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Coating and near-surface modification design strategies for protective and functional surfaces

机译:保护性和功能性表面的涂层和近表面改性设计策略

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This paper discusses strategies for controlling the surface chemistry and microstructure of materials to form protective and functional surfaces through controlled gas-metal reactions. Potential applications range from oxidation, corrosion, and wear resistance to electrochemical devices such as fuel cells to catalysts. Phenomen-ological examples are presented for coatings designed to self-grade under oxidizing conditions, and for the growth of simple and complex (binary and ternary) nitride and carbide phase surface layers by nitridation and carburization reactions. Specific systems discussed include environmental barrier coatings (EBCs) for Si-based ceramics such as Si{sub}3N{sub}4 and SiC, the growth of continuous, protective CrN/Cr{sub}2N, TIN, VN, NiNbVN, and related simple nitride layers on Fe- and Ni-base alloys, the possible formation of ternary nitride and carbide surface phases (e.g. Ti{sub}3AlC{sub}2 and related MAX-phases) on intermetallic surfaces to improve oxidation resistance, and the formation of composite near-surface structures in Ag-SiO{sub}2 and Co(Mo)-Co{sub}6Mo{sub}6C{sub}2 systems.
机译:本文讨论了通过控制气体-金属反应来控制材料的表面化学和微观结构以形成保护性和功能性表面的策略。潜在的应用范围从氧化,腐蚀和耐磨性到电化学装置(例如燃料电池)到催化剂。给出了用于在氧化条件下进行自分级的涂料的现象学实例,以及通过氮化和渗碳反应生长简单和复杂(二元和三元)氮化物和碳化物相表面层的现象学实例。讨论的特定系统包括用于Si基陶瓷(例如Si {sub} 3N {sub} 4和SiC)的环境屏障涂层(EBC),连续的保护性CrN / Cr {sub} 2N,TIN,VN,NiNbVN和Fe和Ni基合金上的相关简单氮化物层,可能在金属间​​表面上形成三元氮化物和碳化物表面相(例如Ti {sub} 3AlC {sub} 2和相关的MAX相)以提高抗氧化性的方法,以及-SiO {sub} 2和Co(Mo)-Co {sub} 6Mo {sub} 6C {sub} 2系统中复合近表面结构的形成。

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