首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Design of an Eta-Phase Precipitation-Hardenable Nickel-Based Alloy with the Potential for Improved Creep Strength Above 1023 K (750 A degrees C)
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Design of an Eta-Phase Precipitation-Hardenable Nickel-Based Alloy with the Potential for Improved Creep Strength Above 1023 K (750 A degrees C)

机译:具有可在1023 K(750 A摄氏度)以上改善蠕变强度的潜力的可析出相变硬化镍基合金的设计

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摘要

In a number of nickel-based superalloy systems strengthened by gamma prime (gamma'), eta-phase (Ni3Ti, eta) forms during prolonged high-temperature exposure, but its effect on mechanical properties is not well characterized. Using thermodynamic modeling and design-of-experiments techniques, three modifications of the nickel-based superalloy Nimonic (Nimonic(A (R)) is a trademark of Special Metals Corporation group of companies.) 263 were identified that yield increased volume fractions of the eta-phase (Ni3Ti, eta) at temperatures above 1023 K (750 A degrees C). Volume fractions of eta-phase were evaluated for each alloy and heat-treatment condition using optical microscopy, scanning electron microscopy, energy dispersive spectroscopy, and X-ray diffraction. Compared to Nimonic 263, small additions of V and Ta were found to increase the volume fraction of eta-phase above 1023 K (750 A degrees C) from approximately 5 pct to above 15 pct, thus providing a route for future mechanical behavior experimental studies, which was not in the scope of this work.
机译:在许多由γ′(γ′)强化的镍基高温合金体系中,在长时间的高温暴露过程中会形成η相(Ni3Ti,η),但其对机械性能的影响尚未得到很好的表征。使用热力学建模和实验设计技术,对镍基高温合金Nimonic(Nimonic(A(R))是Special Metals Corporation集团公司的商标)进行了三处修改。确定了263种可提高体积分数的产品。温度高于1023 K(750 A摄氏度)的正相(Ni3Ti,eta)。使用光学显微镜,扫描电子显微镜,能量分散光谱和X射线衍射评估每种合金和热处理条件的eta相体积分数。与Nimonic 263相比,发现少量添加V和Ta会使1023 K(750 A摄氏度)以上的η相的体积分数从大约5 pct增加到15 pct以上,从而为将来的机械行为实验研究提供了一条途径,这不在本工作范围之内。

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