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Wood-Powder-Template-Based Syntheses and Tribology of Copper Oxide Particles as Lubricating Oil Additives

机译:基于木粉的基于铜氧化物颗粒的合成和摩擦学,作为润滑油添加剂

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Copper based particles were synthesized by a wood-powder-template-based process. Wood powders mixed with an aqueous cooper salt solution were heated under N_(2) gas flow, and then, the mixture of the charcoal powder and copper particles were heated in air to remove charcoal. Finally, oxidized wood-derived copper particles (OWCu) of less than 1 μm were synthesized. Wood powders acted as the template and limited the sizes of the copper particles. In addition, the tribological properties of OWCu in synthetic oil were investigated using a pin-on-plate reciprocating tribometer. Our results revealed that 0.5 mass% OWCu reduced both the friction coefficient (max 45%) and wear volume (max 39%) of SUJ2 lubricated by PAO4. The best reduction effect was obtained for OWCu synthesized at 400°C under N_(2) gas flow, which had the smallest average particle size, where the coverage of the OWCu layer on the wear track was the largest. These facts suggest that the particle size reduction of OWCu can increase the coverage and improve the friction coefficient and wear volume reduction effects of the lubricant. Control of the wood-powder-template-based synthesized particles to the optimal size for the roughness of the sliding surface would help achieve better tribological performance.
机译:通过基于木粉模板的方法合成铜基颗粒。将木粉与含水组合盐盐溶液混合在N_(2)气流下加热,然后,在空气中加热炭粉末和铜颗粒的混合物以除去木炭。最后,合成氧化木材衍生的铜颗粒(OWCU)的铜颗粒(OWCU)被合成小于1μm。木粉用作模板,并限制铜颗粒的尺寸。此外,使用引脚往复摩数计研究了OWCU在合成油中的摩擦学特性。我们的研究结果表明,0.5质量%OWCU通过PAO4润滑的SUJ2的摩擦系数(最多45%)和磨损量(最多39%)减少。在N_(2)气流下在400℃下合成的OWCU获得最佳的还原效果,其具有最小的平均粒径,其中OWCU层对磨损轨道上的覆盖率最大。这些事实表明,OWCU的粒度减小可以增加覆盖率并改善润滑剂的摩擦系数和磨损体积减少效应。将基于木粉模板的合成颗粒控制到滑动表面粗糙度的最佳尺寸将有助于实现更好的摩擦学性能。

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