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Novel casting processes for single-crystal turbine blades of superalloys

机译:高温合金单晶涡轮叶片的新型铸造工艺

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摘要

This paper presents a brief review of the current casting techniques for single-crystal (SC) blades, as well as an analysis of the solidification process in complex turbine blades. A series of novel casting methods based on the Bridgman process were presented to illustrate the development in the production of SC blades from super-alloys. The grain continuator and the heat conductor techniques were developed to remove geometry-related grain defects. In these techniques, the heat barrier that hinders lateral SC growth from the blade airfoil into the extremities of the platform is minimized. The parallel heating and cooling system was developed to achieve symmetric thermal conditions for SC solidification in blade clusters, thus considerably decreasing the negative shadow effect and its related defects in the current Bridgman process. The dipping and heaving technique, in which thin-shell molds are utilized, was developed to enable the establishment of a high temperature gradient for SC growth and the freckle-free solidification of superalloy castings. Moreover, by applying the targeted cooling and heating technique, a novel concept for the three-dimensional and precise control of SC growth, a proper thermal arrangement may be dynamically established for the microscopic control of SC growth in the critical areas of large industrial gas turbine blades.
机译:本文简要介绍了当前单晶(SC)叶片的铸造技术,并对复杂涡轮机叶片的凝固过程进行了分析。提出了一系列基于Bridgman工艺的新颖铸造方法,以说明由超级合金生产SC叶片的发展。开发了晶粒连续剂和导热技术,以消除与几何相关的晶粒缺陷。在这些技术中,使阻碍横向SC从叶片翼型向平台末端生长的隔热层最小化。开发了平行加热和冷却系统,以实现叶片簇中SC固化的对称热条件,从而大大降低了当前Bridgman工艺中的负面阴影效应及其相关缺陷。开发了利用薄壳模具的浸沉技术,以便为SC的生长和高温合金铸件的无斑点凝固建立高温梯度。此外,通过应用有针对性的冷却和加热技术,对SC增长进行三维精确控制的新颖概念,可以动态建立适当的热布置,以便对大型工业燃气轮机关键区域中的SC增长进行微观控制。刀片。

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