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Microstructural Characterization of Cold-Sprayed Nanostructured FeAl Intermetallic Compound Coating and its Ball-Milled Feedstock Powders

机译:冷喷涂纳米FeAl金属间化合物涂层及其球磨原料粉末的显微组织表征

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It is difficult to deposit dense intermetallic compound coatings by cold spraying directly using the compound feedstock powders due to their intrinsic low temperature brittleness. A method to prepare intermetallic compound coatings in-situ employing cold spraying was developed using a metastable alloy powder assisted with post-annealing. In this study, nanostructured Fe/Al alloy powder was prepared by ball-milling process. The cold sprayed Fe/Al alloy coating was evolved insitu to intermetallic compound coating through a post-annealing treatment. The microstructural evolution of the Fe-40Al powder during mechanical alloying and the effect of the post-annealing on the microstructure of the cold sprayed Fe(Al) coatings were characterized by optical microscopy, scanning electron microscopy and X-ray diffraction analysis. The results showed that the milled Fe-40Al powder exhibits lamellar microstructure. The microstructure of the as-sprayed Fe(Al) coating depends significantly on that of the as-milled powder. The annealing temperature significantly influences the in-situ evolution of the intermetallic compound. The annealing treatment at temperature of 500oC results in the complete transformation of Fe(Al) solid solution to FeAl intermetallic compound.
机译:直接使用化合物原料粉末通过冷喷涂难以沉积致密的金属间化合物涂层,因为它们固有的低温脆性。开发了一种使用亚稳合金粉末辅助后退火的冷喷涂原位制备金属间化合物涂层的方法。本研究采用球磨法制备了纳米结构的Fe / Al合金粉末。通过后退火处理,将冷喷涂的Fe / Al合金涂层原位形成金属间化合物涂层。通过光学显微镜,扫描电子显微镜和X射线衍射分析表征了Fe-40Al粉末在机械合金化过程中的组织演变以及后退火对冷喷涂Fe(Al)涂层组织的影响。结果表明,研磨后的Fe-40Al粉末具有层状微结构。喷涂后的Fe(Al)涂层的微观结构很大程度上取决于研磨后的粉末的微观结构。退火温度显着影响金属间化合物的原位演化。在500oC的温度下进行退火处理,使Fe(Al)固溶体完全转变为FeAl金属间化合物。

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