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Effect of Ultrasonic Nanocrystal Surface Modification on the Microstructure and Martensitic Transformation of Selective Laser Melted Nitinol

机译:超声纳米晶表面改性对选择性激光熔炼镍钛诺的组织和马氏体转变的影响

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摘要

Nitinol has significant potential for biomedical and actuating-sensing devices, thanks to its functional properties. The use of selective laser melting (SLM) with Nitinol powder can promote novel applications aimed to produce 3D complex parts with integrated functional performances. As the final step of the production route, finishing processing needs to be investigated both for the optimization of the surface morphology and the limit alteration of the Nitinol functional properties. In this work, the effect of an advanced method of surface modification, ultrasonic nanocrystal surface modification (UNSM), on the martensitic transformation and microstructure of SLM built Ni50.8Ti49.2 (at.%) was investigated. Scanning electron microscopy, X-ray diffraction, and differential scanning calorimetry indicated that the UNSM process can generate stress-induced martensite, at least partially suppressing the martensitic transformation. The microhardness profile indicates that the UNSM process can affect the mechanical properties of the SLMed Nitinol sample in a range of up to approximately 750 μm in depth from the upper surface, while electron backscatter diffraction analysis highlighted that the initial austenitic phase was modified within a depth below 200 μm from the UNSMed surface.
机译:由于其功能特性,镍钛诺在生物医学和致动传感装置方面具有巨大潜力。选择性激光熔化(SLM)和镍钛诺粉的使用可以促进旨在生产具有集成功能性能的3D复杂零件的新颖应用。作为生产路线的最后一步,需要研究精加工工艺,以优化表面​​形态和镍钛诺功能特性的极限变化。在这项工作中,研究了一种先进的表面改性方法,即超声纳米晶体表面改性(UNSM),对SLM制成的Ni50.8Ti49.2(at。%)的马氏体相变和微观结构的影响。扫描电子显微镜,X射线衍射和差示扫描量热法表明,UNSM过程可以产生应力诱发的马氏体,至少部分抑制了马氏体相变。显微硬度曲线表明,UNSM工艺可在距上表面约750μm的深度范围内影响SLM镍钛合金样品的机械性能,而电子背散射衍射分析则表明,初始奥氏体相在一定深度范围内被改性距离UNSMed表面小于200μm。

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