Grain growth in a nanostructured AZ31 Mg alloy containing second phase particles studied by phase field simulations
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s40843-016-5036-4.pdf
Reference23 articles.
1. Lukyanova EA, Martynenko NS, Shakhova I, et al. Strengthening of age-hardenable WE43 magnesium alloy processed by high pressure torsion. Mater Lett, 2016, 170: 5–9
2. Jiang L, Zhang D, Fang X, et al. The effect of Sn addition on aging behavior and mechanical properties of wrought AZ80 magnesium alloy. J Alloys and Comps, 2015, 620: 368–375
3. Ray AS, Wilkinson DS. The effect of microstructure on damage and fracture in AZ31B and ZEK100 magnesium alloys. Mater Sci Eng A, 2016, 658: 33–41
4. Radi Y, Mahmudi R. Effect of Al2O3 nano-particles on the microstructural stability of AZ31 Mg alloy after equal channel angular pressing. Mater Sci Eng A, 2010, 527: 2764–2771
5. Mordike BL, Ebert T. Magnesium: properties-applications-potential. Mater Sci Eng A, 2001, 302: 37–45
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1. Phase field simulating grain refinement of magnesium alloy by thin strip second phase particles;Journal of Physics: Conference Series;2023-11-01
2. Phase Field Simulation of the Effect of Second Phase Particles with Different Orientations on the Microstructure of Magnesium Alloys;Materials;2023-09-21
3. Estimation of the Critical Value of the Second-Phase Particles in the Microstructure of AZ31 Mg Alloy by Phase-Field Methods;Crystals;2022-10-22
4. Phase field simulation on grain growth with particles located on grain boundaries;Materials Science and Technology;2022-09-16
5. Simulation of Microstructure Evolution in Mg Alloys by Phase-Field Methods: A Review;Crystals;2022-09-15
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