Tribological effect of ZBUP additive on the running-in quality of sliding bearing by fractal analysis

Author:

Wang Zhiyong,Zhou Yuankai,Zuo Xue

Abstract

Purpose The purpose of this paper is to study the tribological effect of zinc borate ultrafine powder (ZBUP) oil additive on the running-in quality. Design/methodology/approach The running-in quality was assessed by friction coefficient and surface topography. Fractal parameters including fractal dimension, the width of multifractal, the multifractal difference, multifractal parameters, phase trajectory and correlation dimension were used to extract the nonlinear characteristics of surface topography and friction coefficient. Findings When the ZBUP additive was added, the convergence degree of the phase trajectory and the stability of the running in were higher than that of base oil. It indicates that the ZBUP additive can improve the running-in quality of sliding bearing. Besides, the ZBUP additive can shorten the running-in time. A boundary protective film, which has good friction-reducing and anti-wear effects, was generated on the surface when the ZBUP additive was added. Originality/value The results have a great significance to improve the running-in quality and prolong the service life of the sliding bearing.

Publisher

Emerald

Subject

Surfaces, Coatings and Films,General Energy,Mechanical Engineering

Reference26 articles.

1. Study on friction and wear of cellulose nanocrystal (CNC), nanoparticle as lubricating additive in engine oil;International Journal of Heat and Mass Transfer,2019

2. Modelling tribochemistry in the mixed lubrication regime;Tribology International,2019

3. A study of the anti-wear and friction-reducing properties of the lubricant additive, nanometer zinc borate;Tribology International,1998

4. The role of MoDTC tribochemistry in engine tribology performance. A Raman microscopy investigation;Tribology International,2020

5. Hydrogel-assisted low-temperature synthesis of calcium borate nanoparticles;Journal of the Australian Ceramic Society,2018

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