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Characterization of Ternary NiTiPt High-Temperature Shape Memory Alloys

机译:三元NiTiPt高温形状记忆合金的表征

摘要

Pt additions substituted for Ni in NiTi alloys are known to increase the transformation temperature of the alloy but only at fairly high Pt levels. However, until now only ternary compositions with a very specific stoichiometry, Ni50-xPtxTi50, have been investigated and then only to very limited extent. In order to learn about this potential high-temperature shape memory alloy system, a series of over twenty alloys along and on either side of a line of constant stoichiometry between NiTi and TiPt were arc melted, homogenized, and characterized in terms of their microstructure, transformation temperatures, and hardness. The resulting microstructures were examined by scanning electron microscopy and the phase compositions quantified by energy dispersive spectroscopy."Stoichiometric" compositions along a line of constant stoichiometry between NiTi to TiPt were essentially single phase but by any deviations from a stoichiometry of (Ni,Pt)50Ti50 resulted in the presence of at least two different intermetallic phases, depending on the overall composition of the alloy. Essentially all alloys, whether single or two-phase, still under went a martensitic transformation. It was found that the transformation temperatures were depressed with initial Pt additions but at levels greater than 10 at.% the transformation temperature increased linearly with Pt content. Also, the transformation temperatures were relatively insensitive to alloy stoichiometry within the range of alloys examined. Finally, the dependence of hardness on Pt content for a series of Ni50-xPtxTi50 alloys showed solution softening at low Pt levels, while hardening was observed in ternary alloys containing more than about 10 at.% Pt. On either side of these "stoichiometric" compositions, hardness was also found to increase significantly.
机译:已知在NiTi合金中添加Pt代替Ni会增加合金的相变温度,但仅在相当高的Pt水平下才会增加。然而,到目前为止,仅研究了具有非常特殊的化学计量比的三元组成Ni50-xPtxTi50,然后仅在非常有限的程度上进行了研究。为了了解这种潜在的高温形状记忆合金系统,将NiTi和TiPt之间沿化学计量恒定的线的两侧以及两侧的二十多种合金进行了电弧熔化,均质化,并根据其微观结构进行了表征,转变温度和硬度。通过扫描电子显微镜检查所得的微观结构,并通过能量色散光谱法定量相组成。沿着NiTi至TiPt之间的恒定化学计量线的“化学计量”成分基本上是单相,但与(Ni,Pt)化学计量的任何偏差50Ti50导致存在至少两种不同的金属间相,具体取决于合金的总体组成。基本上所有合金,无论是单相还是两相,都处于马氏体相变。已经发现,最初加入Pt会降低转变温度,但是当转变温度大于10原子%时,转变温度随Pt含量线性增加。同样,在所检查的合金范围内,转变温度对合金化学计量相对不敏感。最后,一系列Ni50-xPtxTi50合金的硬度对Pt含量的依赖性显示出在低Pt含量时溶液软化,而在含超过10 at。%Pt的三元合金中观察到硬化。在这些“化学计量”组合物的任一侧,还发现硬度显着提高。

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