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dc.contributor.authorAlexandrou, Andreas N.en
dc.contributor.authorBurgos, Gilmer R.en
dc.contributor.authorEntov, Vladimiren
dc.contributor.editorB.J, Welchen
dc.creatorAlexandrou, Andreas N.en
dc.creatorBurgos, Gilmer R.en
dc.creatorEntov, Vladimiren
dc.date.accessioned2019-05-06T12:23:15Z
dc.date.available2019-05-06T12:23:15Z
dc.date.issued1998
dc.identifier.isbn978-0-87339-390-4
dc.identifier.urihttp://gnosis.library.ucy.ac.cy/handle/7/48171
dc.description.abstractThe importance of processing of metal and metal matrix composites in semisolid state is increasing quite rapidly due to the distinct advantages it offers over similar methods of near-net-shape making. In this investigation we are using a two-phase model to predict the behavior of SSM in a three-dimensional isothermal flow through a sudden square expansion. The model is implemented computationally using a classical Galerkin-Finite element formulation with a segregated solution procedure. The model captures relative motion and particle crowding.en
dc.language.isoengen
dc.publisherAffiliation: Worcester Polytechnic Inst, Worcester, United Statesen
dc.publisherCorrespondence Address: Alexandrou, Andreas N.en
dc.publisherWorcester Polytechnic Inst, Worcester, United Statesen
dc.sourceLight Metals: Proceedings of Sessions, TMS Annual Meeting (Warrendale, Pennsylvania)en
dc.subjectMathematical modelsen
dc.subjectFinite element methoden
dc.subjectGalerkin finite element methoden
dc.subjectMetallic matrix compositesen
dc.subjectIsothermsen
dc.subjectNear net shape making methoden
dc.subjectSegregation (metallography)en
dc.subjectSemi solid state materialsen
dc.subjectTwo phase modelen
dc.titleTwo-phase model for processing materials in semisolid stateen
dc.typeinfo:eu-repo/semantics/conferenceObject
dc.description.startingpage1081
dc.description.endingpage1086
dc.author.facultyΠολυτεχνική Σχολή / Faculty of Engineering
dc.author.departmentΤμήμα Μηχανικών Μηχανολογίας και Κατασκευαστικής / Department of Mechanical and Manufacturing Engineering
dc.type.uhtypeConference Objecten
dc.description.totalnumpages1081-1086


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