Study on anti-wear and friction-reducing compounding additives in lithium greases

Author:

Shen Yuhai,Wang Yanshuang,Lin Jianghai,Zhang Pu,Gao Xudong,Wang Zijun

Abstract

Purpose This paper aims to determine a suitable anti-wear and friction-reducing compounding additive for lithium greases (LG) by investigating the effects of three single additives potassium borate (PB), zinc dialkyl dithiophosphate and molybdenum dialkyl dithiophosphate (MoDDP) and two compound additives on the friction, wear and extreme pressure properties of LG. Design/methodology/approach The effects of the above five additives on the friction, wear and extreme pressure properties of LG were investigated using an SRV-5 friction tester. An X-ray photoelectron spectrometer was used to analyze the various elements presented on the wear surface as well as the types of compounds. Findings The compound additive suitable for grease consists of PB and MoDDP, which have excellent friction reduction, anti-wear and extreme pressure properties. And a boundary protection film consisting of oxide and MoS2 is formed on the friction surface, thus improving the friction reduction and anti-wear performance of the grease. Originality/value This study can improve the anti-wear and friction-reduction performance of greases, which is of great importance in the field of industrial lubrication. The results of this paper are expected to be useful to researchers and academics of grease. Peer review The peer review history for this article is available at: https://publons.com/publon/10.1108/ILT-11-2022-0350/

Publisher

Emerald

Subject

Surfaces, Coatings and Films,General Energy,Mechanical Engineering

Reference21 articles.

1. The synergetic effects of surface texturing and MoDDP additive applied to ball-on-Disk friction subject to both flooded and starved lubrication conditions;Tribology Letters,2017

2. ZDDP and its interactions with an organic antiwear additive on both aluminium–silicon and model silicon surfaces;Tribology International,2014

3. Electrochemical effect on boundary lubrication of ZDDP additive blended in propylene carbonate/diethyl succinate;Tribology International,2018

4. Friction and wear performances of borates and lanthanum chloride in water;Journal of Rare Earths,2008

5. Ethoxylated amine friction modifiers and ZDDP;Tribology Letters,2019

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