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反应等离子喷涂fe al2o3 feal2o4复合涂层形成机理的研究.docx

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反应等离子喷涂fe al2o3 feal2o4复合涂层形成机理的研究.docx

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反应等离子喷涂fe al2o3 feal2o4复合涂层形成机理的研究.docx

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文档介绍:STUDY ON FORMING MECHANISM OF THE Fe-Al2O3-POSITE COATING BY REACTIVE PLASMA SPRAYING
ABSTRACT
In this paper, composite powders of Al/Fe2O3 were prepared essfully by spray granulation using industrial aluminum and iron oxide powder. The metal-posite coating was prepared by plasma spraying using posite powder. The microstructure and phase morphology of posite coating were observed and analyzed. Combine with quenching method and thermodynamic analysis and analysis the data to research the formation mechanism of the reaction.
Using the industrial aluminum and iron oxide powder was mixed according to a certain percentage. The powder will be uniformly mixed by dry mixing, wet mixing and other methods. Add the binder to improve the strength bination. Finally, posite powder was prepared by spray granulation. After selected posite powders to get the rounded shapes and well-regularity can be used by plasma spraying.
The preparation of posite powder feed into the plasma flame stream. Powder was heated and be occurred SHS reaction. The resultant was deposited on the surfaces of the base with plasma gas to stack with each other to form posite coating. The anization of posite coating is FeAl2O4, Fe and Al2O3 was dispersedly embedded in the coating.
anizations of posite powder coating at different Flight distance were obtained by posite powders quenching test. position of coating was analyzed by XRD. Organizational change and reactions of posite powder were obtained in the heating process by DTA and TGA. The change of temperature and speed of posite powder was observed by Spray-Watch2i during the flight. Through the data obtained above analysis bining thermodynamic analysis, posite powder consists of three phases in the flame reaction. Each stage of the reaction will release a lot of heat, but the strength of the reaction was gradually reduced and stabilized. Figure out the chemical reaction at each stage and determine the reaction mechanism. The formation of metal-posite co