Sliding friction of metallic materials results in severe plastic deformation of the contacting surfaces. While plastic deformation is generally considered detrimental, as it leads to localized material failure and wear, in some cases it can trigger the formation of self-organized microstructures with the potential for improved wear resistance. We report here on a novel, self-adapting mechanism in a Cu90Ag10 two-phase alloy that relies on the spontaneous formation of chemically nanolayered structures during sliding wear. For sufficiently large initial Ag precipitate sizes, the nanolayered structures remain stable up to the sliding surface, leading to a reduction in wear rate. Similar chemically nanolayered structures are observed in Cu90Ag10...
The lack of a principle element in high-entropy alloys (HEA) leads to unique and unexpected material...
Nanopeening treatment was applied to the AISI 420 steel to decrease its sensitivity to tribocorrosio...
The nature of nanocrystalline materials determines that their deformation at the grain level relies ...
Sliding friction of metallic materials results in severe plastic deformation of the contacting surfa...
Abstract Highly nanotwinned (NT) metals have advantages such as high strength, good ductility, favor...
Structural metallic nanolaminates (coatings consisting of alternating layers of different metals) ar...
Frictional sliding induces a distinct discontinuity in the microstructure between a subsurface layer...
Sliding friction-induced subsurface structures and severe surface oxidation can be the major causes ...
A gradient nano-grained (GNG) surface layer is fabricated on a commercial-purity Cu sample, in which...
Since the CrNiTiZrCu alloy, copper and aluminum are a system of three levels - nanolevel, mesolevel ...
The origin of friction and wear in polycrystalline materials is intimately connected with their micr...
During sliding of metallic surfaces, the near surfaces undergo significant changes in terms of topog...
Severe plastic deformation on the subsurface layer of metals by means of sliding under loading could...
The origin of friction and wear in polycrystalline materials is intimately connected with their micr...
The microscopic wear behavior of copper–silver multilayer samples was studied by performing sliding ...
The lack of a principle element in high-entropy alloys (HEA) leads to unique and unexpected material...
Nanopeening treatment was applied to the AISI 420 steel to decrease its sensitivity to tribocorrosio...
The nature of nanocrystalline materials determines that their deformation at the grain level relies ...
Sliding friction of metallic materials results in severe plastic deformation of the contacting surfa...
Abstract Highly nanotwinned (NT) metals have advantages such as high strength, good ductility, favor...
Structural metallic nanolaminates (coatings consisting of alternating layers of different metals) ar...
Frictional sliding induces a distinct discontinuity in the microstructure between a subsurface layer...
Sliding friction-induced subsurface structures and severe surface oxidation can be the major causes ...
A gradient nano-grained (GNG) surface layer is fabricated on a commercial-purity Cu sample, in which...
Since the CrNiTiZrCu alloy, copper and aluminum are a system of three levels - nanolevel, mesolevel ...
The origin of friction and wear in polycrystalline materials is intimately connected with their micr...
During sliding of metallic surfaces, the near surfaces undergo significant changes in terms of topog...
Severe plastic deformation on the subsurface layer of metals by means of sliding under loading could...
The origin of friction and wear in polycrystalline materials is intimately connected with their micr...
The microscopic wear behavior of copper–silver multilayer samples was studied by performing sliding ...
The lack of a principle element in high-entropy alloys (HEA) leads to unique and unexpected material...
Nanopeening treatment was applied to the AISI 420 steel to decrease its sensitivity to tribocorrosio...
The nature of nanocrystalline materials determines that their deformation at the grain level relies ...