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Tribological study of castor oil with surface-modified CuO nanoparticles in boundary lubrication

Rajeev Nayan Gupta (Department of Mechanical Engineering, Indian Institute of Technology (Banaras Hindu University), Varanasi, India)
Harsha A.P. (Department of Mechanical Engineering, Indian Institute of Technology (Banaras Hindu University), Varanasi, India)

Industrial Lubrication and Tribology

ISSN: 0036-8792

Article publication date: 8 May 2018

248

Abstract

Purpose

The present work aims to formulate nanolubricants and improve antiwear, antifriction and extreme pressure (EP) performances of castor oil (CO) with surface-modified CuO nanoparticles as an additive in the boundary lubrication regime.

Design/methodology/approach

In this study, CuO nanoparticles are modified with a surfactant sodium dodecyl sulfate (SDS) by means of a chemical method. These modified nanoparticles with varying concentrations of 0.1, 0.25, 0.5 and 1.0%w/v were used to formulate the nanolubricants. The tribological properties of non-formulated and formulated CO were examined using a four-ball tester. The tribological test results were compared with paraffin oil (PO) for similar compositions.

Findings

The nanoparticle concentrations in base oils were optimized by wear scar diameter (WSD) and load carrying capacity during antiwear and EP tests, respectively. In the antiwear test, the maximum reductions in WSD were 28.3 and 22.2 per cent; however, the coefficient of friction was reduced by 34.6 and 17.3 per cent at optimum nanoparticle concentrations in CO and PO, respectively. A significant improvement in the weld load was observed for both nanolubricants.

Originality/value

This work indicates that nanoparticle-based CO in industrial applications provides on par or better results than mineral oil. Also, it has a negligible hazardous impact on our eco-system.

Keywords

Citation

Gupta, R.N. and A.P., H. (2018), "Tribological study of castor oil with surface-modified CuO nanoparticles in boundary lubrication", Industrial Lubrication and Tribology, Vol. 70 No. 4, pp. 700-710. https://doi.org/10.1108/ILT-02-2017-0030

Publisher

:

Emerald Publishing Limited

Copyright © 2018, Emerald Publishing Limited

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