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Grain Selection in a High-Efficiency 2D Grain Selector During Casting of Single-Crystal Superalloys

机译:单晶高温合金铸造过程中高效二维晶粒选择器中的晶粒选择

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摘要

Using electron backscattered diffraction techniques (EBSD) and optical microscopy (OM), the grain selection and competitive growth in a new-designed high-efficiency two-dimensional (2D) selector during solidification of Ni-based single-crystal (SX) superalloys have been investigated with emphasis on the geometry of the selector part in this article. It is found that the efficiency of the grain selector depends greatly on the thickness and eccentric distance of the selector part. When the thickness is smaller than 3 mm, a single grain can be selected. After reducing this value, the grain selector becomes more effective. When the eccentric distance is larger than 8 mm, one grain can be selected. As the eccentric distance increases, the selector’s efficiency is optimized. Recommendations for optimizing the geometry of the selector part are provided.
机译:使用电子背散射衍射技术(EBSD)和光学显微镜(OM),在新设计的高效二维(2D)镍基单晶(SX)合金凝固过程中,晶粒的选择和竞争性生长具有本文重点研究了选择器部件的几何形状。已经发现,谷物选择器的效率很大程度上取决于选择器部分的厚度和偏心距。当厚度小于3mm时,可以选择单个晶粒。减小此值后,谷物选择器将变得更有效。当偏心距大于8 mm时,可以选择一个晶粒。随着偏心距的增加,选择器的效率得到优化。提供了优化选择器部件几何形状的建议。

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