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Development and characterization of Nickel-Titanium-Zirconium shape memory alloy for engineering applications

机译:工程应用镍 - 钛 - 锆型记忆合金的开发与鉴定

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摘要

Shape Memory Alloys (SMA) are unique class of alloys which possess various engineering applications. One such SMA is Nickel-Titanium (Nitinol) shape memory alloy. The problem, however with Nickel is that the metal may leach out in form of toxic Ni2+ ions. The latter may prove costly when used in various applications. To increase the corrosion resistant properties of Nitinol and to evaluate its shape memory properties, small amount of Zirconium i.e. 5 and 10 at % are added into the existing Nitinol system. Buttons of Nitinol and Nickel-Titanium with Zirconium additions are made using the button arc furnace. For the characterization of the alloys, various techniques including Energy Dispersive Spectroscopy (EDS), Back Scattering Electron (BSE) imaging, Differential Scanning Calorimetry (DSC) have been performed. The work conducted reveals that addition of Zirconium in Nitinol has marked influence on microstructure, shape memory properties, transformation temperature, hardness values, and corrosion properties of the alloy.
机译:形状记忆合金(SMA)是具有各种工程应用的独特合金。一种这样的SMA是镍钛(Nitinol)形状记忆合金。然而,用镍的问题是金属可以以毒性Ni2 +离子的形式浸出。在各种应用中使用时,后者可能会证明昂贵。为了提高镍钛醇的耐腐蚀性,并评估其形状记忆性质,将少量锆I. 5和10以%加入到现有的Nitinol系统中。用纽扣炉制成镍钛诺和镍钛的按钮,采用纽扣电弧炉制造。为了表征合金,已经进行了各种技术,包括能量分散光谱(EDS),后散射电子(BSE)成像,差示扫描量热法(DSC)。进行的作品揭示了Nitinol中的锆的加入对合金的微观结构,形状记忆性质,转化温度,硬度值和腐蚀性能显着影响。

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