溶接学会論文集
Online ISSN : 2434-8252
Print ISSN : 0288-4771
Ni基単結晶超合金の表面溶融部の結晶成長に関する理論的解析
-単結晶合金タービン翼の結晶制御補修に関する研究-
藤田 善宏才田 一幸西本 和俊布施 俊明
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2008 年 26 巻 1 号 p. 88-96

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Crystal growth behavior in the laser surface-melted region of Ni-base single crystal superalloy CMSX-4 have been investigated to clarify the effect of heat input on the conditions for achieving single-crystallization and/or preventing the formation of stray crystals. The crystal growth in the surface-melted region was numerically analyzed based on the geometric model and CET (columnar to equiaxed transition) theory in combination with an inverse heat conduction analysis. A theoretical analysis of the dendritic growth direction suggested that the surface-melted region consisted of [001], [100] and [010] dendrites, when the laser beam was scanned along the [100] or [110] direction on the (001) surface. Furthermore, it was predicted that the occurrence of the [001] dendrite could be observed at the bottom of the melted region and the [100] and [010] dendrites existed only at the upper part of the melted region. On the other hand, theoretical analysis of the stray crystal formation indicated that stray crystals tended to form under conditions of higher laser power and lower scanning speed, i.e. higher heat input conditions. These calculation results agreed with the metallographic observation. As the results, it can be said that the conditions needed to suppress the formation of stray crystals and to promote single-crystallization in the surface-melted region with epitaxial dendritic growth of [001] orientation and/or the dendritic growth of [100] and [010] orientations is predictable by calculation.

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© 2008 社団法人 溶接学会
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