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Akademický článek
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Autor:
Easo P. George, S.M. Borowicz, M. H. Yoo, Shuji Hanada, Kyosuke Yoshimi, Eri Miura, A.A. Wereszczak
Publikováno v:
Materials Science and Engineering: A. :228-234
Compressive deformation behavior of D8m-type Mo5Si3 single crystals was investigated at temperatures between 1473 and 1723 K in an argon atmosphere. Four compression axes, namely [001], near-[111], near-[101] and [100] were chosen. Plasticity occurre
Publikováno v:
Materials Science and Engineering: A. :171-176
Ordinary dislocations in γ-TiAl frequently cross-slip onto various non-primary slip planes at high temperatures. The anomalous hardening in γ-TiAl was believed to be linked to cross-slip behavior. Therefore, the stability of ordinary dislocations a
Publikováno v:
Metallurgical and Materials Transactions A. 33:851-858
The ductility of Mg alloys is limited due to a shortage of independent slip systems. In particular, c-axis compression cannot be accommodated by any of the easy slip or twinning modes. Basal-textured samples of pure Mg and Mg-15 at. pct Li were exami
Publikováno v:
Metallurgical and Materials Transactions A. 33:851-858
Publikováno v:
Metallurgical and Materials Transactions A. 33:813-822
Publikováno v:
Metallurgical and Materials Transactions A. 33:813-822
A review is presented on the role of dislocation cores and planar faults in activating the nonbasal deformation modes, pyramidal slip and deformation twinning, in hcp metals and alloys and in D019 intermetallic compounds. Material-specific mechanical
Publikováno v:
Acta Materialia. 49:4277-4289
The viscoplastic self-consistent model was used to interpret differences in the mechanical behavior of hexagonal close packed magnesium alloys. There are only subtle differences in the compression textures of magnesium and its solid solution alloys c
Publikováno v:
Materials Science and Engineering: A. :87-92
A possible source mechanism for non-basal 〈c+a〉 slip dislocations is proposed based on the formation of an attractive junction between glissile 〈a〉 and sessile c dislocations from the prism plane into a pyramidal plane. The driving force for