This project was funded under the Department of Energy (DOE) Lab Call on Nanomanufacturing for Energy Efficiency and was directed toward the development of novel boron-based nanocolloidal lubrication additives for improving the friction and wear performance of machine components in a wide range of industrial and transportation applications. Argonne�s research team concentrated on the scientific and technical aspects of the project, using a range of state-of-the art analytical and tribological test facilities. Argonne has extensive past experience and expertise in working with boron-based solid and liquid lubrication additives, and has intellectual property ownership of several. There were two industrial collaborators in this project: Ashlan...
An experimental investigation was conducted to investigate the potential of hexagonal boro...
AbstractThis work aims at understanding the tribological properties of lubricant oil containing boro...
This paper presents the experimental study on the tribological and engine performances of nano-oil. ...
Nanoparticles have generated interest in the oil industry as potential additives. Many nanoparticles...
High-level objective of this project is to develop nanoparticle based additive technology to improve...
Global concerns for the environmental impact of pollutants from automotive sources require considera...
Purpose: This paper aims to investigate the effect of hexagonal boron nitride (hBN) nanoparticles o...
Developing new technological solutions, such as use of lightweight materials, less harmful fuels, co...
Nanotechnology currently has an important role in reducing engine wear and improving fuel efficiency...
In this work, antifriction and antiwear capabilities of hexagonal boron nitride nanoparticles (h-BN)...
Considered modifying nano-sized additives of lubricants used to improve wear resistance of the frict...
Lubricants consist of base oils and chemical additives such as dispersants, surfactants, oxidation i...
With the increase in the number of vehicles, the problems with fuel consumption and environmental po...
Growing environmental concern is shifting lubricant markets towards synthetic products, which demons...
The effect of using a boric acid based additive in lubricants and fuel enhancers was investigated in...
An experimental investigation was conducted to investigate the potential of hexagonal boro...
AbstractThis work aims at understanding the tribological properties of lubricant oil containing boro...
This paper presents the experimental study on the tribological and engine performances of nano-oil. ...
Nanoparticles have generated interest in the oil industry as potential additives. Many nanoparticles...
High-level objective of this project is to develop nanoparticle based additive technology to improve...
Global concerns for the environmental impact of pollutants from automotive sources require considera...
Purpose: This paper aims to investigate the effect of hexagonal boron nitride (hBN) nanoparticles o...
Developing new technological solutions, such as use of lightweight materials, less harmful fuels, co...
Nanotechnology currently has an important role in reducing engine wear and improving fuel efficiency...
In this work, antifriction and antiwear capabilities of hexagonal boron nitride nanoparticles (h-BN)...
Considered modifying nano-sized additives of lubricants used to improve wear resistance of the frict...
Lubricants consist of base oils and chemical additives such as dispersants, surfactants, oxidation i...
With the increase in the number of vehicles, the problems with fuel consumption and environmental po...
Growing environmental concern is shifting lubricant markets towards synthetic products, which demons...
The effect of using a boric acid based additive in lubricants and fuel enhancers was investigated in...
An experimental investigation was conducted to investigate the potential of hexagonal boro...
AbstractThis work aims at understanding the tribological properties of lubricant oil containing boro...
This paper presents the experimental study on the tribological and engine performances of nano-oil. ...