Multi-phase field simulation of lamellar-rod hypoeutectic transition with different volume fractions of the minor phase
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摘要: 利用KKSO多相場模型,對亞共晶模型合金的層-棒轉變過程進行模擬.結果表明,共晶形態的層-棒轉變不是突變而是在一定成分范圍內漸變的.在各向同性界面能條件下,當次要相體積分數遠小于1/π時,共晶形態將發生層-棒轉變,該相以棒狀形式存在;當次要相體積分數在1/π附近時,層片共晶不完全向棒狀共晶轉變,且隨著次要相體積分數的增大,轉變時刻推遲;當次要相的體積分數遠大于1/π時,層片狀共晶不再向棒狀共晶轉變.共晶形態的層-棒轉變趨勢與初始層片間距有關,模擬結果與實驗結果定性一致.Abstract: Critical simulations of model hypoeutectic alloys were carried out with the KKSO multi-phase field model to study the lamellarrod eutectic transition. The result shows that the lamellar-rod eutectic transition does not appear abrupt but occurs over a range of compositions. Under the condition of isotropic interface energy, when the volume fraction of the minor phase is far lower than 1/π, the lamellar-rod transition occurs, and a rod microstructure forms. When the volume fraction of the minor phase is near to 1/π, the lamellar-rod transition does not occur completely, and it occurs later with the volume fraction of the minor phase increasing. When the volume fraction of the minor phase is far larger than I/π, it does not occur any longer. The simulations also show that the transition is related with initial lamellar spacing, which is in accordance with the experiment results qualitatively.
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Key words:
- alloys /
- hypoeutectic /
- eutectic /
- morphology /
- simulation
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