植物油基离子醇润滑剂的分散稳定性分析

G. Kumar, H. Garg
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摘要

最近,以植物油为原料开发的环保型润滑油(EAL)作为矿物油和合成油的替代品在润滑技术领域得到了更广泛的应用。添加剂在基础润滑油中的均匀性和长期稳定性是植物油基离子醇润滑油(INLs)潜在应用的关键要求。本研究使用两种植物油配制了 INL,即含有 TiO2 纳米粒子(NPs)的米糠油和芝麻油,以及两种离子液体 IL1(1-乙基 3-甲基咪唑鎓双氰胺 [EMIM][DCN] 和 IL2(三己基十四烷基鏻双(24,4-三甲基戊基)膦酸盐 ([P66614][BTMPP]) 与表面活性剂)。主要目的是在十二烷基硫酸钠(SDS)、吐温 20(T-20)和 Triton X-100(TX-100)中找到合适的表面活性剂,并确定添加剂与表面活性剂的最佳比例。通过视觉监测和动态光散射研究了 INL 的分散稳定性。分析表明,添加剂分别在配制的第 10 天和第 20 天开始结块并形成较大的团块。在配制的第 30 天,较大的团块由于重力作用沉降到底部。尽管如此,在添加剂与表面活性剂的最佳比例下,添加剂在植物油中仍然保持稳定。根据分散稳定性分析,记录了四种稳定的样品。添加剂与 TX-100 之比为 1:2 的米糠油和基于 IL1 的 INL 具有长期稳定性。添加剂与 SDS 的比例为 1:6,是米糠油和 IL2 类 INL 的最佳比例。同样,对于芝麻油基 INL,IL1 和 IL2 的添加剂与 T-20 的比例分别为 1:4 和 1:2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dispersion stability analysis of vegetable oil-based ionanolubricants
Recently, environmentally acceptable lubricants (EALs) developed from vegetable oils are more widely used in the field of lubrication technology as an alternative to mineral and synthetic oils. The homogeneous and long-term stability of additives in base lubricants is a crucial requirement for potential applications of vegetable oil-based ionanolubricants (INLs). In this study, the INLs have been formulated with two vegetable oils, rice bran oil and sesame oil containing TiO2 nanoparticles (NPs) and two ionic liquids IL1, 1-ethyl 3-methylimidazolium dicyanamide [EMIM][DCN] and IL2, trihexyltetradecylphosphonium bis(24,4-trimethylpentyl) phosphinate ([P66614][BTMPP]) with surfactants. The main objective is to find the suitable surfactant among sodium dodecyl sulfate (SDS), Tween 20 (T-20), and Triton X-100 (TX-100) and its optimum additives to surfactant ratio. Dispersion stability of INLs has been investigated by using visual monitoring and dynamic light scattering. The analysis showed that additives start agglomeration and make larger clusters on the 10th and 20th days of formulation, respectively. On the 30th day of formulation, the larger clusters settle down in the bottom due to gravity. However, in spite of this pattern, the additives remain stable in vegetable oils at particular optimum additives to surfactant ratio. Four stable samples were recorded on the basis of dispersion stability analysis. Rice bran oil and IL1-based INLs having additives to TX-100 of 1:2 have found long-term stability. Additives to SDS ratios of 1:6 was found optimum for rice bran oil and IL2-based INLs. Similarly, for sesame oil-based INLs, the additives to T-20 ratios of 1:4 and 1:2 are found optimum for IL1 and IL2, respectively.
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