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首页> 外文期刊>Journal of the European Ceramic Society >Alumina-graphene nanocomposite coatings fabricated by suspension high velocity oxy-fuel thermal spraying for ultra-low-wear
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Alumina-graphene nanocomposite coatings fabricated by suspension high velocity oxy-fuel thermal spraying for ultra-low-wear

机译:氧化铝 - 石墨烯纳米复合材料涂料,由悬浮高速氧燃料热喷涂用于超低磨损

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摘要

AbstractAn alumina coating containing 1wt.% graphene nanoplatelets (GNPs) is deposited for the first time by suspension high velocity oxy-fuel (SHVOF) thermal spraying – an emerging coating deposition technique. Raman spectroscopy shows the GNPs survive the process albeit with a two-fold increase in the density of defects in the graphitic lattice. Dry-sliding wear testing at a 10N load yields a two order of magnitude reduction in the specific wear rate for the alumina/GNP composite in comparison to the equivalent pure alumina coating. Testing with varying loads shows that the transition to the severe wear regime is prevented until between 30 and 35N for the alumina+GNP coating which otherwise occurs between 5 and 7.5N in the absence of GNPs. A reinforced microstructure, and specifically fracture toughness, explains the improved wear behaviour as opposed to tribofilm formation.]]>
机译:<![cdata [ 抽象 含有1wt的氧化铝涂层。通过悬浮高速氧 - 燃料(Shvof)热喷涂首次沉积%石墨烯纳米片(GNPS) - 一种新兴涂层沉积技术。拉曼光谱显示GNPS在该过程中存活,尽管石墨晶格中的缺陷密度增加。与等效纯氧化铝涂层相比,10N负载下的干滑滑动磨损测试产生了氧化铝/ GNP复合材料的特定磨损率的两个级别。具有不同负载的测试表明,预防到严重磨损方案的过渡到氧化铝+ GNP涂层的30至35N之间,否则在不存在GNPS的情况下发生在5和7.5N之间。增强的微观结构和特异性断裂韧性解释了与呋喃甲​​形成相反的改善的磨损行为。 ]]>

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