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Investigating Efficacy of Cu Nano-Particles as Additive for Bio-Lubricants

机译:研究Cu纳米粒子作为生物润滑剂添加剂的疗效

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Use of nano-materials as lubricant additives is gaining tremendous importance due to their capabilities in enhancing the tribo-performance. The nano-particles of various elements and compounds are efficiently blended in mineral base oils enhancing their physico-chemical as well as tribological properties. However, in recent times due to the environmental concerns, focus is being shifted toward bio based lubricants. Bio lubricants are obtained from plant oil by various chemical modification techniques. They are environment friendly, biodegradable and have better lubricating properties than the mineral oil based counterparts. The major challenge however for these lubricants is the selection of appropriate additives. The commercial additives developed for mineral base oils are generally toxic and not suitable for the Biolubricants. In this context, the present paper attempts to investigate the efficacy of Cu nano-particles as additive for Biolubricants. The non-edible karanja oil has been chemically modified to karanja ester and used as biolubricant. The functionalized Cu nano-particles have been blended in various concentrations in biolubricant and the tribological performance investigated using four ball tribo-tester. In order to ascertain the efficacy of Cu nano-particles as additives, the tribo-performance of Cu nano-particle blended biolubricant has been compared with that of Zinc dialkyl dithio phosphate (ZDDP) blended biolubricant in equal concentrations. ZDDP is a conventional commercially available multi-purpose additive that enhances the tribo-performance of lubricating oils. The comparative study of experimental results showed that ZDDP helps in enhancing the anti-wear performance of bio-lubricant while the Cu nano-particles aided in enhancement of antifriction behavior of biolubricant.
机译:由于其在加强摩擦表现方面,使用纳米材料作为润滑剂添加剂的使用是巨大的重要性。各种元素和化合物的纳米颗粒在矿物质基础油中有效地混合,增强其物理化学品以及摩擦学特性。然而,在近期由于环境问题,焦点正在向生物基润滑剂转移。生物润滑剂通过各种化学改性技术从植物油获得。它们是环保,可生物降解的,具有比基于矿物油的对应物更好的润滑性质。然而,对于这些润滑剂的主要挑战是选择适当的添加剂。为矿物基础油开发的商业添加剂通常有毒,不适合于生物润滑剂。在这种情况下,本文试图研究Cu纳米粒子作为生物润滑剂添加剂的疗效。不可食用的卡拉诺油已经将化学改性为Karanja酯并用作生物润滑剂。官能化的Cu纳米颗粒已以各种浓度的生物润滑剂混合,并且使用四个球摩擦测试仪研究了摩擦学性能。为了确定Cu纳米颗粒作为添加剂的功效,已经将Cu纳米颗粒混合生物润滑剂的摩擦性能与二烷基二酮磷酸二硫胺(ZDDP)混合的Biolwricant的摩擦性能进行了比较。 ZDDP是一种常规的市售多功能添加剂,可增强润滑油的摩擦性能。实验结果的比较研究表明,ZDDP有助于提高生物润滑剂的抗磨损性能,同时Cu纳米颗粒辅助增强BioluRicant的抗抗抗措行为。

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