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AN INVESTIGATION OF THE EFFECT OF ADDITION OF NANOPARTICLES ON THE PROPERTIES OF LUBRICATING OIL

机译:纳米颗粒的添加对润滑油性能的影响

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Lubrication is essential to reduce friction and wear in mechanical parts thus minimizing the associated dissipative energy loss. Viscosity is the most important property of lubricating oil, which accounts for its flow resistance. Other important properties of lubricating oil include the flash point and the fire point, which are related to oil storage and handling. The present work is an attempt to study the effect of inclusion of nanoparticles on the kinematic viscosity and the flash point of lubricating oil. Copper oxide and aluminum oxide nanoparticles were suspended in two stroke Servo SAE 20 W-40 lubricating oil using standard ultrasonic agitation process, and the properties of the resulting suspension studied. The effects of the volume fraction of nanoparticles (dosing level varying from 0.02 to 0.2 percentage by volume) on the kinematic viscosity and flash point of the suspension were studied, treating the temperature as a parameter in the range 30°C to 65 °C. An initial increase and subsequent decrease was noticed in the kinematic viscosity as well as the flash point, with an increase in the volume fraction of the nanoparticles. Possible reasons for this behavior were understood to be the increase in density, and the agglomeration of nanoparticles as the dosing level increases.
机译:润滑对于减少机械零件的摩擦和磨损至关重要,因此可以最大程度地减少相关的耗散能量损失。粘度是润滑油的最重要特性,这是其流动阻力的原因。润滑油的其他重要特性包括闪点和着火点,它们与油的储存和处理有关。目前的工作是试图研究纳米粒子的掺入对运动粘度和润滑油闪点的影响。使用标准超声搅拌工艺将氧化铜和氧化铝纳米颗粒悬浮在两冲程Servo SAE 20 W-40润滑油中,并研究所得悬浮液的性能。研究了纳米颗粒的体积分数(剂量水平在0.02至0.2体积百分比之间变化)对悬浮液的运动粘度和闪点的影响,并将温度作为参数在30°C至65°C范围内进行处理。注意到运动粘度以及闪点的最初增加和随后的减少,随纳米颗粒的体积分数的增加而增加。这种行为的可能原因被认为是密度的增加,以及随着剂量水平的增加纳米颗粒的团聚。

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