A nanoscale icosahedral (I) phase was formed in the melt-spun Ti<SUB>40</SUB>Zr<SUB>20</SUB>Hf<SUB>20</SUB>(LTM)<SUB>20</SUB> (LTM = Ni, Pd, or Pt) alloys. However, in Pd-bearing alloy it is presumed to be a distorted I-phase or a high-order approximation. I phase, Hf<SUB>2</SUB>Pt and β -(Ti, Zr, Hf, Ni) solid solution phases are formed in the arc-melted Ti<SUB>40</SUB>Zr<SUB>20</SUB>Hf<SUB>20</SUB>Pt<SUB>20</SUB> ingot
Four Ni-bearing Ti, Zr and Hf ternary alloys of nominal composition Zr41.5Ti41.5Ni17, Zr25Ti25Ni50, ...
Two alloys of nominal compositions Zr<SUB>41.5</SUB>Ti<SUB>41.5</SUB>Ni<SUB>17</SUB> and Zr<SUB>41.5...
Two alloys of nominal compositions Zr41.5Ti41.5Ni17 and Zr41.5Hf41.5Ni17 have been melt spun at 40 m...
A nanoscale icosahedral (I) phase was formed in the melt-spun $Ti_{40}Zr_{20}Hf_{20}(LTM)_{20}$ (LTM...
A nanoscale icosahedral (I) phase was formed in the melt-spun $Ti_{40}Zr_{20}Hf_{20}(LTM)_{20}$ (LTM...
We report that an approximant phase was initially obtained in amorphous Ti<SUB>40</SUB>Zr<SUB>20</SU...
The icosahedral quasicrystalline, amorphous plus crystalline and glassy phases were formed in Ti40Zr...
The icosahedral quasicrystalline, amorphous plus crystalline and glassy phases were formed in $Ti_{4...
The icosahedral quasicrystalline, amorphous plus crystalline and glassy phases were formed in $Ti_{4...
The paper reports Icosahedral phase (i-phase) formation in the nanocrystalline state in Ti55Zr20Ni25...
From the quaternary Ti-Zr-Hf-Ni phase diagram. the cross-section at 20 at % Ni was selected for inve...
From the quaternary Ti-Zr-Hf-Ni phase diagram. the cross-section at 20 at % Ni was selected for inve...
From the quaternary Ti-Zr-Hf-Ni phase diagram, the cross-section at 20 at.% Ni was selected for inve...
Four Ni-bearing Ti, Zr and Hf ternary alloys of nominal composition $Zr_{41.5}Ti_{41.5}Ni_{17}$, $Zr...
This paper reports nanoquasicrystalline phase formation in Zr100−xPdx (x=30 and 35) and Zr80Pt20 bin...
Four Ni-bearing Ti, Zr and Hf ternary alloys of nominal composition Zr41.5Ti41.5Ni17, Zr25Ti25Ni50, ...
Two alloys of nominal compositions Zr<SUB>41.5</SUB>Ti<SUB>41.5</SUB>Ni<SUB>17</SUB> and Zr<SUB>41.5...
Two alloys of nominal compositions Zr41.5Ti41.5Ni17 and Zr41.5Hf41.5Ni17 have been melt spun at 40 m...
A nanoscale icosahedral (I) phase was formed in the melt-spun $Ti_{40}Zr_{20}Hf_{20}(LTM)_{20}$ (LTM...
A nanoscale icosahedral (I) phase was formed in the melt-spun $Ti_{40}Zr_{20}Hf_{20}(LTM)_{20}$ (LTM...
We report that an approximant phase was initially obtained in amorphous Ti<SUB>40</SUB>Zr<SUB>20</SU...
The icosahedral quasicrystalline, amorphous plus crystalline and glassy phases were formed in Ti40Zr...
The icosahedral quasicrystalline, amorphous plus crystalline and glassy phases were formed in $Ti_{4...
The icosahedral quasicrystalline, amorphous plus crystalline and glassy phases were formed in $Ti_{4...
The paper reports Icosahedral phase (i-phase) formation in the nanocrystalline state in Ti55Zr20Ni25...
From the quaternary Ti-Zr-Hf-Ni phase diagram. the cross-section at 20 at % Ni was selected for inve...
From the quaternary Ti-Zr-Hf-Ni phase diagram. the cross-section at 20 at % Ni was selected for inve...
From the quaternary Ti-Zr-Hf-Ni phase diagram, the cross-section at 20 at.% Ni was selected for inve...
Four Ni-bearing Ti, Zr and Hf ternary alloys of nominal composition $Zr_{41.5}Ti_{41.5}Ni_{17}$, $Zr...
This paper reports nanoquasicrystalline phase formation in Zr100−xPdx (x=30 and 35) and Zr80Pt20 bin...
Four Ni-bearing Ti, Zr and Hf ternary alloys of nominal composition Zr41.5Ti41.5Ni17, Zr25Ti25Ni50, ...
Two alloys of nominal compositions Zr<SUB>41.5</SUB>Ti<SUB>41.5</SUB>Ni<SUB>17</SUB> and Zr<SUB>41.5...
Two alloys of nominal compositions Zr41.5Ti41.5Ni17 and Zr41.5Hf41.5Ni17 have been melt spun at 40 m...