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Equilibrium partition ratios, densities, and transport phenomena in nickel-base superalloys

机译:镍基高温合金的平衡分配比,密度和传输现象

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摘要

To simulate transport phenomena, macrosegregation and segregation defects known as "freckles" during directional solidification of Ni-base superalloys, numerical modeling can be used; hence it is essential to have reasonably accurate values of the thermodynamic and transport properties for the alloys. In this research, therefore, the equilibrium partition ratios of the solutes in the Ni-Al-Ta-Cr quaternary system, as a model alloy, were measured, and the solid- and liquid-densities in Ni-base superalloys. were estimated. Also, the importance of these properties on the sensitivity of the results of numerical simulations was studied. The partition ratios apply to equilibria between melts and gamma-phase in the range of 1615 K to 1694 K, and it was found that the equilibrium partition ratio of Ta varies from approximately 0.6 at dilute Ta to 0.85 at 17 wt.% Ta. For the same range of Ta-contents, the partition ratios of Al and Cr vary much less and range from about 0.92 to 0.96. In addition to the partition ratios, the liquidus temperatures of the liquid in equilibrium with γ in the Ni-Al-Ta-Cr system were estimated with a multidimensional regression analysis. To calculate the densities of solid Ni-base superalloys as functions of temperature and composition, lattice parameters at 20°C and coefficients of thermal expansion (CTEs) were estimated by combining available data. The CTEs calculated from the regressions result in densities that are within 0.5% error or less for seventeen alloys. To estimate the densities of liquid Ni-base superalloys, the densities and temperature coefficients of density of the liquid transition-metals, which are used as alloy elements in Ni-base superalloys, were applied to a simple correlation. By using this approach, the estimates of the liquid densities of five Ni-base superalloys agree with the measured values to ±2.5%. Finally, the importance of using reasonably accurate estimates of the transport properties was illustrated by simulations of the thermosolutal convection and macrosegregation during solidification in a directionally solidified Ni-base alloy casting. In these simulations, the sensitivities of equilibrium partition ratio, solutal expansion coefficient and viscosity on the simulation of macrosegregation were determined. It was found that the segregation and convection are sensitive to the properties, especially to the equilibrium partition ratio.
机译:为了模拟镍基高温合金定向凝固过程中的运输现象,宏观偏析和偏析缺陷(称为“雀斑”),可以使用数值模型;因此,必须具有合理的合金热力学和传输性能值。因此,在本研究中,测量了作为模型合金的Ni-Al-Ta-Cr四元系中的溶质的平衡分配比,以及Ni基高温合金中的固相和液相密度。被估计。此外,还研究了这些属性对数值模拟结果的敏感性的重要性。分配比适用于熔体和伽马相之间的平衡,范围为1615 K至1694 K,发现Ta的平衡分配比从稀Ta的约0.6变化到17 wt。%Ta的0.85。对于相同的Ta含量范围,Al和Cr的分配比变化很小,范围为0.92至0.96。除分配比外,还通过多维回归分析估算了Ni-Al-Ta-Cr体系中与γ平衡的液体的液相线温度。为了计算固态镍基高温合金的密度随温度和成分的变化,结合可用数据估算了20°C时的晶格参数和热膨胀系数(CTE)。通过回归计算得出的CTE对17种合金的密度误差在0.5%或更小以内。为了估计液态镍基高温合金的密度,将液态过渡金属的密度和密度的温度系数(用作镍基高温合金的合金元素)进行了简单的关联。通过使用这种方法,五个镍基高温合金的液体密度估计值与测量值相符,为±2.5%。最后,通过对定向凝固的镍基合金铸件凝固过程中的热固对流和宏观偏析的模拟,说明了使用合理准确的传输特性估计值的重要性。在这些模拟中,确定了平衡分配比,溶胀系数和粘度对宏观偏析的敏感性。发现偏析和对流对特性特别是对平衡分配比敏感。

著录项

  • 作者

    Sung Pil Kyung 1961-;

  • 作者单位
  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 en_US
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