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dc.contributor.authorGao, J.en
dc.contributor.authorHan, M.en
dc.contributor.authorKao, A.en
dc.contributor.authorPericleous, K.en
dc.contributor.authorAlexandrov, D. V.en
dc.contributor.authorGalenko, P. K.en
dc.date.accessioned2021-08-31T15:03:13Z-
dc.date.available2021-08-31T15:03:13Z-
dc.date.issued2016-
dc.identifier.citationDendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields: A test of theory with convection / J. Gao, M. Han, A. Kao, et al. — DOI 10.1016/j.actamat.2015.10.014 // Acta Materialia. — 2016. — Vol. 103. — P. 184-191.en
dc.identifier.issn13596454-
dc.identifier.otherFinal2
dc.identifier.otherAll Open Access, Green3
dc.identifier.otherhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84945262855&doi=10.1016%2fj.actamat.2015.10.014&partnerID=40&md5=f1555b520e4bf77da04cc324aad1932e
dc.identifier.otherhttp://gala.gre.ac.uk/id/eprint/14864/1/14864_Kao_Dendritic_growth_velocities_%28AAM%29_2016.pdfm
dc.identifier.urihttp://elar.urfu.ru/handle/10995/102338-
dc.description.abstractDendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields up to 6 T were measured using a high-speed camera. The growth velocities for undercoolings below 120 K are depressed under low magnetic fields, but are recovered progressively under high magnetic fields. This retrograde behavior arises from two competing kinds of magnetohydrodynamics in the melt and becomes indistinguishable for higher undercoolings. The measured data is used for testing of a recent theory of dendritic growth with convection. A reasonable agreement is attained by assuming magnetic field-dependent flow velocities. As is shown, the theory can also account for previous data of dendritic growth kinetics in pure succinonitrile under normal gravity and microgravity conditions. These tests demonstrate the efficiency of the theory which provides a realistic description of dendritic growth kinetics of pure substances with convection. © 2015 Acta Materialia Inc.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherElsevier Ltden
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourceActa Mater2
dc.sourceActa Materialiaen
dc.subjectDENDRITIC SOLIDIFICATIONen
dc.subjectGROWTH KINETICSen
dc.subjectSTATIC MAGNETIC FIELDen
dc.subjectTHEORYen
dc.subjectUNDERCOOLINGen
dc.subjectBIOELECTRIC PHENOMENAen
dc.subjectHIGH SPEED CAMERASen
dc.subjectKINETICSen
dc.subjectMAGNETIC FIELDSen
dc.subjectMAGNETISMen
dc.subjectMAGNETOHYDRODYNAMICSen
dc.subjectNICKELen
dc.subjectUNDERCOOLINGen
dc.subjectVELOCITYen
dc.subjectDENDRITIC SOLIDIFICATIONen
dc.subjectHIGH MAGNETIC FIELDSen
dc.subjectLOW MAGNETIC FIELDSen
dc.subjectMICROGRAVITY CONDITIONSen
dc.subjectNORMAL GRAVITIESen
dc.subjectRETROGRADE BEHAVIORen
dc.subjectSTATIC MAGNETIC FIELDSen
dc.subjectTHEORYen
dc.subjectGROWTH KINETICSen
dc.titleDendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields: A test of theory with convectionen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1016/j.actamat.2015.10.014-
dc.identifier.scopus84945262855-
local.contributor.employeeGao, J., Key Laboratory of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University, Shenyang, 110819, China
local.contributor.employeeHan, M., Key Laboratory of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University, Shenyang, 110819, China
local.contributor.employeeKao, A., Center for Numerical Modeling and Process Analysis, University of Greenwich, London, SE10 9LS, United Kingdom
local.contributor.employeePericleous, K., Center for Numerical Modeling and Process Analysis, University of Greenwich, London, SE10 9LS, United Kingdom
local.contributor.employeeAlexandrov, D.V., Department of Mathematical Physics, Ural Federal University, Ekaterinburg, 620000, Russian Federation
local.contributor.employeeGalenko, P.K., Department of Physics and Astronomy, Friedrich Schiller University of Jena, Jena, 07743, Germany
local.description.firstpage184-
local.description.lastpage191-
local.volume103-
local.contributor.departmentKey Laboratory of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University, Shenyang, 110819, China
local.contributor.departmentCenter for Numerical Modeling and Process Analysis, University of Greenwich, London, SE10 9LS, United Kingdom
local.contributor.departmentDepartment of Mathematical Physics, Ural Federal University, Ekaterinburg, 620000, Russian Federation
local.contributor.departmentDepartment of Physics and Astronomy, Friedrich Schiller University of Jena, Jena, 07743, Germany
local.identifier.pure604481-
local.identifier.pure00b082f6-075e-4169-af8a-e5ddcb34285auuid
local.identifier.eid2-s2.0-84945262855-
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