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Meso-scale modelling of semi-solid deformation in aluminum foundry alloys: Effects of feeding and microstructure on hot tearing susceptibility

dc.contributor.authorSheykh-jaberi, F.
dc.contributor.authorCockcroft, S.L.
dc.contributor.authorMaijer, D.M.
dc.contributor.authorPhillion, A.B.
dc.contributor.departmentMaterials Science and Engineeringen_US
dc.date.accessioned2021-05-25T18:48:22Z
dc.date.available2021-05-25T18:48:22Z
dc.date.issued2020-05
dc.description.abstractIn the context of hot tearing susceptibility, the semi-solid constitutive behaviour of two commercially important foundry aluminum alloys at high solid fraction has been simulated. The numerical methodology combines solid mechanics, computational fluid dynamics, and microstructure modelling, i.e a meso-scale multi-physics approach. Feedable and un-feedable domains with different microstructures including equiaxed globular, equiaxed dendritic, and combined dendritic and eutectic were developed. Considering that it is the combined effects of a lack of liquid feeding and limited semi-solid ductility that contribute to hot tearing formation, the effect of feeding and mechanical deformation are studied and discussed. The model demonstrates that the microstructure type and the eutectic formation also have a considerable effect on the liquid channels pressure drop and semi-solid bulk stress and strain, and consequently on hot tearing.en_US
dc.identifier.urihttp://hdl.handle.net/11375/26474
dc.language.isoenen_US
dc.publisherJournal of Materials Processing Technologyen_US
dc.subjecthot tearingen_US
dc.subjectaluminum alloysen_US
dc.subjectmeso-scale modellingen_US
dc.subjecteutectic and dendritic microstructureen_US
dc.subjectsemi-solid constitutive behaviouren_US
dc.titleMeso-scale modelling of semi-solid deformation in aluminum foundry alloys: Effects of feeding and microstructure on hot tearing susceptibilityen_US

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