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首页> 外文期刊>Applied Physics Letters >Crystallization and phase transformations in amorphous NiTi thin films for microelectromechanical systems
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Crystallization and phase transformations in amorphous NiTi thin films for microelectromechanical systems

机译:用于微机电系统的非晶态NiTi薄膜的结晶和相变

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Amorphous sputtered nickel-titanium thin films were deposited onto micromachined silicon-nitride membranes and subjected to heating and cooling conditions. Their associated microstructure was monitored directly and simultaneously with in situ transmission electron microscopy. These electron-transparent membranes constrained the NiTi films and rendered it possible for observation of the complete transformation cycle, which includes: the crystallization of the amorphous phase to austenite phase (cubic B2 structure) with heating; and the conversion of austenite (B2) to martensite (monoclinic B19(') structure) with cooling. Electron micrographs show the nucleation and growth of grains occurs at a temperature of 470degreesC and at a rate that indicates a polymorphic transformation. The onset of martensitic transformation occurs between 25 and 35degreesC. Calorimetric measurements are consistent with the observed crystallization. (C) 2004 American Institute of Physics.
机译:将非晶溅射的镍钛薄膜沉积到微机械氮化硅膜上,并进行加热和冷却条件。它们的相关微观结构可以直接和同时通过原位透射电子显微镜进行监测。这些电子透明膜限制了NiTi膜,使得可以观察到完整的转变周期,其中包括:加热使非晶相结晶为奥氏体相(立方B2结构);并在冷却下将奥氏体(B2)转变为马氏体(单斜晶B19(')结构)。电子显微照片显示晶粒的成核和生长发生在470摄氏度的温度下,并且其速率表明多晶型转变。马氏体转变的开始发生在25至35摄氏度之间。量热测量与观察到的结晶一致。 (C)2004美国物理研究所。

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