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Prediction and improvement of shrinkage porosity in TiAl based alloy

机译:TiAl基合金收缩孔隙率的预测和改进

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The present research has developed a novel investment casting process for ingot production of TiAl alloys through forming a small vertical temperature gradient on the mold. The advantage of this process is to guarantee that the castings solidify sequentially from bottom to top. The analysis of numerical simulation and experimental results showed that the shrinkage porosity of Ti-47Al-2Cr-2Nb alloy was significantly improved by forming a vertical temperature gradient of 3 篊/mm on the mold, while the increase of pouring temperature and pressure on the molten alloys had no apparent effect on the reduction of shrinkage porosity. The critical value of the Niyama criterion that can reliably predict the shrinkage porosity in Ti-47Al-2Cr-2Nb alloy was identified by the comparison of experimental and simulated results.
机译:本研究开发了一种新颖的熔模铸造工艺,通过在模具上形成小的垂直温度梯度来生产TiAl合金锭。此过程的优点是确保铸件从下到上依次凝固。数值模拟和实验结果的分析表明,通过在模具上形成3篊/ mm的垂直温度梯度,可显着改善Ti-47Al-2Cr-2Nb合金的收缩孔隙率,同时增加浇铸温度和压力。熔融合金对减少收缩孔隙率没有明显影响。通过实验和模拟结果的比较,确定了可以可靠地预测Ti-47Al-2Cr-2Nb合金中的孔隙率的Niyama准则的临界值。

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