Implementation Improvement of a Lagrangian Method to Simulate Microstructure Evolution at the Mesoscopic Scale
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-41341-4_60
Reference24 articles.
1. Bernacki, M., Chastel, Y., Coupez, T., Logé, R.E.: Level set framework for the numerical modelling of primary recrystallization in polycrystalline materials. Scripta Mater. 58(12), 1129–1132 (2008)
2. Bernacki, M., Logé, R.E., Coupez, T.: Level set framework for the finite-element modelling of recrystallization and grain growth in polycrystalline materials. Scripta Mater. 64(6), 525–528 (2011)
3. Hallberg, H.: Approaches to modeling of recrystallization. Metals 1(1), 16–48 (2011)
4. Scholtes, B., et al.: 3d level set modeling of static recrystallization considering stored energy fields. Comput. Mater. Sci. 122, 57–71 (2016)
5. Maire, L.: Modeling of dynamic and post-dynamic recrystallization by coupling a full field approach to phenomenological laws. Mater. Design 133, 498–519 (2017)
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