Zobrazit minimální záznam

dc.contributor.authorLegerski, Miroslav
dc.contributor.authorPlura, Jiří
dc.contributor.authorSchindler, Ivo
dc.contributor.authorRusz, Stanislav
dc.contributor.authorKawulok, Petr
dc.contributor.authorKulveitová, Hana
dc.contributor.authorHadasik, Eugeniusz
dc.contributor.authorKuc, Dariusz
dc.contributor.authorNiewielski, Grzegorz
dc.date.accessioned2011-09-09T14:16:18Z
dc.date.available2011-09-09T14:16:18Z
dc.date.issued2011
dc.identifier.citationHigh Temperature Materials and Processes. 2011, vol. 30, issue 1-2, p. 63-69.cs
dc.identifier.issn0334-6455
dc.identifier.issn2191-0324
dc.identifier.urihttp://hdl.handle.net/10084/89119
dc.description.abstractCompression tests of magnesium alloy Mg-3Al-1Zn (AZ31) at different temperatures and strain rate were made on plastometer Gleeble 3800. Deformation behaviour and particularly shape of stress-strain curves of the alloy AZ31 differ significantly at low and high values of Zener–Hollomon parameter Z. The border between these areas was determined mathematically as Z = 2.9E+13 s–1. While the calculated activation energy Q was for both these areas practically identical (157 or 155 kJ mol–1), mathematical description of coordinates of the peak stress differs considerably. Regression and statistical analysis of experimental data have confirmed unequivocally, that it was impossible to describe by a uniform equation the whole set of data (i.e. traditional stress-strain curves, as well as those with atypical initial stage, given by the massive twinning). That's why two mathematical models were developed enabling prediction of the flow stress of investigated magnesium alloy in dependence on temperature, strain and strain rate, with inclusion of the influence of dynamic recrystallisation.cs
dc.language.isoencs
dc.publisherDe Gruytercs
dc.relation.ispartofseriesHigh Temperature Materials and Processescs
dc.relation.urihttps://doi.org/10.1515/HTMP.2011.008cs
dc.subjectmagnesium alloy AZ31cs
dc.subjectstress-strain curvescs
dc.subjectactivation energycs
dc.subjecthot flow stress modelcs
dc.titleComplex flow stress model for a magnesium alloy AZ31 at hot formingcs
dc.typearticlecs
dc.identifier.locationNení ve fondu ÚKcs
dc.identifier.doi10.1515/HTMP.2011.008
dc.type.statusPeer-reviewedcs
dc.description.sourceWeb of Sciencecs
dc.description.volume30cs
dc.description.issue1-2cs
dc.description.lastpage69cs
dc.description.firstpage63cs
dc.identifier.wos000294207300009


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