e., NiTi), are of great importance in biomedical and engineering applications due to their unique superelasticity and shape memory properties. In recent years, additive manufacturing (AM) processes have been used to produce complex NiTi components, which provide the ability to tailor microstructure and thus the critical properties of the alloys, such as the superelastic behavior and transformation temperatures (TTs), by selection of processing parameters. In biomedical applications, superelasticity in implants play a critical role since it gives the implants bone-like behavior. In this study, a methodology of improving superelasticity in Ni-rich NiTi components without the need for any kind of post-process heat treatments will be revealed. It will be shown that superelasticity with 5.62% strain recovery and 98% recovery ratio can be observed in Ni-rich NiTi after the sample is processed with 250 W laser power, 1250 mm/s scanning speed, and 80 µm hatch spacing without, any post-process heat treatments. This superelasticity in as-fabricated Ni-rich SLM NiTi was not previously possible in the absence of post-process heat treatments. The findings of this study promise the fast, reliable and inexpensive fabrication of complex shaped superelastic NiTi components for many envisioned applications such as patient-specific biomedical implants.
机译:形状记忆合金(SMA),例如镍钛诺(NiTiol)(NiTi),由于其独特的超弹性和形状记忆特性,在生物医学和工程应用中非常重要。近年来,增材制造(AM)工艺已用于生产复杂的NiTi组件,这些组件可通过选择以下材料来调整合金的微观结构和关键特性,例如超弹性行为和相变温度(TTs)。处理参数。在生物医学应用中,植入物的超弹性起着至关重要的作用,因为它赋予植入物类似骨骼的行为。在这项研究中,将揭示一种无需任何后处理热处理即可改善富镍NiTi组件中超弹性的方法。结果表明,在以250 W激光功率,1250 mm / s的扫描速度和80 µm的影线间距处理样品后,在富镍NiTi中可以观察到具有5.62%应变回复和98%回复率的超弹性。后处理热处理。在缺乏后处理热处理的情况下,以前不可能在富镍的SLM NiTi中制造这种超弹性。这项研究的发现有望为复杂的超弹性NiTi组件提供快速,可靠和廉价的制造,以用于许多预想的应用,例如针对患者的生物医学植入物。

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