纳米混合润滑油提高高速减速箱性能的实验研究

Q4 Materials Science
Isai Dharma Rao, C. Prasad, K. Santarao
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引用次数: 0

摘要

蜗杆蜗轮之间的滑动运动是蜗杆蜗轮传动在所有齿轮传动中效率较低的内在因素。这些齿轮的效率在40%到90%之间变化。它们需要好的润滑剂,它具有高的散热能力和低的摩擦系数,以提高效率。除了齿轮的几何形状外,本研究中所考虑的润滑油在减少齿轮箱的功率损失方面也起着重要的作用。纳米混合润滑油具有摩擦系数小、换热系数高等高效的摩擦学和热物理性能。在SAE 140矿物油中以不同体积分数分散的30 nm尺寸的氧化铝纳米颗粒,其摩擦系数在0.1 ~ 0.5%纳米颗粒体积分数范围内均有所降低。体积分数为0.5%时,纳米混合润滑油的换热系数提高了46.35%,且温升小于基础润滑油。实验发现,使用纳米混合润滑剂可以提高所选齿轮箱的整体效率。在35℃和60℃的工作温度下,与使用基础润滑油的齿轮箱相比,使用体积为0.5%的纳米润滑油的齿轮箱性能分别提高了4.85%和7.86%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation to Enhance the Performance of High Speed Reduction Gearbox using Nano Blended Lubricants
The sliding motion between worm and worm wheel is the inherent factor that makes the worm and worm wheel drives less efficient among all the gear drives. Efficiency of these gears varies between 40 to 90%. They need good lubricants, which has high heat dissipation capacity and low coefficient of friction for improving the efficiency. The lubricants considered in the current investigation play a significant role in decreasing the power losses in gearbox besides the geometry of the gears. Nano blended lubricants are found to have efficient tribological and thermal physical properties such as, less frictional coefficient and high heat transfer coefficient. Al 2 O 3 Nano particles of 30 nm size dispersed in SAE 140 mineral oil at different volume fractions resulted decrease in frictional coefficient and found varying from 0.1 to 0.5% nano particle volume fractions. Further, heat transfer coefficient is enhanced by 46.35% for volume fraction of 0.5% and also temperature rise of nano blended lubricant was found to be less than that of base lubricant. The overall efficiency of the selected gearbox with which the experimentation has been done was found to be increased with usage of nano blended lubricant. The performance of the gearbox using nano lubricant at 0.5 volume percent is found improved by 4.85 and 7.86% at operating temperatures 35 and 60 o C, respectively compared to the performance of the gearbox using base lubricant.
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来源期刊
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期刊介绍: The Indian Society for Surface Science and Technology is an organization for the cultivation, interaction and dissemination of knowledge in the field of surface science and technology. It also strives to promote Industry-Academia interaction
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