As cast Cu 90 Co 10 ribbons rapidly solidified by twin-roller melt spinning, exhibit special microstructure features. This processing method provides scenarios where a different phase selection takes place; coherent Co precipitates form directly from solidification, with neither a spinodal-like composition oscillation nor a discontinuously precipitated laminar phase. Samples are processed at tangential wheel speeds of 10 m/s (V10), 15 m/s (V15), 20 m/s (V20) and 30 m/s (V30). Microstructures resulting from this single step process are characterized and the hysteresis properties and the magnetoresistance effects evaluated. Samples V30 have a quite uniform density of coherent precipitates, with a narrow size distribution around 4 nm. On contr...
We report a comprehensive investigation of structural, magnetic, and transport properties of as-quen...
Granular alloys of Cu with FeCo were prepared by the melt-spinning technique. The alloy was characte...
Measurements of resistance R versus electrical current I were performed during annealing of melt-spu...
The metastable magnetic alloy Co10Cu90 has been prepared by the conventional melt-spinning technique...
Granular Co₁₀Cu₉₀ alloys displaying giant magnetoresistance have been obtained by melt spinning foll...
We report a comprehensive investigation of structural, magnetic, and transport properties of as-quen...
Granular Co10Cu90 alloys displaying giant magnetoresistance have been obtained by melt spinning foll...
This paper reports a thorough microstructural and magnetic analysis performed on as-quenched and ann...
The Co-Cu system is analyzed in the region of metastable miscibility gap with separation of the unde...
The present paper reports TEM investigation on the detailed microstructure and its formation of rapi...
Room-temperature measurements of magnetization and giant magnetoresistance were performed on rapidly...
Room-temperature measurements of magnetization and giant magnetoresistance were performed on rapidly...
Granular alloys of Cu with FeCo were prepared by the melt-spinning technique. The alloy was characte...
The Co precipitation in the Cu(100-x)Co(x) (x less than or equal to 12) granular system obtained by ...
Room-temperature measurements of magnetization and giant magnetoresistance were performed on rapidly...
We report a comprehensive investigation of structural, magnetic, and transport properties of as-quen...
Granular alloys of Cu with FeCo were prepared by the melt-spinning technique. The alloy was characte...
Measurements of resistance R versus electrical current I were performed during annealing of melt-spu...
The metastable magnetic alloy Co10Cu90 has been prepared by the conventional melt-spinning technique...
Granular Co₁₀Cu₉₀ alloys displaying giant magnetoresistance have been obtained by melt spinning foll...
We report a comprehensive investigation of structural, magnetic, and transport properties of as-quen...
Granular Co10Cu90 alloys displaying giant magnetoresistance have been obtained by melt spinning foll...
This paper reports a thorough microstructural and magnetic analysis performed on as-quenched and ann...
The Co-Cu system is analyzed in the region of metastable miscibility gap with separation of the unde...
The present paper reports TEM investigation on the detailed microstructure and its formation of rapi...
Room-temperature measurements of magnetization and giant magnetoresistance were performed on rapidly...
Room-temperature measurements of magnetization and giant magnetoresistance were performed on rapidly...
Granular alloys of Cu with FeCo were prepared by the melt-spinning technique. The alloy was characte...
The Co precipitation in the Cu(100-x)Co(x) (x less than or equal to 12) granular system obtained by ...
Room-temperature measurements of magnetization and giant magnetoresistance were performed on rapidly...
We report a comprehensive investigation of structural, magnetic, and transport properties of as-quen...
Granular alloys of Cu with FeCo were prepared by the melt-spinning technique. The alloy was characte...
Measurements of resistance R versus electrical current I were performed during annealing of melt-spu...