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Effect of spraying parameters on the microstructural and corrosion properties of HVAF-sprayed Fe-Cr-Ni-B-C coatings

机译:喷涂参数对HVAF喷涂Fe-Cr-Ni-B-C涂层微观组织和腐蚀性能的影响

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Thermally sprayed Fe-based coatings have been extensively studied as future solution in order to replace more expensive, harmful and environmentally dangerous Ni- and WC-based coatings for several industrial applications where high corrosion and wear resistance are required. The aim of the present study is to investigate the effect of spraying parameters on the microstructure and the corrosion resistance of Fe-based coatings manufactured with the High Velocity Air Fuel (HVAF) thermal spray process. Six sets of thermal spraying parameters have been chosen and their effect on the overall quality of coatings was investigated. All HVAF coatings showed comparably dense microstructure with near-zero oxidation, proving the high quality of the deposition process. However, higher anti-corrosion and mechanical properties were achieved by increasing the spraying air pressure and decreasing the particle feeding rate without altering the thickness and the overall deposition rate. Powder feeding rate was reported to have a remarkable effect on microstructure and corrosion properties. Coatings with beneficial compressive residual stresses were successfully obtained by increasing air pressure during spraying which resulted in improved microstructural and corrosion properties. (C) 2015 Elsevier B.V. All rights reserved.
机译:热喷涂铁基涂层已被广泛研究,作为未来的解决方案,目的是在需要高耐蚀性和耐磨性的几种工业应用中,代替更昂贵,有害和对环境有害的镍基和碳化钨基涂层。本研究的目的是研究喷涂参数对用高速空气燃料(HVAF)热喷涂工艺生产的铁基涂层的微观结构和耐蚀性的影响。选择了六组热喷涂参数,并研究了它们对涂料整体质量的影响。所有HVAF涂层均显示出相当致密的微观结构,氧化程度接近零,证明了沉积工艺的高质量。但是,在不改变厚度和总沉积速率的情况下,通过增加喷涂气压和降低颗粒进料速率可以获得更高的防腐性能和机械性能。据报道粉末进料速度对显微组织和腐蚀性能有显着影响。通过增加喷涂过程中的气压可以成功获得具有有益压缩残余应力的涂层,从而改善了组织和腐蚀性能。 (C)2015 Elsevier B.V.保留所有权利。

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