Tribological investigations were performed on mineral oil containing Fe, Cu and Co nanoparticles and their combinations. The tribological tests showed that each set of nanoparticles significantly reduced the friction coefficient and wear (up to 1.5 times) of friction pairs. The use of Cu nanoparticles provides the most effective reduction of friction and wear in each combination of nanoparticles. Surface analysis shows that the constituent elements of nanoparticles precipitated on the contact surface during the use of the oils with nano-additives. Different structures formed on the friction surface are observed in the contact zone and over the remainder of the ball surface. The SEM micrographs and EDX chemical analysis confirm the formation...
Tribological properties that include nanoparticles are an alternative to improve the tribological be...
This research study investigates the tribological behaviour of mineral based multi grade engine oil ...
Lubricating oil can effectively reduce friction between mechanical parts, thereby reducing energy co...
In recent years, numerous studies have been carried out on the effects of nano-particles (NP) as lub...
Purpose – The purpose of this paper is to investigate the possibility of using the iron nanoparticle...
The tribological properties of mineral oil SAE 10 modified with metallic nanoparticles were investig...
It is possible to form with CEWLS method the metallic nanc-partides in oil which can significantly r...
This study presents tribological enhancement properties of 40–80 nm copper (II) oxide (CuO, nanopowd...
The suspensions of metallic nano-particles stabilised with different surfactants can considerably re...
Wear of the surfaces results in substantial levels of metal nanoparticles in lubricants during their...
The paper deals with the influence of base oils (applied for lubricating and cutting fluids compound...
The prospect of modern tribology has been expanded with the advent of nanomaterial-based lubrication...
Metal particles, suspended as wear debris or as additives, have a major influence on lubrication tec...
Nanoparticles have as characteristics super sliding, extreme pressure, self-healing, etc., which can...
Tribological properties that include nanoparticles are an alternative to improve the tribological be...
Tribological properties that include nanoparticles are an alternative to improve the tribological be...
This research study investigates the tribological behaviour of mineral based multi grade engine oil ...
Lubricating oil can effectively reduce friction between mechanical parts, thereby reducing energy co...
In recent years, numerous studies have been carried out on the effects of nano-particles (NP) as lub...
Purpose – The purpose of this paper is to investigate the possibility of using the iron nanoparticle...
The tribological properties of mineral oil SAE 10 modified with metallic nanoparticles were investig...
It is possible to form with CEWLS method the metallic nanc-partides in oil which can significantly r...
This study presents tribological enhancement properties of 40–80 nm copper (II) oxide (CuO, nanopowd...
The suspensions of metallic nano-particles stabilised with different surfactants can considerably re...
Wear of the surfaces results in substantial levels of metal nanoparticles in lubricants during their...
The paper deals with the influence of base oils (applied for lubricating and cutting fluids compound...
The prospect of modern tribology has been expanded with the advent of nanomaterial-based lubrication...
Metal particles, suspended as wear debris or as additives, have a major influence on lubrication tec...
Nanoparticles have as characteristics super sliding, extreme pressure, self-healing, etc., which can...
Tribological properties that include nanoparticles are an alternative to improve the tribological be...
Tribological properties that include nanoparticles are an alternative to improve the tribological be...
This research study investigates the tribological behaviour of mineral based multi grade engine oil ...
Lubricating oil can effectively reduce friction between mechanical parts, thereby reducing energy co...