Nanoparticles and organic friction modifiers (OFMs) as lubricant additives have shown great potential in friction and wear reduction by forming tribofilms which prevent direct contact at the sliding interface. Potential mechanisms for the formation of these tribofilms remain poorly understood, limiting the ability to optimise the performance of the entire tribosystem. Incorporation of nanoparticles and OFM together in a lubricant could provide a unique solution to enhance frictional and wear properties. In this study, Nanodiamonds (NDs) and Glycerol Monooleate (GMO) have been added to a PAO base oil containing low concentration of Zinc dialkyl dithio-phosphate (ZDDP) to produce a novel lubricant combination that significantly reduces coeffi...
SSCI-VIDE+ECI2D+PAFInternational audienceThe use of Inorganic Fullerene-like (IF) nanoparticles in l...
Modern day industrial applications involve rigorous operating conditions, which include high tempera...
Nanoparticles agglomerate easily because of their high surface energy, which seriously reduces their...
Currently tribological laboratories are looking for a new type of solid ingredients, to create a lub...
In the current work tribological properties of different compositions of lubricant additives based o...
The article shows the studies of tribopairs with different modes of operation and in the presence of...
This work investigated the effect of nanodiamond (ND) additives on the tribological properties of Cr...
In the current paper, it is demonstrated that nanoadditives based on detonation nanodiamonds used in...
Growing environmental concern is shifting lubricant markets towards synthetic products, which demons...
Considered modifying nano-sized additives of lubricants used to improve wear resistance of the frict...
Organic friction modifiers (OFMs) are important additives in the lubrication of machines and especia...
Nanodiamond dispersions in ethylene glycol were applied in order to improve the boundary lubrication...
The increasing demand for low-viscosity engine oil has underscored the role of zinc dialkyldithiopho...
Nanodiamond dispersions in ethylene glycol were applied in order to improve the boundary lubrication...
There is a consensus that savings of 1.0–1.4% of a country’s gross domestic product may be achieved ...
SSCI-VIDE+ECI2D+PAFInternational audienceThe use of Inorganic Fullerene-like (IF) nanoparticles in l...
Modern day industrial applications involve rigorous operating conditions, which include high tempera...
Nanoparticles agglomerate easily because of their high surface energy, which seriously reduces their...
Currently tribological laboratories are looking for a new type of solid ingredients, to create a lub...
In the current work tribological properties of different compositions of lubricant additives based o...
The article shows the studies of tribopairs with different modes of operation and in the presence of...
This work investigated the effect of nanodiamond (ND) additives on the tribological properties of Cr...
In the current paper, it is demonstrated that nanoadditives based on detonation nanodiamonds used in...
Growing environmental concern is shifting lubricant markets towards synthetic products, which demons...
Considered modifying nano-sized additives of lubricants used to improve wear resistance of the frict...
Organic friction modifiers (OFMs) are important additives in the lubrication of machines and especia...
Nanodiamond dispersions in ethylene glycol were applied in order to improve the boundary lubrication...
The increasing demand for low-viscosity engine oil has underscored the role of zinc dialkyldithiopho...
Nanodiamond dispersions in ethylene glycol were applied in order to improve the boundary lubrication...
There is a consensus that savings of 1.0–1.4% of a country’s gross domestic product may be achieved ...
SSCI-VIDE+ECI2D+PAFInternational audienceThe use of Inorganic Fullerene-like (IF) nanoparticles in l...
Modern day industrial applications involve rigorous operating conditions, which include high tempera...
Nanoparticles agglomerate easily because of their high surface energy, which seriously reduces their...