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Stress-induced martensitic transformation behavior of a Ti-Ni-Hf high temperature shape memory alloy

机译:Ti-Ni-Hf高温形状记忆合金的应力诱发马氏体相变行为

摘要

The stress-induced martensitic transformation behavior and the microstructure of stress-induced martensite (SIM) in a Ti36Ni49Hf15 high temperature shape memory alloy (SMA) have been investigated using tensile tests and transition electronic microscopy (TEM) observations. It shows that, compared with the TiNi SMAs, there is no stress plateau in the stress-strain curve as the TiNiHf alloy deformed in an austenite. The martensitic transformation enthalpy is calculated to be - 106.84 cal/mol. The martensite variants mainly show preferential oriented morphologies for the TiNiHf alloy deformed to 8% at 523 K. The substructure of SIM and deformed SIM in the present alloy are (001) compound twin. Martensite variants are (011) type I twin related. Further, increasing the deformation temperature and deformation strain, the preferential oriented SIM variants gradually develop to martensite variants with variant-crack/variant-intersect morphologies. The inexistence of stress plateau in the stress-strain curve of TiNiHf may mainly result from the dislocation slip during the stress-induced martensitic transformation.
机译:使用拉伸试验和过渡电子显微镜(TEM)观察了Ti36Ni49Hf15高温形状记忆合金(SMA)中的应力诱导马氏体转变行为和应力诱导马氏体(SIM)的微观结构。结果表明,与TiNi SMA相比,TiNiHf合金在奥氏体中变形时,应力-应变曲线中没有应力平台。马氏体转变焓经计算为-106.84 cal / mol。马氏体变体主要显示在523 K下变形为8%的TiNiHf合金的优先取向形态。本合金中SIM的亚结构和变形的SIM为(001)复合孪晶。马氏体变体与(011)I型孪晶有关。此外,随着变形温度和变形应变的增加,优先取向的SIM变体逐渐发展为具有裂纹/变体相交形态的马氏体变体。 TiNiHf应力-应变曲线中不存在应力平稳区,可能主要是由于应力诱发的马氏体转变过程中的位错滑移所致。

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