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Wear behaviour of hydrogen free diamond-like carbon thin films in diesel fuel at different temperatures

机译:无氢类金刚石碳薄膜在不同温度下在柴油中的磨损行为

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In the present study, super hard, hydrogen free amorphous diamond-like carbons with a high fraction of sp~3 hybridised carbon were deposited by pulsed laser deposition. The tribological performance of DLC coatings was investigated by translatory oscillating relative motion of a 100Cr6 steel ball in diesel fuel or ambient air at 25 °C or 150 °C temperature. The structure of the coatings and the tribological worn surfaces were characterised by Raman spectroscopy and by scanning electron microscopy. Bio-fuel with a high fraction of unsaturated fatty acids has the potential to reduce friction in tribological systems with chemically inert DLC. Diesel blend with 10% bio-fuel reduces friction at 150 °C. If there is no diesel fuel, pre-oxidation at 450 °C for 8 h leads to the best wear resistance (↓ f & wear rate) at room temperature. Without diesel fuel, enhancement of temperature up to 150 °C during wear testing causes an increase of the coefficient of friction. Again the 450 °C pre-oxidised sample revealed the lowest friction. For this coating, Raman spectroscopy points to a small increase of the sp2 C - C bonds. Diesel fuel seems to promote coherent coating failure under 150 °C wear, while pre-oxidation at 450 °C support adhesive coating ablation under higher loads or cyclic loading.
机译:在本研究中,通过脉冲激光沉积法沉积了具有高比例的sp〜3杂化碳的超硬无氢无定形类金刚石碳。通过在25°C或150°C温度下柴油或环境空气中100Cr6钢球的平移相对运动来研究DLC涂层的摩擦学性能。涂层的结构和摩擦磨损的表面用拉曼光谱和扫描电子显微镜表征。具有高含量不饱和脂肪酸的生物燃料具有减少摩擦系统中具有化学惰性DLC的摩擦的潜力。柴油与10%的生物燃料混合可降低150°C的摩擦。如果没有柴油,则在室温下在450°C下预氧化8 h可获得最佳的耐磨性(↓f和磨损率)。在没有柴油的情况下,磨损测试期间温度升高到150°C会导致摩擦系数增加。同样,在450°C的温度下,预氧化样品的摩擦最小。对于这种涂层,拉曼光谱法指出sp2 C-C键的增加很小。柴油在150°C磨损下似乎会促进涂层的连贯破坏,而450°C下的预氧化则可在较高载荷或周期性载荷下烧蚀粘合剂涂层。

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