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Preparation of Ti50Ni30Cu10Pd10 Shape Memory Alloys by Rapid Solidification

机译:快速凝固法制备Ti50Ni30Cu10Pd10形状记忆合金

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Equiatomic TiNi based alloys have attracted much attention due to their shape memory effect, superelasticity and damping capacity. Previous investigations have proved that the replacement of nickel with copper and palladium is an effective way to improve their property. In the last decades, the ternary Ti-Ni-Cu and Ti-Ni-Pd shape memory alloys (SMAs) have been studied intensively. But the investigations of Ti-Ni-Cu-Pd quaternary alloys are scarce. In this paper, Ti50Ni30Cu10Pd10 alloys were preparted by using melt-spinning method. The effect of rapid solidification on the lattice structure,transformation temperature and microstructure was investigated. It is found that the lattice constant of parent phase (cubic B2) increases with the wheel speed. The martensite phase (orthorhombic B19) exists in the as-spun ribbons when the wheel speed is up to V=50 m/s. DSC analysis reveals that the martensitic transformation temperatures are 285,290 and 300 K for the alloys solidified at V=10,30 and 50 m/s,respectively. Ti50Ni30Cu10Pd10 alloys possess good shape memory effect around room temperature.
机译:等原子TiNi基合金因其形状记忆效应,超弹性和阻尼能力而备受关注。先前的研究证明,用铜和钯代替镍是改善其性能的有效方法。在过去的几十年中,对三元Ti-Ni-Cu和Ti-Ni-Pd形状记忆合金(SMA)进行了深入研究。但是对Ti-Ni-Cu-Pd四元合金的研究却很少。本文采用熔融纺丝法制备了Ti50Ni30Cu10Pd10合金。研究了快速凝固对晶格结构,相变温度和组织的影响。发现母相(立方晶B2)的晶格常数随车轮速度的增加而增加。当车轮速度达到V = 50 m / s时,初生带中存在马氏体相(斜方晶B19)。 DSC分析表明,在V = 10,30和50 m / s下凝固的合金的马氏体转变温度分别为285,290和300K。 Ti50Ni30Cu10Pd10合金在室温附近具有良好的形状记忆效果。

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