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首页> 外文期刊>CERAMICS INTERNATIONAL >Tribological behaviour of atmospheric plasma and high velocity oxy-fuel sprayed WC-Cr3C2-Ni coatings at elevated temperatures
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Tribological behaviour of atmospheric plasma and high velocity oxy-fuel sprayed WC-Cr3C2-Ni coatings at elevated temperatures

机译:大气压等离子体和高速氧燃料喷涂WC-CR3C2-Ni涂层的摩擦学行为在升高的温度下

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摘要

The thermally-sprayed coatings extensively used in high temperatures application such as aerospace, power generation equipment, hot section components in gas and steam turbines. Most of the thermally sprayed WC based coatings lost the functional ability after 500 degrees C. Consequently, the work focuses on the development of WC based coatings which could sustain with excellent functional ability even above 500 degrees C. The unidirectional dry sliding wear of WC-Cr3C2-Ni coatings deposited by atmospheric plasma spray (APS) and high-velocity oxy-fuel (HVOF) techniques have been relatively investigated up to 800 degrees C using ball-on-disc high-temperature tribometer (ASTM G99). The scanning electron microscopy (SEM), energy dispersive X-ray analyser (EDX) and Raman spectroscopy analysed the worn-out surface morphology, oxide content and phase transition. The detailed wear mechanisms at 300 degrees C, 500 degrees C and 700 degrees C were studied. Interestingly, the specific wear rates of both the coatings were declined after 500 degrees C. The study of the relationship between wear and tribo-oxidation process suggested that HVOF coatings inhibit the wear above 500 degrees C, due to development of tribo-film and well retained WC phase on the surface even at high temperature. The lubricous oxides WO3, NiWO4 and CrWO4, attributed to form a tribo-oxide film which resulted into superior wear resistance up to 800 degrees C. Nevertheless, specific wear rates for both coatings are in a mild regime which recommended that WC-Cr3C2-Ni coatings could be more durable up to 800 degrees C in the oxygen-enriched environments.
机译:热喷涂涂层广泛用于高温应用,例如航空航天,发电设备,气体和蒸汽涡轮机中的热部分部件。大多数热喷涂的WC基涂层在500摄氏度后失去了功能能力。因此,该工作侧重于WC基涂层的开发,该涂层甚至可以以优异的功能能力维持甚至高于500摄氏度。 CR3C2-Ni涂层沉积在大气等离子喷雾(APS)和高速氧燃料(HVOF)技术中,使用球盘高温摩擦计(ASTM G99)已经相对高达800℃。扫描电子显微镜(SEM),能量分散X射线分析仪(EDX)和拉曼光谱分析了磨损的表面形态,氧化物含量和相变。研究了300摄氏度,500℃和700摄氏度的详细磨损机制。有趣的是,500摄氏度后,涂层的特定磨损率下降。磨损和摩擦氧化过程之间关系的研究表明,由于摩擦胶片和良好的发展,HVOF涂层抑制了500℃以上的磨损即使在高温下也保持了表面上的WC相。润滑氧化物WO3,NiWO4和Crwo4,归因于形成摩擦膜,其导致高达800℃的耐磨性耐磨性,两种涂层的特异性磨损率在温和的状态下,这推荐了WC-CR3C2-NI在富含氧的环境中,涂层可以更耐用高达800℃。

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