Evaluation of Aromatic Organic Compounds as Additives on the Lubrication Properties of Castor Oil
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Published:2024-07-04
Issue:7
Volume:12
Page:244
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ISSN:2075-4442
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Container-title:Lubricants
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language:en
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Short-container-title:Lubricants
Author:
Hernández-Sierra María Teresa1ORCID, Báez José E.2, Aguilera-Camacho Luis Daniel3ORCID, García-Miranda J. Santos3ORCID, Moreno Karla J.3ORCID
Affiliation:
1. Automotive Systems Engineering Division, Tecnológico Nacional de México/ITS de Irapuato, Irapuato 36821, Mexico 2. Department of Chemistry, University of Guanajuato (UG), Guanajuato 36050, Mexico 3. Mechanical Engineering Department, Tecnológico Nacional de México/IT de Celaya, Celaya 38010, Mexico
Abstract
In the quest for sustainable lubrication solutions, the present research explored the potential of five organic compounds as additives in castor oil (CO) to improve its lubricating properties. The compounds tested were curcumin, eugenol, 1,3-Diphenyl-2-propanone, 1,3-Diphenyl-2-propenone, and 1,3-Diphenyl-1,3-propanedione. The main results showed that each additive enhanced at least one characteristic of CO. Most of the additives lowered the density of the castor oil but increased the viscosity by up to 20%. Curcumin and eugenol were particularly effective in creating thicker lubricant films and higher film thickness ratios. Eugenol and 1,3-Diphenyl-2-propanone significantly reduced the friction coefficient by up to 25%. Wear rate and wear mechanisms were significantly reduced with all the additives, achieving a reduction in wear rate of up to 50% (CO+curcumin). All the additives, except the 1,3-Diphenyl-1,3-propanedione, enhanced the oxidation onset temperature up to 8 °C. The influence of chemical structure was also addressed. The optimal additive combination for a specific application that demands minimal friction and wear, as well as strong oxidation stability, was eugenol, followed by curcumin and 1,3-Diphenyl-2-propanone. Overall, the research contributes to the development of eco-friendly lubricants, aligning with the growing demand for green industrial applications, and highlights the significant tribological benefits of these substances as sustainable additives in biolubricant formulations.
Funder
Tecnológico Nacional de México
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