This study aims at understanding the micromechanisms responsible for reduction in friction and wear in the engine cylinder bore/liner materials when tested under lubricated and unlubricated conditions. The tribolayers formed in-situ during sliding contact are unique to each tribosystem and a detailed study of these tribolayers will shed light on the friction reduction mechanisms in powertrain materials. Boundary lubricated tribological performance of grey cast iron (CI) tested against non-hydrogenated diamond-like carbon coating (NH-DLC) resulted in 21% lower coefficient of friction (COF) and an order of magnitude lower volumetric wear compared to CI and steel counterfaces. Dilution of the engine oil by ethanol containing E85 biofuel, consi...
Bio-fuels such as E85 (85% ethanol and 15% gasoline) are clean and cost effective alternative fuel s...
Presently, there is a global push to improve the productivity of heavy duty machinery. With increasi...
In this study, friction and wear behaviour of amorphous hydrogenated carbon (a-C:H) DLC coating slid...
The objective of this study is to develop new tribological methods for reducing friction and wear of...
Due to the importance of reducing CO2 emissions and improving fuel economy, many researchers have fo...
Due to the importance of reducing CO2 emissions and improving fuel economy, many researchers have fo...
Due to the importance of reducing CO2 emissions and improving fuel economy, many researchers have fo...
Automotive industry strives to reach an optimum level of fuel economy. This can be achieved by overc...
The application of Diamond-Like Carbon (DLC) coatings for automotive components is becoming a promis...
Automotive industry strives to reach an optimum level of fuel economy. This can be achieved by overc...
Diamond-like carbon (DLC) coatings show extremely good promise for a number of applications in autom...
The emissions of carbon dioxide, CO2, must rapidly be reduced to avoid severe climate change. Tribol...
The objective of this research is to develop advanced material characterization and mechanical testi...
With increasing fuel economy and emission restrictions being placed onto the automotive industry, th...
With increasing fuel economy and emission restrictions being placed onto the automotive industry, th...
Bio-fuels such as E85 (85% ethanol and 15% gasoline) are clean and cost effective alternative fuel s...
Presently, there is a global push to improve the productivity of heavy duty machinery. With increasi...
In this study, friction and wear behaviour of amorphous hydrogenated carbon (a-C:H) DLC coating slid...
The objective of this study is to develop new tribological methods for reducing friction and wear of...
Due to the importance of reducing CO2 emissions and improving fuel economy, many researchers have fo...
Due to the importance of reducing CO2 emissions and improving fuel economy, many researchers have fo...
Due to the importance of reducing CO2 emissions and improving fuel economy, many researchers have fo...
Automotive industry strives to reach an optimum level of fuel economy. This can be achieved by overc...
The application of Diamond-Like Carbon (DLC) coatings for automotive components is becoming a promis...
Automotive industry strives to reach an optimum level of fuel economy. This can be achieved by overc...
Diamond-like carbon (DLC) coatings show extremely good promise for a number of applications in autom...
The emissions of carbon dioxide, CO2, must rapidly be reduced to avoid severe climate change. Tribol...
The objective of this research is to develop advanced material characterization and mechanical testi...
With increasing fuel economy and emission restrictions being placed onto the automotive industry, th...
With increasing fuel economy and emission restrictions being placed onto the automotive industry, th...
Bio-fuels such as E85 (85% ethanol and 15% gasoline) are clean and cost effective alternative fuel s...
Presently, there is a global push to improve the productivity of heavy duty machinery. With increasi...
In this study, friction and wear behaviour of amorphous hydrogenated carbon (a-C:H) DLC coating slid...