Study of the Preparation of a Modified Lubricant Using a W/O Microemulsion Reactor and a Cyclic Voltammetry Study of Rubbing Steel S45C with Lubricants |
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Authors: | Xinlei Gao Li Wu Jian Li Wanzhen Gao Meng Hua |
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Affiliation: | 1. School of Chemical and Environmental Engineering , Wuhan Polytechnic University , Wuhan, Hubei Province, P. R. China gaoxl0131@163.com;3. Wuhan Research Institute of Materials Protection , Wuhan, Hubei Province, P. R. China;4. School of Chemical Engineering and Pharmacy , Wuhan Institute of Technology , Wuhan, Hubei Province, P. R. China;5. Wuhan Research Institute of Materials Protection , Wuhan, Hubei Province, P. R. China;6. MEEM Department , City University of Hong Kong , Kowloon Tong, Kowloon, Hong Kong |
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Abstract: | ![]() A successful preparation of a Schiff base copper complex was carried out directly in rap oil, using a W/O microemulsion reactor. The prepared Schiff base copper complex dispersed equably and spontaneously in the oil. Owing to a modification of the rap oil, by addition of 2%wt of Cu (II) chelate of bissalicylaldehyde-ethylenediamine, the friction coefficient decreased by 80% compared to that of the original one. It was verified by energy dispersive spectroscopy (EDS) and x-ray photoelectron spectroscopy (XPS) analyses that steel/steel rubbing pairs underwent a selective transferring process with such modified lubricants. It was suggested that the mechanism for the improvement in the tribological characteristics of the modified lubricants was due to a selective transferring effect. The Cu (II) chelate of bissalicylaldehyde-ethylenediamine not only served as an additive in the rap oil, but also self-assembled on the surface of the 100Cr6 steel. The self-assembled monolayer (SAM) was examined using SEM techniques. The SAM was characterized with cyclic voltammetry (CV). It indicated that the SAM could activate the rubbing surface of 100Cr6 steel, which benefited the tribological chemical reaction. |
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Keywords: | Cyclic voltammetry modified lubricant Schiff base copper complex selective transferring self-assembled monolayer W/O microemulsion reactor |
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