W-Cu composites are commonly used as heat-sinks or high-performance switches in power electronics. To enhance their mechanical properties and mutually their usability, grain refinement of the initially coarse-grained microstructure was realized using high–pressure torsion. This leads to different microstructural conditions, exhibiting fine-, ultrafine-grained or nanocrystalline microstructures. Scanning as well as transmission electron microscopy was performed to analyze the respective grain size and microstructures. The hardness and Young’s modulus of the deformed specimens were quantified by nanoindentation testing. Furthermore, X–ray diffraction indicated a decreased grain size and changed lattice spacings upon increasing the deformation...
W-based alloys are currently considered promising candidates for high heat flux components in future...
CuW composites were synthesized using an equal channel angular pressing (ECAP) technique. Microstruc...
Fully dense W-15 wt%CuY and W-15 wt%CuCrZr composites have been produced by a powder metallurgy rout...
The applicability of nano-crystalline W/Cu composites is governed by their mechanical properties and...
A coarse-grained W–25%Cu composite is subjected to high pressure torsion (HPT) at room tempera...
The mechanical behavior of crystalline material has a high dependence on its microstructure, notably...
Tungsten offers outstanding material properties, and is therefore frequently considered as good cand...
© 2015 Dr. Paul John MignoneW-Cu is a candidate material for ultra-high temperature applications; ho...
The microstructure evolution during sintering of the W-5 wt.%Cu nanocomposite powders was investigat...
W-Cu composite powders were prepared by ball milling method using quasi-spherical tungsten nanopowde...
International audienceComparative studies of the mechanical behavior between copper, tungsten, and W...
The present work investigates characteristics and properties of in situ nanostructured copper-tungst...
A Cu-37 at%Ag composite was produced by high-pressure torsion processing of elemental Cu and Agpowde...
In this work, copper–tungsten (Cu-W) composites with a cubic and rhombic dodecahedron W-skeleton wer...
In this study, we present some results on the preparation of a conical-shaped W-Cu composite by usin...
W-based alloys are currently considered promising candidates for high heat flux components in future...
CuW composites were synthesized using an equal channel angular pressing (ECAP) technique. Microstruc...
Fully dense W-15 wt%CuY and W-15 wt%CuCrZr composites have been produced by a powder metallurgy rout...
The applicability of nano-crystalline W/Cu composites is governed by their mechanical properties and...
A coarse-grained W–25%Cu composite is subjected to high pressure torsion (HPT) at room tempera...
The mechanical behavior of crystalline material has a high dependence on its microstructure, notably...
Tungsten offers outstanding material properties, and is therefore frequently considered as good cand...
© 2015 Dr. Paul John MignoneW-Cu is a candidate material for ultra-high temperature applications; ho...
The microstructure evolution during sintering of the W-5 wt.%Cu nanocomposite powders was investigat...
W-Cu composite powders were prepared by ball milling method using quasi-spherical tungsten nanopowde...
International audienceComparative studies of the mechanical behavior between copper, tungsten, and W...
The present work investigates characteristics and properties of in situ nanostructured copper-tungst...
A Cu-37 at%Ag composite was produced by high-pressure torsion processing of elemental Cu and Agpowde...
In this work, copper–tungsten (Cu-W) composites with a cubic and rhombic dodecahedron W-skeleton wer...
In this study, we present some results on the preparation of a conical-shaped W-Cu composite by usin...
W-based alloys are currently considered promising candidates for high heat flux components in future...
CuW composites were synthesized using an equal channel angular pressing (ECAP) technique. Microstruc...
Fully dense W-15 wt%CuY and W-15 wt%CuCrZr composites have been produced by a powder metallurgy rout...