首页> 外文期刊>Journal of Thermal Spray Technology >HVOF-Sprayed Coatings Engineered from Mixtures of Nanostructured and Submicron Al{sub}2o{sub}3-TiO{sub}2 Powders: An Enhanced Wear Performance
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HVOF-Sprayed Coatings Engineered from Mixtures of Nanostructured and Submicron Al{sub}2o{sub}3-TiO{sub}2 Powders: An Enhanced Wear Performance

机译:由纳米结构和亚微米Al {sub} 2o {sub} 3-TiO {sub} 2粉末混合物设计的HVOF喷涂涂层:增强的耐磨性能

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摘要

In previous studies, it has been demonstrated that nanostructured Al{sub}2O{sub}3-13 wt.%TiO{sub}2 coatings deposited via air plasma spray (APS) exhibit higher wear resistance when compared to that of conventional coatings. This study aimed to verify if high-velocity oxy-fuel (HVOF)-sprayed Al{sub}2O{sub}3-13 wt.%TiO{sub}2 coatings produced using hybrid (nano + submicron) powders could improve even further the already recognized good wear properties of the APS nanostructured coatings. According to the abrasion test results (ASTM G 64), there was an improvement in wear performance by a factor of 8 for the HVOF-sprayed hybrid coating as compared to the best performing APS conventional coating. When comparing both hybrid and conventional HVOF-sprayed coatings, there was an improvement in wear performance by a factor of 4 when using the hybrid material. The results show a significant antiwear improvement provided by the hybrid material. Scanning electron microscopy (SEM) at low/high magnifications showed the distinctive microstructure of the HVOF-sprayed hybrid coating, which helps to explain its excellent wear performance.
机译:在先前的研究中,已经证明,通过空气等离子体喷涂(APS)沉积的纳米结构Al {sub} 2O {sub} 3-13 wt。%TiO {sub} 2涂层与常规涂层相比具有更高的耐磨性。这项研究旨在验证使用混合(纳米+亚微米)粉末生产的高速含氧燃料(HVOF)喷涂的Al {sub} 2O {sub} 3-13 wt。%TiO {sub} 2涂层是否可以进一步改善APS纳米结构涂层已经公认的良好耐磨性能。根据磨损测试结果(ASTM G 64),与性能最佳的APS常规涂层相比,HVOF喷涂的混合涂层的磨损性能提高了8倍。当比较混合涂料和常规HVOF喷涂涂料时,使用混合材料时,耐磨性能提高了4倍。结果表明,该杂化材料显着改善了抗磨性能。低/高放大倍数的扫描电子显微镜(SEM)显示了HVOF喷涂混合涂层的独特微观结构,这有助于解释其优异的耐磨性能。

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