The effect of various milling parameters such as, milling intensity, ball:powder weight ratio and number of balls on the glass forming ability of an elemental blend of composition Ti50Ni50 has been studied by mechanical alloying. In order to understand the results, all the milling parameters have been converted into two energy parameters, namely, impact energy of the ball and the total energy of milling. In a milling map of these two parameters, the conditions for amorphous phase formation have been isolated. A similar exercise has been carried out for Ti50Cu50 as a function of milling time at two milling intensities. The results indicate that a minimum impact energy of the ball and a minimum total energy are essential for amorphization by ...
The elemental powder mixtures with a nominal composition of Ti50Cu20Ni24Si4B2 can be amorphized unde...
The microstructure evolution during mechanical milling was studied in (Cu49Zr45Al6)100-x-yNixTiy (x ...
Ni50Ti50 amorphous alloy was prepared by mechanical alloying from a mixture of Ni and Ti powders usi...
The effect of various milling parameters such as, milling intensity, ball:powder weight ratio and nu...
In the present study, an attempt has been made to develop milling maps/energy maps for the formation...
An amorphous phase has been synthesized in the Al-Ti system over a composition range of 40-90 at% of...
At present, there is considerable interest in the formation of amorphous phases in alloy systems, be...
Melt-spun metallic Fe-Ni ribbon glasses were subjected to high-energy ball milling under different m...
Mechanical alloying (MA) pioneered by Benjamin is a technique for the extension of solid solubility ...
Solid state amorphization has achieved considerable importance in recent years [I]. In particular, t...
Amorphous Ni sub chi Nb sub chi-1 powders were prepared by mechanical alloying for 0.2 smaller than ...
The effects of milling atmosphere and mechanical alloying (MA) duration on the effective lattice par...
We show that amorphous alloy powders of Cu and Ti can be produced over a broad composition range by ...
Mechanical alloying (MA) pioneered by Benjamin is a technique for the extension of solid solubility ...
Mg60 Zn35 Ca5 amorphous powder alloys were synthesized by mechanical alloying (MA) technique. The r...
The elemental powder mixtures with a nominal composition of Ti50Cu20Ni24Si4B2 can be amorphized unde...
The microstructure evolution during mechanical milling was studied in (Cu49Zr45Al6)100-x-yNixTiy (x ...
Ni50Ti50 amorphous alloy was prepared by mechanical alloying from a mixture of Ni and Ti powders usi...
The effect of various milling parameters such as, milling intensity, ball:powder weight ratio and nu...
In the present study, an attempt has been made to develop milling maps/energy maps for the formation...
An amorphous phase has been synthesized in the Al-Ti system over a composition range of 40-90 at% of...
At present, there is considerable interest in the formation of amorphous phases in alloy systems, be...
Melt-spun metallic Fe-Ni ribbon glasses were subjected to high-energy ball milling under different m...
Mechanical alloying (MA) pioneered by Benjamin is a technique for the extension of solid solubility ...
Solid state amorphization has achieved considerable importance in recent years [I]. In particular, t...
Amorphous Ni sub chi Nb sub chi-1 powders were prepared by mechanical alloying for 0.2 smaller than ...
The effects of milling atmosphere and mechanical alloying (MA) duration on the effective lattice par...
We show that amorphous alloy powders of Cu and Ti can be produced over a broad composition range by ...
Mechanical alloying (MA) pioneered by Benjamin is a technique for the extension of solid solubility ...
Mg60 Zn35 Ca5 amorphous powder alloys were synthesized by mechanical alloying (MA) technique. The r...
The elemental powder mixtures with a nominal composition of Ti50Cu20Ni24Si4B2 can be amorphized unde...
The microstructure evolution during mechanical milling was studied in (Cu49Zr45Al6)100-x-yNixTiy (x ...
Ni50Ti50 amorphous alloy was prepared by mechanical alloying from a mixture of Ni and Ti powders usi...