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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Performance of nano-bio-lubricants, ISO VG46 oil and its blend with Jatropha oil in statically loaded hydrodynamic plain journal bearing
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Performance of nano-bio-lubricants, ISO VG46 oil and its blend with Jatropha oil in statically loaded hydrodynamic plain journal bearing

机译:纳米生物润滑剂的性能,ISO VG46油及其与静态加载的流体动力学平原轴颈轴承中的Joatropha油的混合物

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摘要

In this experimental study, three stable nano-bio-lubricants were prepared by dispersing CuO nanoparticles in three bio-lubricants and later investigations were carried out to determine pressure distribution and frictional performance of ISO VG46 oil, bio-lubricants and nano-bio-lubricants in hydrodynamic journal bearing under different loads and speeds. The experimental results revealed that pressure of oils inside bearing depends on viscosity of oils. Addition of nanoparticles in bio-lubricants did not help to enhance the maximum pressure of oil inside bearing. Frictional performance of ISO VG46 oil and bio-lubricants was according to their viscosity but coefficient of friction of nano-bio-lubricants was higher compared to ISO VG46 oil inspite of having approximately same viscosity compared to ISO VG46 oil. Among all the oils, ISO VG46 oil and bio-lubricant 9010 had similar performance and hence Bio-lubricant 9010 can be used in place of ISO VG46 oil in journal bearing.
机译:在该实验研究中,通过将CuO纳米颗粒分散在三种生物润滑剂中,进行后来的研究,以确定ISO VG46油,生物润滑剂和纳米生物润滑剂的压力分布和摩擦性能,制备三种稳定的纳米生物润滑剂。 在不同负载和速度下的流体动力学轴承。 实验结果表明,轴承内的油压取决于油的粘度。 在生物润滑剂中添加纳米颗粒没有帮助提高内部轴承内的最大压力。 ISO VG46油和生物润滑剂的摩擦性能根据它们的粘度,但与ISO VG46的ISO VG46油相比,纳米生物润滑剂的摩擦系数更高。 在所有油中,ISO VG46油和生物润滑剂9010具有类似的性能,因此可以使用生物润滑剂9010代替ISO VG46油。

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