Additives Depletion by Water Contamination and Its Influences on Engine Oil Performance

Author:

Al Sheikh Omar A.,Salehi F. Motamen,Farooq U.,Morina A.

Abstract

AbstractWater enters engine oil in different ways and moves in the lubrication system causing an increase in wear, oil degradation and additives depletion. It has been proposed that water in the lubricants can transfer from dissolved to free phase leading to additives depletion in the oil. Different additives in the lubricants can easily latch to water molecules forming reverse micelles. The separation of reverse micelles from the oil causes additives depletion. This experimental and analytical study aims to investigate how the separation of free water above the saturation level can diminish the efficiency of additives in engine oils. The effect of varied levels of water on oil performance and its additives was investigated in this study. A new saturation method was used to determine the water saturation level in engine oil at different temperatures. The results reveal a decrease in additive concentration with increased separation of free water from the oil. Free water separation from engine oil is expected to reclaim the tribological performance, however, the results demonstrate that tribological performance after the separation of free water from the oil has been affected. The study showed not only does the removal of free water diminish the efficiency of additives due to additives depletion (≈ 10 wt%), but also the remaining dissolved water which is ≈ 2600 ppm can also affect wear and tribofilm chemistry. The results prove that two main mechanisms influence oil performance expressed as additives depletion by free water and remaining dissolved water.

Funder

EPSRC Centre for Doctoral Training for Integrated Tribology

Publisher

Springer Science and Business Media LLC

Reference45 articles.

1. George, S., Balla, S., Gautam, V., Gautam, M.: Effect of diesel soot on lubricant oil viscosity. Tribol. Int. 40(5), 809–818 (2007). https://doi.org/10.1016/j.triboint.2006.08.002

2. Evans, J.: How do oils degrade ? Wear Check 52, 1–6 (2011)

3. Raymond, L.: Hydrogen Embrittlement: Prevention and Control, vol. 962. ASTM International, West Conshohocken (1988)

4. Ray, G., Fogel. G.: Estimating water content in oils: moisture in solution, emulsified water, and free water. In: Proceedings of a Joint Conference Technology Showcase: Integrated Monitoring, Diagnostics and Failure Prevention. (1996)

5. Harika, E., Bouyer, J., Fillon, M.: Impact of lubricant contamination with water on hydrodynamic thrust bearing performance. Mech. Ind. 12, 553 (2010)

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