Formation of La-modified L1{sub 2}-Al{sub 3}Ti by mechanical alloying and annealing

DO{sub 22}-Al{sub 3}Ti can be transformed into the related cubic L1{sub 2} structure, with more slip systems, by the addition of ternary elements, such as the rare earth Lanthanum. It is believed that combined processing by mechanical alloying and annealing is conducive to the structural evolution a...

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Veröffentlicht in:Materials characterization 2008-04, Vol.59 (4)
Hauptverfasser: Wang Shouren, Li Changchun, Yong Wang, Hou Xianqin, Geng Haoran, Xu Fusong
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Sprache:eng
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Zusammenfassung:DO{sub 22}-Al{sub 3}Ti can be transformed into the related cubic L1{sub 2} structure, with more slip systems, by the addition of ternary elements, such as the rare earth Lanthanum. It is believed that combined processing by mechanical alloying and annealing is conducive to the structural evolution and crystal growth. Appropriate and economical processing parameters were determined as: milling time of 40 h, annealing temperature of 750 deg. C and annealing time of 40-60 min. With increased milling time, fine and uniform particles, which originally possess a flake-like morphology, are produced. The Vickers hardness of the as-milled Al-Ti and Al-Ti-La powders increases rapidly at the initial milling stage, then increases slowly at final stage due to lattice distortion and solid solution strengthening. However, the Vickers hardness of the two materials decreases with increased of annealing time. The Vickers hardness of the Al-Ti powders is higher than that of the Al-Ti-La powders.
ISSN:1044-5803
1873-4189
DOI:10.1016/j.matchar.2007.03.003