AbstractIn this paper, the wear and friction properties of surface modified CuO nanoparticles suspension in liquid paraffin have been studied. CuO (50nm) nanoparticle was dispersed at 0.2, 0.25, 2 and 3% in liquid paraffin using ultrasonic bath during 1 hour and 10minutes for particle modification with Oleic Acid. Wear characteristics were evaluated using four-ball machine for the testing conditions of load 40kg at 1200rpm rotation and 15min test duration at temperature of 60-70°C. The wear scar diameter (WSD) was measured by means of optical microscope. The morphologies of the worn surface have revealed that concentrations of nanoparticle were improved the friction and wear properties of liquid paraffin. The lowest friction coefficient (CO...
The tribological properties of mineral oil SAE 10 modified with metallic nanoparticles were investig...
In recent years, numerous studies have been carried out on the effects of nano-particles (NP) as lub...
This research study investigates the tribological behaviour of mineral based multi grade engine oil ...
AbstractIn this paper, the wear and friction properties of surface modified CuO nanoparticles suspen...
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 work presents and discusses the tribological behaviour of nanoparticle suspensions in a polyalp...
This study presents tribological enhancement properties of 40–80 nm copper (II) oxide (CuO, nanopowd...
This work presents and discusses the anitwear characteristics of surface modified CuO nanoparticle s...
Superior tribological properties of mineral oil based nano-lubricants in boundary/thin film lubricat...
The present work investigated the anti-wear properties of CuO nanoparticles based mineral oil using ...
In the current decade, the development of recyclable, renewable, and sustainable products to replace...
In the current decade, the development of recyclable, renewable, and sustainable products to replace...
Due to the continuously increasing requirements of the internal combustion engines, the lubricants a...
Tribological investigations were performed on mineral oil containing Fe, Cu and Co nanoparticles and...
The tribological properties of mineral oil SAE 10 modified with metallic nanoparticles were investig...
In recent years, numerous studies have been carried out on the effects of nano-particles (NP) as lub...
This research study investigates the tribological behaviour of mineral based multi grade engine oil ...
AbstractIn this paper, the wear and friction properties of surface modified CuO nanoparticles suspen...
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 work presents and discusses the tribological behaviour of nanoparticle suspensions in a polyalp...
This study presents tribological enhancement properties of 40–80 nm copper (II) oxide (CuO, nanopowd...
This work presents and discusses the anitwear characteristics of surface modified CuO nanoparticle s...
Superior tribological properties of mineral oil based nano-lubricants in boundary/thin film lubricat...
The present work investigated the anti-wear properties of CuO nanoparticles based mineral oil using ...
In the current decade, the development of recyclable, renewable, and sustainable products to replace...
In the current decade, the development of recyclable, renewable, and sustainable products to replace...
Due to the continuously increasing requirements of the internal combustion engines, the lubricants a...
Tribological investigations were performed on mineral oil containing Fe, Cu and Co nanoparticles and...
The tribological properties of mineral oil SAE 10 modified with metallic nanoparticles were investig...
In recent years, numerous studies have been carried out on the effects of nano-particles (NP) as lub...
This research study investigates the tribological behaviour of mineral based multi grade engine oil ...