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Modeling the crystallographic texture changes in aluminum alloys during recrystallization

Jurij Sidor (UGent) , Roumen Petrov (UGent) and Leo Kestens (UGent)
(2011) ACTA MATERIALIA. 59(14). p.5735-5748
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Keywords
HOT DEFORMATION, DEFORMATION TEXTURE, STORED ENERGY, Aluminum alloys, Recrystallization, Texture, PLASTIC ANISOTROPY, DYNAMIC RECRYSTALLIZATION, COMPUTER-SIMULATION, STATIC RECRYSTALLIZATION, CELLULAR-AUTOMATON, MONTE-CARLO-SIMULATION, CONTROLLED GRAIN-GROWTH

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Citation

Please use this url to cite or link to this publication:

Chicago
Sidor, Jurij, Roumen Petrov, and Leo Kestens. 2011. “Modeling the Crystallographic Texture Changes in Aluminum Alloys During Recrystallization.” Acta Materialia 59 (14): 5735–5748.
APA
Sidor, Jurij, Petrov, R., & Kestens, L. (2011). Modeling the crystallographic texture changes in aluminum alloys during recrystallization. ACTA MATERIALIA, 59(14), 5735–5748.
Vancouver
1.
Sidor J, Petrov R, Kestens L. Modeling the crystallographic texture changes in aluminum alloys during recrystallization. ACTA MATERIALIA. 2011;59(14):5735–48.
MLA
Sidor, Jurij, Roumen Petrov, and Leo Kestens. “Modeling the Crystallographic Texture Changes in Aluminum Alloys During Recrystallization.” ACTA MATERIALIA 59.14 (2011): 5735–5748. Print.
@article{2097188,
  author       = {Sidor, Jurij and Petrov, Roumen and Kestens, Leo},
  issn         = {1359-6454},
  journal      = {ACTA MATERIALIA},
  keyword      = {HOT DEFORMATION,DEFORMATION TEXTURE,STORED ENERGY,Aluminum alloys,Recrystallization,Texture,PLASTIC ANISOTROPY,DYNAMIC RECRYSTALLIZATION,COMPUTER-SIMULATION,STATIC RECRYSTALLIZATION,CELLULAR-AUTOMATON,MONTE-CARLO-SIMULATION,CONTROLLED GRAIN-GROWTH},
  language     = {eng},
  number       = {14},
  pages        = {5735--5748},
  title        = {Modeling the crystallographic texture changes in aluminum alloys during recrystallization},
  url          = {http://dx.doi.org/10.1016/j.actamat.2011.05.050},
  volume       = {59},
  year         = {2011},
}

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