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Characterization Of A Marginal Glass Former Alloy Solidified In Gas Atomized Powders

机译:在气体雾化粉末中凝固的边缘玻璃前合金的特性

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摘要

Al_(90)Sm_(10), a marginal glass former, was rapidly solidified using high pressure gas atomization (HPGA). Rapid solidification is a non-equilibrium process, with different degrees of departure from full equilibrium constituting a microstructural hierarchy that correlates with increasing solidification rate. In accordance with this the resultant HPGA powders show a variety of microstructures according to their particle diameters, corresponding to degree of undercooling, with an amorphous structure appearing at high cooling rates. Five distinct phases and microstructures have been identified at different undercoolings; Al solid solution, tetragonal Al_(21)Sm_3, two different orthorhombic phases, and an amorphous phase which exists in company with a high number density of Al nanocrystals. The product phases of the rapid solidification were identified and analyzed using high energy transmission X-ray diffraction (HEXRD), high resolution transmission electron microscopy (HRTEM), scanning electron microscopy (SEM), Energy Dispersive X-ray Spectroscopy (EDS) and thermal analysis (DSC). The results of the study will be helpful in identifying metastable phase hierarchy and glass formation during vitrification of marginal glass formers.
机译:使用高压气体雾化(HPGA)快速固化边缘玻璃形成剂Al_(90)Sm_(10)。快速凝固是一个非平衡过程,与完全平衡的偏离程度不同,构成了与提高凝固速率相关的微观结构层次。据此,所得的HPGA粉末根据其粒径显示出各种微观结构,对应于过冷度,在高冷却速率下出现无定形结构。在不同的过冷状态下,已经确定了五个不同的相和微观结构。 Al固溶体,四方Al_(21)Sm_3,两种不同的正交晶相和无定形相,其以高数量密度的Al纳米晶体存在。使用高能透射X射线衍射(HEXRD),高分辨率透射电子显微镜(HRTEM),扫描电子显微镜(SEM),能量色散X射线光谱(EDS)和热分析来鉴定和分析快速凝固的产物相分析(DSC)。该研究的结果将有助于确定边缘玻璃形成器玻璃化过程中的亚稳态相层次和玻璃形成。

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