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J-GLOBAL ID:202002222899058227   Reference number:20A0659389

Modeling and simulation of dynamic recrystallization for Mg/LPSO alloys based on multi-phase-field and dislocation-based crystal plasticity models

Multi-phase-fieldモデルおよび転位-結晶塑性モデルに基づくLPSO型Mg二相合金に対する動的再結晶シミュレーション
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Volume: 86  Issue: 882  Page: ROMBUNNO.19-00341(J-STAGE)  Publication year: 2020 
JST Material Number: U0182B  ISSN: 2187-9761  Document type: Article
Article type: 原著論文  Country of issue: Japan (JPN)  Language: JAPANESE (JA)
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Thesaurus term/Semi thesaurus term
Keywords indexed to the article.
All keywords is available on JDreamIII(charged).
On J-GLOBAL, this item will be available after more than half a year after the record posted. In addtion, medical articles require to login to MyJ-GLOBAL.

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Category name(code) classified by JST.
Dispersion hardening alloys 
Reference (25):
  • Allen, S.M. and Cahn, J.W., A microscopic theory for antiphase boundary motion and its application to antiphase domain coarsening, Acta Metallurgica, Vol. 27 (1979), pp. 1085-1095.
  • Bailey, J.E. and Hirsch, P.B., The dislocation distribution, flow stress, and stored energy in cold-worked polycrystalline silver, Philosophical Magazine, Vol. 5 (1960), pp. 485-497.
  • Bjorklund, S. and Hillert, M., An analysis of the relation between grain growth and recrystallization based on experimental boundary mobilities, Metal Science, Vol. 9 (1975), pp. 127-134.
  • Furubayashi, E., Recrystallization and Material Texture, Uchida-Rokakuho (2000) (in Japanese).
  • Garces, G., Perez, P., Cabeza, S., Lin, H.K., Kim, S., Gan, W. and Adeva, P., Reverse tension/compression asymmetry of a Mg-Y-Zn alloys containing LPSO phases, Materials Science and Engineering:A, Vol. 647 (2015), pp. 287-293.
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