首页> 外文会议>TMS Annual Meeting Exhibition;Characterization of Minerals, Metals, and Materials Symposium >Applying Stereological Characterisation to the Solidification Structure of Single Crystal Alloys to Deduce the 3D Macroscopic Solid/Liquid Interface Shape
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Applying Stereological Characterisation to the Solidification Structure of Single Crystal Alloys to Deduce the 3D Macroscopic Solid/Liquid Interface Shape

机译:对单晶合金的凝固结构应用立体学表征推导3D宏观固体/液体界面形状

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Single crystals are a continuous unbroken solid crystal lattice with no grain boundaries. They find a wide range of applications, from semi-conductors, optoelectronics, to applications in aerospace engines. Primary spacing is a key phenomenon during single crystal solidification as it determines microsegregation, defect formation, and final material performance. In this work, an automatic, standardised, and comprehensive stereological single crystal characterisation methodology is applied to two sections of a CMSX-10 Ni-base superalloy bar. The Shape-Limited Primary Spacing methodology rapidly and accurately determines dendritic centres, packing pattern, and local primary spacing distribution within these bulk microstructures. Using the relationship between the radial variation of local primary spacing and isotherm curvature, the SLPS methodology has enabled the post-mortem reconstruction of the 3D macroscopic solid/liquid interface shape.
机译:单晶是一种连续不间断的固体晶格,没有晶界。 他们发现各种应用,从半导体,光电子,在航空航天发动机中的应用。 初级间距是单晶凝固过程中的关键现象,因为它决定了微量聚集,缺陷形成和最终材料性能。 在这项工作中,将自动,标准化和综合的立体晶体表征方法应用于CMSX-10 Ni基超合金棒的两部分。 形状限制的初级间距方法迅速,准确地确定这些块状微观结构内的树突中心,包装模式和局部初级间距分布。 利用局部主间距和等温曲率的径向变化之间的关系,SLPS方法使3D宏观固体/液体界面形状的后验验重建。

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