Adaptive nanocomposite coatings provide low friction in broad ranges of environmental conditions through the formation of lubricious surfaces resulting from interactions with the ambient atmosphere. Designing adaptive coatings to withstand wear through repeated thermal cycles is particularly difficult since most demonstrate irreversible changes in surface composition and morphology. This permanent change in the condition of the surface limits the utility of adaptive coatings in applications where thermal cycling is expected. Moreover, some lubrication mechanisms occur over the entire coating surface in addition to the area experiencing wear, which results in a significant waste of lubricant. In an effort to increase the wear lifetime and mo...
Tribological coatings were developed to allow automatic reporting of remaining wear life while in us...
Advanced TiC/a-C:H nanocomposite coatings have been produced via reactive deposition in a closed-fie...
This study reports on the ultralubricity of a high-temperature resilient nanocomposite WS2/a-C tribo...
Nanocomposite materials demonstrating multiple temperature-adaptive mechanisms including diffusion, ...
Adaptive nanocomposite coatings that demonstrate low friction throughout broad ranges of temperature...
Progress in the design and exploration of hard coatings with high temperature adaptive behavior in t...
Adaptive tribological coatings were recently developed as a new class of smart materials that were d...
Yttria-stabilized zirconia (YSZ) nanocomposite coatings consisting of silver and molybdenum were pro...
The effect of different types and concentrations of metal additions on the tribological properties o...
The addition of properly selected elements, coupled in nanoscale multilayer structures, can further ...
Adaptive nanocomposite coating materials that automatically and reversibly adjust their surface comp...
Ever-increasing demand for severe work conditions, high-performance and long-life has been drivers f...
Nanocomposite coatings demonstrate improved friction and wear responses under severe sliding conditi...
Vapour-deposited coatings are often utilised to solve intricate materials problems which are unachie...
The addition of properly selected elements, coupled in nanoscale multilayer structures, can further ...
Tribological coatings were developed to allow automatic reporting of remaining wear life while in us...
Advanced TiC/a-C:H nanocomposite coatings have been produced via reactive deposition in a closed-fie...
This study reports on the ultralubricity of a high-temperature resilient nanocomposite WS2/a-C tribo...
Nanocomposite materials demonstrating multiple temperature-adaptive mechanisms including diffusion, ...
Adaptive nanocomposite coatings that demonstrate low friction throughout broad ranges of temperature...
Progress in the design and exploration of hard coatings with high temperature adaptive behavior in t...
Adaptive tribological coatings were recently developed as a new class of smart materials that were d...
Yttria-stabilized zirconia (YSZ) nanocomposite coatings consisting of silver and molybdenum were pro...
The effect of different types and concentrations of metal additions on the tribological properties o...
The addition of properly selected elements, coupled in nanoscale multilayer structures, can further ...
Adaptive nanocomposite coating materials that automatically and reversibly adjust their surface comp...
Ever-increasing demand for severe work conditions, high-performance and long-life has been drivers f...
Nanocomposite coatings demonstrate improved friction and wear responses under severe sliding conditi...
Vapour-deposited coatings are often utilised to solve intricate materials problems which are unachie...
The addition of properly selected elements, coupled in nanoscale multilayer structures, can further ...
Tribological coatings were developed to allow automatic reporting of remaining wear life while in us...
Advanced TiC/a-C:H nanocomposite coatings have been produced via reactive deposition in a closed-fie...
This study reports on the ultralubricity of a high-temperature resilient nanocomposite WS2/a-C tribo...