Author:
Zhang Hong,Han Sheng,Hu Wenjing,Li Jiusheng
Abstract
Purpose
The purpose of this paper is to improve the properties of metal nanoparticles which are easy to agglomerate and hard to disperse evenly, thus limiting the application of metal nanoparticles in grease. A novel technology was proposed for modifying metal oxide to improve the dispersibility of nanoparticles.
Design/methodology/approach
SA-TiO2 nanoparticles were synthesized using an in-situ esterification method followed by surface modification with stearic acid. The microstructure of the nanoparticles was characterized by scanning electron microscope, transmission electron microscope and Fourier transform infrared spectroscopy and their thermal stability was evaluated by thermogravimetric analyzer. The tribological properties of the SA-TiO2 nanoparticles as additives in lithium grease were evaluated with a four-ball tester and TE77 reciprocating friction tester. The worn surfaces of the steel balls were investigated by EDS and XPS.
Findings
The prepared nanoparticles can be well dispersed in the lithium grease and possess much better tribological properties compared to traditional nanoparticles. The results indicated that the excellent tribological performance of SA-TiO2 was attributed to the chemical reaction film composing of Fe2O3, iron oxide and other organic compounds.
Originality/value
This paper provides a method to prevent the agglomeration of nano-TiO2 by surface modification with stearic acid. And the prepared nanoparticles can effectively improve the tribology performance of lithium grease.
Subject
Surfaces, Coatings and Films,General Energy,Mechanical Engineering
Reference30 articles.
1. Effects of ZrO2 nanoparticle content on microstructure and wear behavior of titanium matrix composite;Journal of Materials Research and Technology,2020
2. Friction and wear behavior of chemically modified Sal (shorea robusta) oil for bio based lubricant application with effect of CuO nanoparticles;Fuel,2020
3. Synthesis characterization, and tribological behavior of neopentyl polyol ester-based and mixed oil-based titanium complex grease;Tribology Letters,2010
4. Tribological properties of polytetrafluoroethylene, Nano-Titanium dioxide, and Nano-Silicon dioxide as additives in mixed oil-based titanium complex grease;Tribology Letters,2010
5. Numerical and experimental studies on performance enhancement of journal bearings using nanoparticles based lubricants;Archives of Computational Methods in Engineering,2021
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