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A study of some of the foundry processing factors influencing the quality of titanium alloy investment castingsud

机译:研究一些影响钛合金熔模铸件质量的铸造加工因素

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摘要

Titanium aluminide alloys are prone to extensive shrinkage porosity, particularly interdendritic layer porosity. This research aims to develop a better understanding of shrinkage porosity in Ti-46Al-8Nb alloy and how to minimize it.ududPractical measurements in conjunction with computer simulations were carried out in order to study the effects of cooling rate and temperature gradient on shrinkage porosity in Ti-46Al-8Nb investment castings, through investigating the influence of casting geometry, specifically mould taper on cylindrical bars, and preheating mould temperature on the macrostructure and the formation of shrinkage porosity. ududThe interface heat-transfer coefficient of the ceramic shell/surroundings was determined using measured cooling curves obtained in 200 mbar of Argon and in vacuum. Furthermore, the alloy/mould interfacial heat transfer coefficient was estimated and was verified by comparing measured and predicted cooling curves of Ti-46Al-8Nb.ududThe Niyama criterion function was validated to predict shrinkage-related porosity in Ti-46Al-8Nb castings, through either thermal or tilt-filling ProCastTM simulation models. Positions in a casting with Niyama values above 4 (°C. min)0.5cm-1; (3 (K. s)0.5mm-1); could be considered completely sound. The critical value of the Niyama function was 2 (°C. min)0.5cm-1; (1.5 (K. s)0.5mm-1); below which the position tested was susceptible to macroshrinkage porosity.
机译:铝化钛合金易于产生大的收缩孔隙率,特别是树突间层的孔隙率。这项研究旨在更好地了解Ti-46Al-8Nb合金的收缩孔隙率以及如何将其最小化。 ud ud结合计算机模拟进行了实际测量,以研究冷却速率和温度梯度对收缩率的影响。通过研究铸造几何形状(特别是圆柱棒上的结晶器锥度)和预热结晶器温度对宏观组织和收缩孔隙形成的影响,研究Ti-46Al-8Nb熔模铸件的收缩孔隙率。 ud ud使用在200 mbar的氩气中和真空中获得的实测冷却曲线确定陶瓷外壳/周围环境的界面传热系数。此外,通过比较测得的和预测的Ti-46Al-8Nb冷却曲线,估算并验证了合金/模具的界面传热系数。 ud udNiyama准则函数可用于预测Ti-46Al-8Nb的与收缩有关的孔隙率通过热填充或倾斜填充ProCastTM模拟模型进行铸造。 Niyama值高于4(°C。最小)0.5cm-1的铸件中的位置; (3(千s)0.5mm-1);可以认为是完全健全的。 Niyama功能的临界值为2(°C。min)0.5cm-1; (1.5(K. s)0.5mm-1);低于此位置,所测试的位置容易受到宏观收缩孔隙的影响。

著录项

  • 作者

    Khaled Iman;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 English
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