Mechanisms to explain the unique mechanical behavior of nanograined metals focus primarily on grain and grain boundary mobility. In most nanograined metal materials systems (both pure and alloyed) it has not been possible to decouple these time- and cycle-dependent contributions. In contrast, the 460 nm thick, (1 1 1) textured, nanograined platinum thin films evaluated in this work have robust grain morphologies that allow us to uniquely identify the fatigue damage accumulation processes. Unlike other reports of face-centered cubic metal behavior, the platinum films exhibited a particularly limited range of fatigue crack growth (\u3c3 MPa √m) with extremely large (~10.5) power law exponents typically associated with fatigue of structural ...
Nanocrystalline and coarse-grained materials have shown high resistances for the fatigue-crack initi...
AbstractCyclic nanoindentation loading is a localized fatigue test providing very useful information...
AbstractMaterial characterization of thin film for MEMS/nano structures is a building block for the ...
Mechanisms to explain the unique mechanical behavior of nanograined metals focus primarily on grain ...
*Signatures are on file in the Graduate School iii Thin films are present in virtually every corner ...
AbstractNickel nanocrystalline thin films were produced by electrodeposition using sulfamate solutio...
Nanostructured metals with maximal grain or twin sizes of less than 100 nm have advanced properties ...
The evolution of fatigue damage in metallic films is usually described by several subsequent stages....
The microstructure contribution to the very low fracture toughness of freestanding metallic thin fil...
Focusing on nanocrystalline (nc) pure face-centered cubic metals, where systematic experimental data...
International audiencePushing the internal or external dimensions of metallic alloys down to the nan...
Publishing the internal or external dimensions of metallic alloys down to the nanometer scale gives ...
The authors show using atomistic simulations that stress-driven grain growth can be obtained in the ...
Nanophase metals have grain-size dependent mechanical properties that are significantly different th...
Materials consisting of grains or crystallites with sizes below a hundred nanometers have exhibited ...
Nanocrystalline and coarse-grained materials have shown high resistances for the fatigue-crack initi...
AbstractCyclic nanoindentation loading is a localized fatigue test providing very useful information...
AbstractMaterial characterization of thin film for MEMS/nano structures is a building block for the ...
Mechanisms to explain the unique mechanical behavior of nanograined metals focus primarily on grain ...
*Signatures are on file in the Graduate School iii Thin films are present in virtually every corner ...
AbstractNickel nanocrystalline thin films were produced by electrodeposition using sulfamate solutio...
Nanostructured metals with maximal grain or twin sizes of less than 100 nm have advanced properties ...
The evolution of fatigue damage in metallic films is usually described by several subsequent stages....
The microstructure contribution to the very low fracture toughness of freestanding metallic thin fil...
Focusing on nanocrystalline (nc) pure face-centered cubic metals, where systematic experimental data...
International audiencePushing the internal or external dimensions of metallic alloys down to the nan...
Publishing the internal or external dimensions of metallic alloys down to the nanometer scale gives ...
The authors show using atomistic simulations that stress-driven grain growth can be obtained in the ...
Nanophase metals have grain-size dependent mechanical properties that are significantly different th...
Materials consisting of grains or crystallites with sizes below a hundred nanometers have exhibited ...
Nanocrystalline and coarse-grained materials have shown high resistances for the fatigue-crack initi...
AbstractCyclic nanoindentation loading is a localized fatigue test providing very useful information...
AbstractMaterial characterization of thin film for MEMS/nano structures is a building block for the ...