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Frictional performance evaluation of sliding surfaces lubricated by zinc-oxide nano-additives

机译:氧化锌纳米添加剂润滑滑动表面的摩擦性能评价

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摘要

Automobile engines consume more than 30% of fuel energy as frictional power waste. Therefore, this paper investigated the tribological properties of ZnO nanoparticles (NPs) as a nano-additive to improve the wear and friction trends of the piston ring/cylinder liner interface, especially in boundary lubrication. This improvement occurs due to the formation of a solid tribofilm layer on the sliding surfaces that acts as an indirect coating to help separate and protect the worn pairs. Tribological experiments were carried out under different speeds and loading circumstances using a ring-on-liner reciprocating test bench. The surface morphologies of the tested samples were analysed using EPMA, FE-SEM, a 3D surface profilometer and XPS to illustrate the key mechanisms of the ZnO nano-additives. The tribotest results show that the coefficient of friction and specific wear rate of the ring were reduced by 20-23% and 43-88%, respectively, using the ZnO nano-additives compared with the reference oil.
机译:汽车发动机消耗超过30%的燃料能量作为摩擦力浪费。因此,本文研究了ZnO纳米颗粒(NPS)的摩擦学特性作为纳米添加剂,以改善活塞环/缸衬里界面的磨损和摩擦趋势,尤其是边界润滑。由于在滑动表面上形成固体呋喃木层的形成,该改善是用作间接涂层的滑动表面,以帮助分离和保护磨损的对。使用环形沿衬里往复式测试台在不同的速度和加载情况下进行摩擦学实验。使用EPMA,Fe-SEM,3D表面分析仪和XP分析测试样品的表面形态,以说明ZnO纳米添加剂的关键机制。摩擦结果表明,与参考油相比,使用ZnO纳米添加剂的摩擦系数分别降低20-23%和43-88%。

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