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Optimization of WC-based HVAF-sprayed Coatings for Alternative to Hard Chromium: Role of Carbides Grain Size and Mean Free Path on Coating Wear and Corrosion Properties

机译:基于WC的HVAF喷涂涂层替代硬铬的优化:碳化物晶粒度和平均自由程对涂层磨损和腐蚀性能的作用

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摘要

Replacement of Electrolytic Hard Chromium (EHC) method by Thermal Spray Technology has shown a growing interest the past decades, mainly pioneered by depositing WC-based material by conventional HVOF process. Lower thermal energy and higher kinetic energy of sprayed particles achieved by newly developed HVAF systems, significantly reduces decarburization, and increases wear and corrosion resistance properties, making HVAF coatings attractive both economically and environmentally. Two different agglomerated and sintered powder chemistries, respectively WC-Co and WC-Co-Cr, have been deposited by the HVAF-M3 process, and evaluated on the basis of material decarburization, coating porosity and microhardness. The role of carbides grain size, carbides contiguity and binder mean free path on coating microstructure, wear and corrosion resistance properties are emphasized and discussed as potential optimization of coating for high wear and corrosion performances.
机译:在过去的几十年中,用热喷涂技术代替电解硬铬(EHC)方法显示出了越来越高的兴趣,这主要是通过使用传统的HVOF工艺沉积基于WC的材料引起的。新开发的HVAF系统可实现较低的热能和较高的喷涂颗粒动能,可显着减少脱碳,并提高耐磨性和耐腐蚀性,从而使HVAF涂料在经济和环境方面都具有吸引力。 HVAF-M3工艺沉积了两种不同的烧结粉末化学物质,分别为WC-Co和WC-Co-Cr,并根据材料的脱碳,涂层孔隙率和显微硬度进行了评估。强调并讨论了碳化物晶粒度,碳化物连续性和粘结剂平均自由程对涂层微观结构,耐磨性和耐腐蚀性能的作用,并将其作为实现高耐磨性和腐蚀性能的潜在涂层优化方法。

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