Mechanism of competitive grain growth in a curvilinear channel of crystal-sorter during the orientational solidification of nickel-based heat-resistant alloy
- Authors: Monastyrskiy V.P.1, Pozdnyakov A.N.1, Ershov M.Y.1, Monastyrskiy A.V.2
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Affiliations:
- Moscow Polytechnic University
- ZAO SiSoft
- Issue: Vol 118, No 7 (2017)
- Pages: 652-658
- Section: Structure, Phase Transformations, and Diffusion
- URL: https://journal-vniispk.ru/0031-918X/article/view/167123
- DOI: https://doi.org/10.1134/S0031918X17070067
- ID: 167123
Cite item
Abstract
Using numerical simulation in the ProCAST program complex, the conditions of the solidification of heat-resistant nickel alloy in curvilinear channels of a ceramic mold have been investigated. It has been shown that, in practically important cases, the vector of the temperature gradient is oriented along the axis of the curvilinear channel. In a spiral crystal selector, a cyclic change in the preferred direction of growth occurs because of the cyclic change in the direction of the vector of the temperature gradient. The fact that the vector of the temperature gradient is almost always directed along the axis of the curvilinear channel makes it possible to govern the orientation of the vector of the temperature gradient in space and, therefore, to obtain a grain with the preferred crystallographic orientation. Based on the results of this investigation, a method of the grain selection with a desired azimuthal orientation is proposed.
About the authors
V. P. Monastyrskiy
Moscow Polytechnic University
Author for correspondence.
Email: tzp@mami.ru
Russian Federation, ul. Bol’shaya Semenovskaya 38, Moscow, 107023
A. N. Pozdnyakov
Moscow Polytechnic University
Email: tzp@mami.ru
Russian Federation, ul. Bol’shaya Semenovskaya 38, Moscow, 107023
M. Yu. Ershov
Moscow Polytechnic University
Email: tzp@mami.ru
Russian Federation, ul. Bol’shaya Semenovskaya 38, Moscow, 107023
A. V. Monastyrskiy
ZAO SiSoft
Email: tzp@mami.ru
Russian Federation, ul. Molodogvardeiskaya 46, korp. 2, Moscow, 121351
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