The Dominant Factor of Competitive Grain Growth of the Nickel-Based Superalloys During Directional Solidification

Haiwei Wang, Xiao-li Zhang, J. Meng, Jinxia Yang, Yan-hong Yang, Yi-zhou Zhou, Xiao-feng Sun
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Abstract

The dominant factor of competitive grain growth was studied by trinary-crystal seeds during directional solidification. It was found that the grain overgrowth rate was weakly dependent on the temperature gradient when the misorientation angle of the misoriented grain was limited (£15°), which was inconsistent with the classical theoretical assumption that the grain overgrowth rate was determined by the difference of the tip undercooling between the competing grains. In contrast, the grain overgrowth rate was sensitive to the alloy composition. These phenomena were attributed to the mechanisms of solute interaction and sidebranching events, and the solute field was the dominant factor to govern the overgrowth behavior of the competing grains.
镍基高温合金定向凝固过程中竞争晶粒生长的主导因素
利用三晶种子研究了定向凝固过程中晶粒竞争生长的主导因素。结果表明,当晶粒的错取向角有限(15°)时,晶粒的过长速率对温度梯度的依赖性较弱,这与传统理论认为晶粒的过长速率由竞争晶粒的尖端过冷度差异决定的假设不一致。晶粒过长高对合金成分敏感。这些现象归因于溶质相互作用和侧分支事件的机制,溶质场是支配竞争晶粒过度生长行为的主要因素。
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