Forced chemical mixing in nanostructured Ag60Cu40 eutectic alloys during severe plastic deformation by high-pressure torsion (HPT) was quantitatively studied using x-ray diffraction, differential scanning calorimetry, and transmission electron microscopy. Nearly complete chemical homogenization of the original lamellar structure with a wavelength of ≈ 165 nm was achieved after a shear strain of ≈ 350. The chemical mixing is accompanied by extensive grain refinement leading to nanocrystalline grains with average sizes of ≈ 42 nm. A Monte Carlo computer simulation model, which attributes mixing to dislocation glide, shows reasonable agreement with the experimental results. The model also shows that the characteristic strain for chemical homog...
Initially micrometer-sized powder blends of different compositions (Cu-6at%Ag, Cu-37 at%Ag and Cu-84...
Two mechanisms for deformation-induced grain growth in nanostructured metals have been proposed, inc...
AbstractIn this study, dual phase CuCo composites with a total immiscibility in the solid state and ...
Forced chemical mixing in nanostructured Ag60Cu40 eutectic alloys during severe plastic deformation ...
A Cu-37 at%Ag composite was produced by high-pressure torsion processing of elemental Cu and Agpowde...
Metals and alloys processed by severe plastic deformation (SPD) techniques are gaining widespread in...
Ag–Cu alloys of two different initial microstructures—a cast eutectic alloy (AgCu-E) and an equivolu...
The critical strain for mixing was determined as a function of precipitate size in two-phase Cu90Ag1...
MasterRecently, various methods of sever plastic (SPD) deformation have been developed to fabricate ...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolut...
20 pagesA filamentary composite elaborated by cold drawing was processed by High Pressure Torsion (H...
In this study, the layered structures of immiscible Fe and Cu metals were employed to investigate th...
It is well established that bulk nanostructured materials with ultrafine grains can be fabricated th...
High-pressure torsion (HPT) was applied to unmilled coarse-grained (CG) Cu powders with low initial ...
Cu45Zr45Al5Ag5 bulk metallic glass samples, processed by high pressure torsion (HPT) under various c...
Initially micrometer-sized powder blends of different compositions (Cu-6at%Ag, Cu-37 at%Ag and Cu-84...
Two mechanisms for deformation-induced grain growth in nanostructured metals have been proposed, inc...
AbstractIn this study, dual phase CuCo composites with a total immiscibility in the solid state and ...
Forced chemical mixing in nanostructured Ag60Cu40 eutectic alloys during severe plastic deformation ...
A Cu-37 at%Ag composite was produced by high-pressure torsion processing of elemental Cu and Agpowde...
Metals and alloys processed by severe plastic deformation (SPD) techniques are gaining widespread in...
Ag–Cu alloys of two different initial microstructures—a cast eutectic alloy (AgCu-E) and an equivolu...
The critical strain for mixing was determined as a function of precipitate size in two-phase Cu90Ag1...
MasterRecently, various methods of sever plastic (SPD) deformation have been developed to fabricate ...
Disks of a eutectic Cu–Ag alloy were processed by high-pressure torsion (HPT) up to 20 revolut...
20 pagesA filamentary composite elaborated by cold drawing was processed by High Pressure Torsion (H...
In this study, the layered structures of immiscible Fe and Cu metals were employed to investigate th...
It is well established that bulk nanostructured materials with ultrafine grains can be fabricated th...
High-pressure torsion (HPT) was applied to unmilled coarse-grained (CG) Cu powders with low initial ...
Cu45Zr45Al5Ag5 bulk metallic glass samples, processed by high pressure torsion (HPT) under various c...
Initially micrometer-sized powder blends of different compositions (Cu-6at%Ag, Cu-37 at%Ag and Cu-84...
Two mechanisms for deformation-induced grain growth in nanostructured metals have been proposed, inc...
AbstractIn this study, dual phase CuCo composites with a total immiscibility in the solid state and ...