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Phase transformation and microstructure of quaternary TiNiHfCu high temperature shape memory alloys

机译:四元TiNiHfCu高温形状记忆合金的相变和组织

摘要

The effect of Cu addition on the phase transformation and microstructure of TiNiHf high temperature shape memory alloy has been studied. The experimental results show that the TiNiHfCu alloy undergoes a B2↔B19′ transformation with a concentration of 3 at.% Cu. And a two-step phase transformation occurs upon heating when the Cu content is 5 at.%. The constitutional phases of TiNiHfCu quaternary alloys are the matrix and (Ti,Hf,Cu)2Ni particles. The substructure of martensite is mainly (001) compound twin in TiNiHfCu alloys. The martensite variants are (011) type I twin related. The phase transformation temperatures decrease rapidly during the initial several thermal cycles and then keep constant with further increasing of the thermal cycles. It should be noticed that the R-phase transition is separated from the martensitic transformation during the cooling process in the TiNiHfCu alloys. The underlying reasons have been discussed.
机译:研究了添加铜对TiNiHf高温形状记忆合金的相变和组织的影响。实验结果表明,TiNiHfCu合金经历了B2↔B19'相变,其中Cu的浓度为3 at。%。当Cu含量为5原子%时,在加热时发生两步相变。 TiNiHfCu四元合金的组成相为基体和(Ti,Hf,Cu)2Ni颗粒。在TiNiHfCu合金中,马氏体的亚结构主要是(001)复合孪晶。马氏体变体与(011)I型孪晶有关。在最初的几个热循环中,相变温度迅速下降,然后随着热循环的进一步增加而保持恒定。应当注意,在TiNiHfCu合金的冷却过程中,R相转变与马氏体转变是分离的。潜在原因已被讨论。

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