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Composition and Temperature Stability of η and δ Phases for Future Nickel-Base Superalloys for Turbine Disks Application

机译:用于涡轮盘应用的未来镍基超合金的η和δ相的组成和温度稳定性

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To provide precipitation hardening of nickel-base superalloys, γ' and γ" phases can be partially replaced by phases like eta (η) and delta (δ), which may be stable up to temperatures higher than 800°C. Nevertheless, there is still a lack of information about these phases in terms of crystal structure, composition, thermodynamic stability, and precipitate morphology. Therefore, the present study focuses on the composition and temperature stability of η and δ phases in alloys with high Nb and Ta contents. Various experimental nickel-base alloys were designed using literature and thermodynamic calculations. After solution and aging treatments, they were characterized using SEM to determine precipitate morphology and distribution, and TEM-EDS to determine crystal structure and composition of precipitated phases. Combined in situ HE-XRD experiments followed by metallographic analysis were performed to determine the solvus temperature of η phase in several alloys. Results on the nature of the precipitated phases show that thermodynamic calculations (TCNI7 database) and composition criteria are not always consistent with experimental data. The investigation also reveals that Ta is more favorable to form η phase than Nb and that other elements than Nb, Ta, Al, and Ti have an effect on η and δ phases, such as Cr, Co, and Fe. Hence, the composition criteria for the formation of η and δ phases in alloys with high Ta content are discussed.
机译:为了提供镍基超合金的沉淀硬化,γ'和γ“相可以部分地通过η(η)和δ(δ)等相位替换,这可能稳定到高于800°C的温度。尽管如此,还有仍然在晶体结构,组成,热力学稳定性和沉淀形貌方面缺乏关于这些阶段的信息。因此,本研究专注于高Nb和Ta含量的合金中η和δ相的组成和温度稳定性。各种使用文献和热力学计算设计了实验镍基合金。在溶液和老化处理后,它们的特征在于使用SEM来确定沉淀形态和分布,以及测定晶体结构和沉淀阶段的组成。与原地相结合进行XRD实验,然后进行金相分析,以确定几种合金中η相的溶剂温度。结果对Th的性质e沉淀的阶段表明,热力学计算(TCNI7数据库)和组成标准并不总是与实验数据一致的。研究还揭示了TA更有利地形成η相比Nb,而不是Nb,Ta,Al和Ti的其他元素对η和δ相具有效果,例如Cr,Co和Fe。因此,讨论了用于形成具有高TA含量的合金中η和δ相的组合标准。

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