Mechanical alloying was performed on elemental cobalt and boron powders in the atomic ratio Co67B33. The process was monitored by X-ray diffraction spectra taken at regular time intervals. The progressive lowering of the crystalline peaks' intensity accompanied by the formation of an amorphous halo was observed; in the final stages peaks due to crystalline t-Co2B began to emerge. With the exception of the time scale, the evolution of the system was similar to that of a previous preparation carried out under different energy conditions. The structure functions and radial distribution functions were calculated from quantitative X-ray diffraction data taken near complete sample amorphization to follow the details of the milling process at thes...
The structural evolution of the amorphous phase in Co72Nb24B4 composition was processed by casting f...
Mechanical alloyed Fe75Nb10B15 systems, prepared with crystalline or commercial amorphous boron and ...
Amorphous metal-metalloid powders have been prepared by chemical reduction of Fez+, Co2+, and Ni2+ ...
X-ray diffraction and scanning electron microscopy were used to monitor the mechanical alloying of f...
A mixture of polycrystalline elemental cobalt and boron powders in the atomic ratio Co67B33 was mech...
Amorphous cobalt-boron alloy powders have been prepared by a high energetic ball mill at room temper...
Cobalt and boron powder mixtures with differing Co/B ratios were ball milled under high energetic co...
In this work, microstructural evolution and amorphous phase formation in Co40Fe22Ta8B30 alloy produc...
In this work, microstructural evolution and amorphous phase formation in Co40Fe22Ta8B30 alloy produc...
The influence of short-time milling on the atomic structure of amorphous Co(70.3)Fe(4.7)B(25) has be...
The influence of short-time milling on the atomic structure of amorphous Co(70.3)Fe(4.7)B(25) has be...
Absract: Cobalt (Co) is a transition metal used in electronics, magnetic recording [1], and hard mat...
In this work, the multicomponent Co60Fe5Ni5Ti25B5 (at.%) alloy powders were synthesized from commerc...
The purpose of this work is to elaborate the amorphous alloy compound Co67Nb25B17 from elementary po...
Binary powder mixtures of crystalline niobium and late transition metals (TM=Cu, Ni, Co, Fe, Mn, Cr)...
The structural evolution of the amorphous phase in Co72Nb24B4 composition was processed by casting f...
Mechanical alloyed Fe75Nb10B15 systems, prepared with crystalline or commercial amorphous boron and ...
Amorphous metal-metalloid powders have been prepared by chemical reduction of Fez+, Co2+, and Ni2+ ...
X-ray diffraction and scanning electron microscopy were used to monitor the mechanical alloying of f...
A mixture of polycrystalline elemental cobalt and boron powders in the atomic ratio Co67B33 was mech...
Amorphous cobalt-boron alloy powders have been prepared by a high energetic ball mill at room temper...
Cobalt and boron powder mixtures with differing Co/B ratios were ball milled under high energetic co...
In this work, microstructural evolution and amorphous phase formation in Co40Fe22Ta8B30 alloy produc...
In this work, microstructural evolution and amorphous phase formation in Co40Fe22Ta8B30 alloy produc...
The influence of short-time milling on the atomic structure of amorphous Co(70.3)Fe(4.7)B(25) has be...
The influence of short-time milling on the atomic structure of amorphous Co(70.3)Fe(4.7)B(25) has be...
Absract: Cobalt (Co) is a transition metal used in electronics, magnetic recording [1], and hard mat...
In this work, the multicomponent Co60Fe5Ni5Ti25B5 (at.%) alloy powders were synthesized from commerc...
The purpose of this work is to elaborate the amorphous alloy compound Co67Nb25B17 from elementary po...
Binary powder mixtures of crystalline niobium and late transition metals (TM=Cu, Ni, Co, Fe, Mn, Cr)...
The structural evolution of the amorphous phase in Co72Nb24B4 composition was processed by casting f...
Mechanical alloyed Fe75Nb10B15 systems, prepared with crystalline or commercial amorphous boron and ...
Amorphous metal-metalloid powders have been prepared by chemical reduction of Fez+, Co2+, and Ni2+ ...