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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Quantitative analysis of withdrawal rate on stray grain formation in the platforms of a Ni-Based single crystal dummy blade
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Quantitative analysis of withdrawal rate on stray grain formation in the platforms of a Ni-Based single crystal dummy blade

机译:Ni基单晶假刀片平台中杂散晶粒形成的取消率定量分析

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Quantitative analysis of withdrawal rate on stray grain (SG) formation in the platforms of Ni-base single crystal (SX) dummy blades was carried out through experiments and simulations. The results showed that the tendency of SG formation becomes higher with the increase of withdrawal rates from 3 to 12?mm?min?1. Considering that SG formation is governed by a competition on the amount of time used for the dendrites branching and the cooling process, the underlying mechanism associated with the influence of withdrawal rate on SG formation was then investigated based on the effect of withdrawal rate on the thermal profile development and the macrostructural evolutions. Finite element simulation indicated that the thermal profile in the platform is wave-shaped, which results in two kinds of SGs formation; one being isolated in small areas in the platform ends, and the other connecting to a large area across the upper and lower edges of the platform.
机译:通过实验和模拟进行Ni基单晶(SX)晶片平台中杂散谷物(SG)形成的取消率的定量分析。 结果表明,随着3至12Ωmm的增加率的增加,SG形成的趋势变得更高?1。 考虑到SG形成受到用于树枝状分支和冷却过程的时间量的竞争,基于戒断率对热量的影响,研究了与SG形成对SG形成的影响相关的潜在机制 简介开发与宏观结构的演变。 有限元模拟表明平台中的热曲线是波形,这导致两种SGS形成; 一个被隔离在平台的小区域结束,另一个连接到平台的上部和下边缘的大面积。

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