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滑动轴承应用中生物油和SAE40油静态特性的实验研究

An Experimental Investigation of Static Properties of Bio-Oils and SAE40 Oil in Journal Bearing Applications.

作者信息

Sadiq Muhammad Imran, Ghopa Wan Aizon, Nuawi Mohd Zaki, Rasani Mohammad Rasidi, Ibrahim Sofian

机构信息

Department of Mechanical and Manufacturing Engineering, University Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

Malaysian Nuclear Agency, Kajang 43000, Selangor, Malaysia.

出版信息

Materials (Basel). 2022 Mar 18;15(6):2247. doi: 10.3390/ma15062247.

Abstract

Considerable research has been conducted in the past decade and a half regarding the bio-lubricants potential to replace mineral-based lubricants as mainstream lubricants such as engine oil, hydraulic oil, compressor oil, and metalworking oil. This study studied several bio-lubricants (rapeseed oil, palm olein, and soybean oil) and a mineral-based lubricant, SAE40. The bio-lubricants have better physiochemical, tribological characteristics and environmental friendly nature, and are promising to replace mineral-based lubricants. In this study, a journal bearing test rig (JBTR) was developed in order to investigate the effect of journal speed on the temperature of oil film with time. Additionally, the load-carrying capacity of bio-oils was tested against the mineral-based lubricant SAE40 by adding a load on the journal. For all three speeds, i.e., 1000, 1500, and 2000 rpm, the bio-lubricants recorded minimum temperature. At 1000 rpm, rapeseed oil recorded a 9.2% lower temperature than SAE40. Similarly, at 2000 rpm, rapeseed oil recorded a minimum temperature that was 2.5% lower than SAE40; in comparison, at 1500 rpm, palm olein recorded a minimum temperature that was 1.8% less than SAE40. Overall, the results of this study revealed that bio-oils recorded a lower temperature rise than mineral oil. These results are very encouraging for further research in this area.

摘要

在过去十五年里,人们对生物润滑剂替代矿物基润滑剂成为主流润滑剂(如发动机油、液压油、压缩机油和金属加工油)的潜力进行了大量研究。本研究对几种生物润滑剂(菜籽油、棕榈油精和大豆油)以及一种矿物基润滑剂SAE40进行了研究。生物润滑剂具有更好的物理化学、摩擦学特性和环境友好性,有望替代矿物基润滑剂。在本研究中,开发了一种轴颈轴承试验台(JBTR),以研究轴颈速度随时间对油膜温度的影响。此外,通过在轴颈上加载,测试了生物油相对于矿物基润滑剂SAE40的承载能力。在所有三种速度下,即1000、1500和2000转/分钟,生物润滑剂的温度最低。在1000转/分钟时,菜籽油的温度比SAE40低9.2%。同样,在2000转/分钟时,菜籽油的最低温度比SAE40低2.5%;相比之下,在1500转/分钟时,棕榈油精的最低温度比SAE40低1.8%。总体而言,本研究结果表明,生物油的温度上升比矿物油低。这些结果对该领域的进一步研究非常鼓舞人心。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55e6/8949252/194e4fff8216/materials-15-02247-g001.jpg

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