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Screening Design of Supersonic Air Fuel Processing for Hard Metal Coatings

机译:硬质金属涂层超声空气燃料的筛选设计

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Replacement of electrolytic hard chromium method by thermal spray technology has shown a growing interest in the past decades, mainly pioneered by depositing WC-based material by conventional HVOF processes. Lower thermal energy and higher kinetic energy of sprayed particles achieved by newly developed Supersonic Air Fuel system, so-called HVAF-M3, significantly reduces decarburization, and increases wear and corrosion resistance properties, making HVAF-sprayed coatings attractive both economically and environmentally. In the present work, full factorial designs of experiments have been extensively utilized to establish relationships between hardware configurations, process and engineering variables, and coatings properties. The relevance of those process factors is emphasized and their significance is discussed in the optimization of coatings for improved abrasion 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方法已显示出越来越浓厚的兴趣,这主要是通过传统的HVOF工艺沉积WC基材料而获得的。新开发的超音速空气燃料系统(所谓的HVAF-M3)可实现更低的热能和更高的喷涂颗粒动能,从而显着减少脱碳,提高耐磨性和耐腐蚀性,从而使HVAF喷涂的涂料在经济和环境方面都具有吸引力。在目前的工作中,已经充分利用了实验的全因子设计来建立硬件配置,过程和工程变量以及涂层特性之间的关系。强调了这些工艺因素的相关性,并在优化涂层以改善磨损和腐蚀性能方面讨论了它们的重要性。

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