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反應火焰噴涂合成TiC-Fe涂層的反應機理

Reaction Mechanism of Preparing TiC-Fe Coatings by Reactive Flame Spray Synthesis

  • 摘要: 利用差熱分析(DTA)、X-射線分析(XRD)等測試手段,研究了反應火焰噴涂過程中噴涂粉末(Fe-Ti-C體系)的反應機理.研究結果表明,在反應火焰噴涂合成TiC-Fe涂層中,噴涂粉末在飛行過程中的反應是逐步進行的.噴涂距離為125~170mm是發生反應的主要區域.在到達工件表面時,反應已基本結束.因此,與傳統熱噴涂相比,反應火焰噴涂的優勢在于,利用廉價原料一步合成、沉積比較昂貴的涂層材料.

     

    Abstract: The reaction mechanism of Fe-Ti-C system was studied by Deferent Thermal Analysis (DTA),X-Ray Analysis (XRD), Scanning Electron Micrograph (SEM) and other means during the reactive apglomerated spray powder flying when TiC-Fe cermet coatings were obtained by Reactive Flame Spray Synthesis (RFSS). It is revealed tha the reaction of Fe-Ti-C system happened step by step during the reactive spray powder flying, and basically finished when it reached the substrate, TiC-Fe materials were mainly synthsized when the spray distance is 125~170 mm. Therefore, Compared with the theditional oxygen-acetylene flame spray technology,the advantages of RFSS lied in simultaneous synteesis and deposition of expensive coating materials from an in-situ reaction of cheap raw materials.

     

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