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Fatty acids-derived protic ionic liquids as lubricant additive to synthetic lube base oil for enhancement of tribological properties

机译:脂肪酸衍生的质子离子液体作为合成润滑剂基础油的润滑剂添加剂,用于增强摩擦学特性

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Rising environmental and energy concerns have propelled interests in the development of novel lubricants, which can effectively lubricate a diversified range of engineering systems and subsidize the environmental footprints. In this context, fatty acids-derived trioctylphosphonium cation-based protic ionic liquids having significantly low viscosity (15-48 mm(2).s(-1)) compared to conventional ionic liquids are addressed as additives to synthetic lube oil. The variable chain length in the fatty acids anions governs the interactive forces; accordingly, the viscosity and rheological properties of these ionic liquids are changed. Protic ionic liquids as additive (1.5 w/v%) to synthetic oil decreased the friction (28-41%) between the steel balls and protected the contact surfaces by reducing the wear (15-32%) under the boundary lubrication. The structural changes in constituted fatty acids anions in the protic ionic liquids governed the friction and wear characteristics. The thorough distribution of phosphorus along with other characteristics elements of protic ionic liquids revealed the formation of tribochemical thin film on the contact interfaces. These protic ionic liquids as lubricants outperformed the synthetic oil and showed reduction in the coefficient of friction (60-65%) and wear (27-33%). A facile approach to prepare the fatty acids-derived protic ionic liquids, low viscosity, and formation of tribochemical thin film of low shear strength promise the potential of these ionic liquids for tribological applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:环境和能源担忧的上升在新型润滑油的开发方面有利于有效润滑多样化的工程系统,并补贴环境足迹。在这种情况下,与常规离子液体相比,脂肪酸衍生的基于粘度的基于粘度的三羟基膦酰基阳离子基磷酸阳离子的质子离子液体(15-48mm(2))。(-1))作为合成润滑油的添加剂。脂肪酸阴离子中的可变链长度控制互动力;因此,改变了这些离子液体的粘度和流变性质。作为添加剂(1.5W / v%)的质子离子液体为合成油,通过减少边界润滑下的磨损(15-32%)来保护钢球之间的摩擦(28-41%)并保护接触表面。构成的脂肪酸阴离子在质子离子液体中的结构变化控制了摩擦和磨损特性。磷的彻底分布以及质子离子液体的其他特征元素显示在接触界面上形成培养薄膜。作为润滑剂的这些质子离子液体优于合成油,并显示摩擦系数(60-65%)和磨损(27-33%)。一种容易制备脂肪酸衍生的质粒离子液体,低粘度和培养基薄膜的低剪切力薄膜的形成,这希望这些离子液体用于摩擦学应用的潜力。 (c)2019 Elsevier B.v.保留所有权利。

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