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首页> 外文期刊>Journal of the European Ceramic Society >Dispersion of graphite flakes into boehmite sols for the preparation of bilayer-graphene / alumina coatings on stainless steel for tribological applications
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Dispersion of graphite flakes into boehmite sols for the preparation of bilayer-graphene / alumina coatings on stainless steel for tribological applications

机译:石墨溶液将石墨溶液分散在硼砂溶胶中,为摩擦钢制备双层 - 石墨烯/氧化铝涂层,用于摩擦钢摩擦钢

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摘要

Carbon-alumina coatings on stainless steel were prepared by a sol-gel route. The dispersion of the commercial graphite flakes by an ultrasonic bath, an ultrasonic probe and a high-shear mixer, produce thinner flakes, fewlayered-graphene and bi-layer-graphene (BLG), respectively. The coatings were examined by optical and electron microscopy, interferential rugosimetry, optical profilometry and Raman spectroscopy. The friction coefficient against a steel ball is decreased by a factor of 5-7 and the wear volume is reduced by a factor of 6-38 compared to a pure alumina coating. The best results correspond to the sample prepared using the high-shear mixer. Delamination of the graphite flakes into BLG during the friction test provides the system with debris suitable for tribofilm building up and lubrication but it is better to already have carbon dispersed as BLG in the coating before the test, notably because the carbon surface area available is much higher.
机译:通过溶胶 - 凝胶途径制备不锈钢上的碳 - 氧化铝涂层。 通过超声浴,超声波探头和高剪切混合器,分别产生较薄的薄片,少数 - 石墨烯和双层 - 石墨烯(BLG)来分散商业石墨薄片。 通过光学和电子显微镜,干涉式官能测定法,光学轮廓测定法和拉曼光谱检查涂层。 与纯氧化铝涂层相比,抵抗钢球的摩擦系数降低5-7倍,并且磨损体积减小了6-38倍。 最佳结果对应于使用高剪切混合器制备的样品。 在摩擦试验期间石墨薄片的分层为BLG提供了适用于碎屑的碎屑构建和润滑的碎片,但在测试之前已经更好地将碳在涂层中分散为BLG,特别是因为可用的碳表面区域很多 更高。

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