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Design Approaches and Achievements of Novel Wrought TiAl Alloys for Jet Engine Applications

机译:设计方法和成就的小说造成喷气式发动机的多弧离子镀合金应用程序

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摘要

Design approaches and achievements for the development of wrought TiAl alloys to be used for LPT and HPC blades are constructed. In case of Ti-Al-M1-M2 quaternary systems, conventional equivalency concept does not work for the alloy design, and a new thermodynamic database for phase diagram calculations in multi-component systems of the alloys is built by introducing the interaction parameters among four phases of β−Ti, α2−Ti3Al, α−Ti and γ−TiAl phases in the systems, in order to reproduce the experimentally determined phase diagrams. Based on the phase diagram calculations, the composition range of a unique phase transformation pathway of β+α→α→β+γ in the multi-component system can be identified, and thus model alloys with excellent hot workability even at higher strain rate and mechanical properties can be successfully proposed. It can be concluded that an introduction of bcc β phase and the morphology control through the phase transformation pathway make it possible to improve the room temperature ductility, creep and fatigue crack propagation resistance.
机译:设计方法和成就多弧离子镀合金用于锻造的发展涡轮和HPC叶片构造。Ti-Al-M1-M2第四纪系统,传统合金等价概念不工作设计,一个新的热力学数据库在多组分的相图计算合金是建立的系统介绍四个阶段之间的相互作用参数β−钛、α2−Ti3Al,α−Ti和γ−多弧离子镀系统阶段,为了再现实验相图确定。图计算的成分范围独特的相位变换途径β+α→α→β+γ在多组分的系统可以识别,因此合金具有优良的热模型和易性即使在较高的应变速率和机械性能可以成功建议。引入bccβ阶段和形态通过相位变换路径控制可以提高室温延性、蠕变和疲劳裂纹扩展阻力。

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