纳米增强椰子油作为可持续润滑剂的性能评价

Ibrahim Ogu Sadiq, M. A. Suhaimi, S. Sharif, N. Yusof, K. Park, S. Rahim, N. Alias
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引用次数: 0

摘要

润滑剂用于减少接触面之间的摩擦,特别是涉及机械部件。已经有相当大的努力来开发一种润滑剂,将有助于可持续的过程和高效的性能。植物油具有环保、可生物降解、毒性小、润滑性好等优点,被认为是矿物油的较好替代品。然而,为了有效润滑,它们的热稳定性和氧化稳定性有待提高。本研究旨在开发具有不同体积浓度的磁赤铁矿纳米颗粒的植物油基纳米润滑剂,并对其性能进行评价。将磁赤铁矿(γ - fe2o3)纳米颗粒分散到不同包裹体水平(0.1、0.2和0.3 vol.%)的植物油中,制备了磁赤铁矿纳米润滑剂。结果表明,纳米润滑剂的热物理性能随浓度的增加而改善,而温度的升高会降低其增强效果。椰子油的运动粘度随着体积分数的增加而增强,这使它们能够在更高温度下形成保护薄膜。在80℃的温度下,纳米润滑剂的粘度比纯基础油提高了30.68%。与纯基础油相比,当包合物浓度为0.3 vol.%时,导热系数的最大提高为7.33%,相当于性能提高的1.079倍。摩擦学性能表明,随着浓度的增加,磨痕直径和摩擦系数减小。因此,在生物润滑剂中添加磁铁矿纳米颗粒是一种很有前途的可持续加工纳米润滑剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of nano-enhanced coconut oil as sustainable lubricant
Lubricants are used to reduce friction between contacting surfaces, especially involving mechanical parts. There has been considerable effort to develop a lubricant that will aid sustainable process and efficient performance. Because of their environmental friendliness, biodegradability, less toxic, and good lubricity, vegetable oils are considered a better substitute for mineral oils. However, their thermal and oxidative stability of vegetable needs to be improved for efficient lubrication. This research is aimed at developing and performance evaluation of vegetable oil-based nanolubricants with maghemite nanoparticles at different volume concentrations for sustainable lubrication. Maghemite nanolubricants were prepared by dispersion of the maghemite (γFe2O3) nanoparticles into vegetable oil at a different level of inclusions (0.1, 0.2, and 0.3 vol.%). The result indicated an improvement in the thermophysical properties of the nanolubricants with increased concentration, while an increase in temperature decreases their enhancement. The kinematic viscosity of coconut oil is enhanced with an increase of volume fractions that enable them to form a protective thin film under higher temperature operation. At the temperature of 80 °C, an increase of 30.68% was observed in the viscosity of nanolubricant over the pure base oil. The highest thermal conductivity enhancement over the base fluid is 7.33%, corresponding to a ratio of 1.079 times improved performance at a concentration of 0.3 vol.% inclusion over the pure base oil. The tribological properties showed that the wear scar diameter and coefficient of friction decrease with an increase of concentration. Thus making the addition of maghemite nanaoparticles in biolubricants a promising nanolubricant for sustainable machining.
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