Assessment of the Impact of Lubricating Oil Contamination by Biodiesel on Trunk Piston Engine Reliability

Author:

Chybowski Leszek1ORCID,Kowalak Przemysław2,Dąbrowski Piotr3

Affiliation:

1. Department of Machine Construction and Materials, Faculty of Marine Engineering, Maritime University of Szczecin, ul. Willowa 2, 71-650 Szczecin, Poland

2. Department of Marine Power Plants, Faculty of Marine Engineering, Maritime University of Szczecin, ul. Willowa, 71-650 Szczecin, Poland

3. Independent Researcher, 71-650 Szczecin, Poland

Abstract

The rheological, ignition, and tribological properties of lubricating oils diluted with biodiesel were analyzed. The flash point tFP, calculated cetane index CCI, density ρ, coefficient of the temperature density change ε, kinematic viscosity ν, dynamic viscosity η, viscosity index VI, and lubricity during a High-Frequency Reciprocating Rig (HFFR) test (x, y, WSD, and WS1.4) and lubricating conditions during an HFFR test (oil film resistance FILM and friction coefficient μ) were determined. The test was performed for the oil mixtures of the lubricating oil of the SAE 30 and SAE 40 viscosity grades, which were diluted with the biodiesel blend (D93B7—diesel oil with 7% v/v fatty acid methyl esters, FAME) at concentrations of diesel oil in the mixture equal to 0% (pure lubricating oil), 1%, 2%, 5%, 10%, 20%, 30%, 50%, and 75% m/m, respectively. The experiment confirmed the existence of clear relationships between the increase in the dilution of lubricating oil with tested biodiesel blend and tFP, ρ, ε, ν, η, and VI, and the deterioration of lubrication conditions. It is recommended to take remedial action even in the case of low diesel oil concentration (<5% m/m) in the lubricating oil due to tFP, ν, and η changes. Simultaneously, the tests showed no significant effect on the lubricity and the CCI. The critical contamination of oil with fuel in the range of 2–5% by weight, as indicated in the literature, still allowed for a certain “safety margin” regarding these parameters. However, when the concentration of diesel fuel in the lubricating oil exceeded 5–8% m/m, the deterioration of the lubrication was expressed by a decrease in FILM and an increase in μ was observed; hence, such a contamination should be considered excessive. When the concentration of diesel fuel exceeds 10% by weight, there is a serious risk of engine damage during operation.

Funder

Ministry of Science and Higher Education (MEiN) of Poland

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference69 articles.

1. Assessing the topicality of the problem related to the explosion of crankcases in marine main propulsion engines (1972–2018);Wiaterek;Sci. J. Marit. Univ. Szczec.,2022

2. Vessel main propulsion engine performance evaluation;Borkowski;J. KONES,2012

3. A method for assessing of ship fuel system failures resulting from fuel changeover imposed by environmental requirements;Kowalak;Eksploat. Niezawodn.—Maint. Reliab.,2021

4. Biofuels as an alternative fuel for West Pomeranian fishing fleet;Szczepanek;J. Phys. Conf. Ser.,2019

5. Zhang, Y., Ma, Z., Feng, Y., Diao, Z., and Liu, Z. (2021). The Effects of Ultra-Low Viscosity Engine Oil on Mechanical Efficiency and Fuel Economy. Energies, 14.

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