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Article cité :
G. Vanderschaeve , B. Escaig
J. Physique Lett., 39 6 (1978) 74-77
Citations de cet article :
26 articles
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Cyclic Deformation and Development of Dislocation Structures in a Centrifugally Cast Al–Al3 Ti of Functionally Graded Material
Ken Yamashita, Chihiro Watanabe, Shinji Kumai, et al. Materials Transactions, JIM 41 (10) 1322 (2000) https://doi.org/10.2320/matertrans1989.41.1322
Precipitation of an intermetallic phase with Pt2Mo-type structure in alloy 625
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Plastic Deformation of D022 Ordered Al3 Ti in a Centrifugally Cast Al–Al3 Ti Composite
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Atomistic modeling of planar faults, dislocations and twins in a non-cubic intermetallic compound
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An atomistic study of dislocations and their mobility in a model DO22 alloy
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Plastic deformation of the intermetallic Al3Ti
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The dislocation core in crystalline materials
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Deformation Processes in Minerals, Ceramics and Rocks
Christa Hennig-Michaeli and Jean-Jacques Couderc Deformation Processes in Minerals, Ceramics and Rocks 391 (1990) https://doi.org/10.1007/978-94-011-6827-4_17
Dislocation Core Structures and Mechanical Behavior of DO22 Type Alloys
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Deformation behaviour of γ″ strengthened inconel 718
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TEM evidence of various glide modes in experimentally strained CuFeS2crystals
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Deformation and improvement of ductility of the intermetallic compounds Al3V and Al3(V, Ti)
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Dislocations motion in alloys with a periodic antiphase boundaries structure
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Transmission electron microscopy of experimentally deformed chalcopyrite single crystals
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Nature and dissociation of the dislocations in TiAl deformed at room temperature
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Strength of Metals and Alloys
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Effect of domain size on the mechanical properties of ordered Ni3V
G. Vanderschaeve, T. Sarrazin and B. Escaig Acta Metallurgica 27 (7) 1251 (1979) https://doi.org/10.1016/0001-6160(79)90141-X