In situ TEM study of crystals growth in amorphous Ti-Zr-Ni films at electron beam irradiation

A. Bagmut, I. Bagmut, A. Devizenko
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Abstract

Using the methods of in situ transmission electron microscopy (TEM) with video recording of the phase transformations the structure and kinetics of crystal growth in amorphous films of Ti41Zr41Ni18 were studied. The films were obtained by magnetron sputtering of a Ti-Zr-Ni target with deposition on substrates at T = 30°С. The amorphous (X-ray amorphous) state of the film was retained up to a temperature of 650°C, above which a polymorphous transformation took place with the formation of crystals with the FCC structure. Video frame analysis shows that the nucleation and growth of flat crystals with FCC structure take place at electron beam irradiation. The speed of movement of the crystallization front did not depend on the time at a constant intensity of the electron beam. A linear dependence on time for the radius of the crystal and a quadratic one for the fraction of the crystalline phase are performed. The dimensionless parameter of the relative length of crystallization was about three thousand.
电子束辐照下非晶Ti-Zr-Ni薄膜晶体生长的原位透射电镜研究
采用原位透射电子显微镜(TEM)和视频记录相变的方法研究了Ti41Zr41Ni18非晶膜的结构和晶体生长动力学。采用磁控溅射法制备了Ti-Zr-Ni靶材,并在T = 30°С温度下沉积在衬底上。当温度达到650℃时,薄膜的非晶(x射线非晶)状态保持不变,超过650℃时,薄膜发生多晶转变,形成具有FCC结构的晶体。视频帧分析表明,在电子束辐照下,具有FCC结构的扁平晶体发生了成核和生长。在电子束的恒定强度下,结晶锋的运动速度与时间无关。晶体的半径与时间呈线性关系,晶体相的分数与时间呈二次关系。结晶相对长度的无量纲参数约为3000。
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