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Microstructural features of phase transformation in a binary Pd-Si metallic glass

机译:二元Pd-Si金属玻璃中相变的微观结构特征

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Glassy ribbons of Pd-Si alloys were prepared by a combination of melt spinning and flux treatment. The crystallization behaviour of a Pd_(81)Si_(19) glassy alloy was studied through isothermal annealing at temperatures ranging lower than the glass-transition temperature T_g to around the onset of crystallization. The evolution of microstructures arising from isothermal annealing was investigated by X-ray diffraction (XRD) and (high-resolution) transmission electron microscopy ((HR)TEM). XRD spectra showed that, after the sample was annealed at a sub-T_g temperature, its first diffraction peak was split into two overlapping broad peaks. TEM analysis revealed the formation of a spherical, particle-like glassy phase embedded in the glassy matrix together with a finely connected network morphology within both. Combining these observations with compositional analysis suggested that phase separation had taken place during sub-T_g annealing. When the glassy alloy was annealed at temperatures higher than T_g, nanocrystalline structures, composed of Pd_3Si and Pd phases plus a Pd_9Si_2 phase with a lamellar structure, was formed.
机译:通过熔融纺丝和熔剂处理相结合的方法制备了Pd-Si合金玻璃带。 Pd_(81)Si_(19)玻璃态合金的结晶行为是通过在低于玻璃化转变温度T_g到大约结晶开始的温度下进行等温退火研究的。通过X射线衍射(XRD)和(高分辨率)透射电子显微镜((HR)TEM)研究了等温退火引起的微观结构的演变。 XRD光谱表明,在低于T_g的温度下对样品进行退火之后,其第一衍射峰被分成两个重叠的宽峰。 TEM分析表明,球形的,颗粒状的玻璃相形成嵌入玻璃状基质中,并且两者之间都具有精细连接的网络形态。将这些观察结果与成分分析相结合,表明在亚T_g退火过程中发生了相分离。当玻璃态合金在高于T_g的温度下退火时,形成了由Pd_3Si和Pd相加上具有层状结构的Pd_9Si_2相组成的纳米晶体结构。

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