Wear-resistant metals have long been a pursuit of reducing wear-related energy and material loss. Here the authors present the 'reactive wear protection' strategy via friction-induced in situ formation of strong and deformable oxide nanocomposites on a surface. Wear-related energy and material loss cost over 2500 Billion Euro per year. Traditional wisdom suggests that high-strength materials reveal low wear rates, yet, their plastic deformation mechanisms also influence their wear performance. High strength and homogeneous deformation behavior, which allow accommodating plastic strain without cracking or localized brittle fracture, are crucial for developing wear-resistant metals. Here, we present an approach to achieve superior wear resist...
Abstract There has been tremendous interest in the development of different innovative wear‐resistan...
Nanotechnologies offer tremendous potential when it comes to modifying the microstructure of steel t...
This research aims to investigate the impact of a novel technique in mechanical nanostructuring on t...
Sliding friction-induced subsurface structures and severe surface oxidation can be the major causes ...
Nanocrystalline Al-Ni-Gd-Co alloys with exceptionally high hardness have been recently developed fro...
© 2018 National Technology & Engineering Solutions of Sandia, LLC. Published by WILEY-VCH Verlag G...
Oxidational wear continues to present an economic challenge for the replacement of components subjec...
Metal matrix nanocomposites (MMnCs) consist of a metal matrix filled with nano-size reinforcements f...
Thermally grown surface oxide layers dominate the single-asperity tribological behavior of a Zr60Cu3...
Nanocrystalline structured variants of commercially available alloys have shown potential for boosti...
Nanocrystalline materials are structurally characterised by a large density of grain boundaries whic...
© Copyright 2018 Inderscience Enterprises Ltd. This paper discusses properties of the wear-resistant...
A detailed transmission electron microscopy study of oxide and oxygen-containing phase formation dur...
Metal matrix nanocomposites (MMnCs) comprise a metal matrix filled with nanosized reinforcements wit...
This article has scriptive issues to correspond coating applicable to metal surfaces, in order to pr...
Abstract There has been tremendous interest in the development of different innovative wear‐resistan...
Nanotechnologies offer tremendous potential when it comes to modifying the microstructure of steel t...
This research aims to investigate the impact of a novel technique in mechanical nanostructuring on t...
Sliding friction-induced subsurface structures and severe surface oxidation can be the major causes ...
Nanocrystalline Al-Ni-Gd-Co alloys with exceptionally high hardness have been recently developed fro...
© 2018 National Technology & Engineering Solutions of Sandia, LLC. Published by WILEY-VCH Verlag G...
Oxidational wear continues to present an economic challenge for the replacement of components subjec...
Metal matrix nanocomposites (MMnCs) consist of a metal matrix filled with nano-size reinforcements f...
Thermally grown surface oxide layers dominate the single-asperity tribological behavior of a Zr60Cu3...
Nanocrystalline structured variants of commercially available alloys have shown potential for boosti...
Nanocrystalline materials are structurally characterised by a large density of grain boundaries whic...
© Copyright 2018 Inderscience Enterprises Ltd. This paper discusses properties of the wear-resistant...
A detailed transmission electron microscopy study of oxide and oxygen-containing phase formation dur...
Metal matrix nanocomposites (MMnCs) comprise a metal matrix filled with nanosized reinforcements wit...
This article has scriptive issues to correspond coating applicable to metal surfaces, in order to pr...
Abstract There has been tremendous interest in the development of different innovative wear‐resistan...
Nanotechnologies offer tremendous potential when it comes to modifying the microstructure of steel t...
This research aims to investigate the impact of a novel technique in mechanical nanostructuring on t...