4.6 Article

Friction, Wear and Corrosion Behavior of Environmentally-Friendly Fatty Acid Ionic Liquids

期刊

COATINGS
卷 11, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/coatings11010021

关键词

lubrication; ionic liquids; fatty acids; wear; friction

资金

  1. Spanish Ministry of Economy and Competitiveness [MINECO-17-DPI2016-79690-R]
  2. Foundation for the Promotion in Asturias of Applied Scientific Research and Technology [FC-GRUPIN-IDI/2018/000131]

向作者/读者索取更多资源

In this study, three novel fatty acid anion-based ionic liquids showed similar tribological behavior as lubricants for various material pairs, including steel, aluminum alloy, bronze, cast iron, and tungsten carbide. The corrosion behavior of the ionic liquids was mainly observed on the bronze surface, while XPS analysis indicated low chemical interaction with the surfaces of the tested materials.
This research deals with the tribological behavior and corrosion performance of three novel fatty acid anion-based ionic liquids (FAILs): methyltrioctylammonium hexanoate ([N-8,N-8,N-8,N-1][C-6:0]), methyltrioctylammonium octadecanoate ([N-8,N-8,N-8,N-1][C-18:0]) and methyltrioctylammonium octadec-9-enoate ([N-8,N-8,N-8,N-1][C-18:1]), employed for the first time as neat lubricant with five different material pairs: steel-steel, steel-aluminum alloy, steel-bronze, steel-cast iron and steel-tungsten carbide. These novel substances were previously obtained from fatty acids via metathesis reactions, identified structurally via NMR (nuclear magnetic resonance) and FTIR (Fourier-transform infrared spectroscopy) techniques, and then characterized from a physicochemical (density, water solubility, viscosity, viscosity index and refractive index) and environmental (bacterial toxicity and biodegradability) points of view. The corrosion behavior of the three FAILs was studied by exposure at room temperature, while friction and wear tests were performed with a reciprocating ball-on-disc configuration. The main results and conclusions obtained were: (1) Corrosion in the presence of the three FAILs is observed only on the bronze surface; (2) All FAILs presented similar tribological behavior as lubricants for each tested material pair; (3) XPS (X-ray photoelectron spectroscopy) analysis indicated that the surface behavior of the three FAILs in each material pair was similar, with low chemical interaction with the surfaces.

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