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Experimental study and analysis of lubricants dispersed with nano Cu and TiO2 in a four-stroke two wheeler

机译:四冲程两轮车中分散有纳米铜和二氧化钛的润滑剂的实验研究与分析

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摘要

The present investigation summarizes detailed experimental studies with standard lubricants of commercial quality known as Racer-4 of Hindustan Petroleum Corporation (India) dispersed with different mass concentrations of nanoparticles of Cu and TiO2. The test bench is fabricated with a four-stroke Hero-Honda motorbike hydraulically loaded at the rear wheel with proper instrumentation to record the fuel consumption, the load on the rear wheel, and the linear velocity. The whole range of data obtained on a stationery bike is subjected to regression analysis to arrive at various relationships between fuel consumption as a function of brake power, linear velocity, and percentage mass concentration of nanoparticles in the lubricant. The empirical relation correlates with the observed data with reasonable accuracy. Further, extension of the analysis by developing a mathematical model has revealed a definite improvement in brake thermal efficiency which ultimately affects the fuel economy by diminishing frictional power in the system with the introduction of nanoparticles into the lubricant. The performance of the engine seems to be better with nano Cu-Racer-4 combination than the one with nano TiO2.
机译:本研究总结了详细的实验研究,该实验使用的是商业质量的标准润滑剂,称为印度斯坦石油公司(印度)的Racer-4,分散有不同质量浓度的Cu和TiO2纳米颗粒。测试台由四冲程Hero-Honda摩托车制造,后轮液压加载在适当的仪表上,以记录油耗,后轮负载和线速度。对文具自行车上获得的全部数据进行回归分析,以得出燃料消耗与制动功率,线速度和润滑剂中纳米颗粒质量百分比的函数之间的各种关系。经验关系与观测数据具有合理的准确性。此外,通过建立数学模型来扩展分析范围还揭示了制动器热效率的显着提高,最终通过降低系统中的摩擦力(将纳米颗粒引入润滑剂中)来最终影响燃油经济性。纳米Cu-Racer-4组合的发动机性能似乎比纳米TiO2的发动机更好。

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