Transient dynamics in dense colloidal suspensions under shear : shear rate dependence

dc.contributor.authorLaurati, Marcodeu
dc.contributor.authorMutch, K. Jacobdeu
dc.contributor.authorKoumakis, Nikosdeu
dc.contributor.authorZausch, Jochendeu
dc.contributor.authorAmann, Christian P.
dc.contributor.authorSchofield, Andrew B.deu
dc.contributor.authorPetekidis, Georgedeu
dc.contributor.authorBrady, John F.deu
dc.contributor.authorHorbach, Jürgendeu
dc.contributor.authorFuchs, Matthias
dc.contributor.authorEgelhaaf, Stefan Ulrichdeu
dc.date.accessioned2012-11-28T10:19:22Zdeu
dc.date.available2012-11-28T10:19:22Zdeu
dc.date.issued2012-11-21
dc.description.abstractA combination of confocal microscopy and rheology experiments, Brownian dynamics (BD) and molecular dynamics (MD) simulations and mode coupling theory (MCT) have been applied in order to investigate the effect of shear rate on the transient dynamics and stress–strain relations in supercooled and glassy systems under shear. Immediately after shear is switched on, the microscopic dynamics display super-diffusion and the macroscopic rheology a stress overshoot, which become more pronounced with increasing shear rate. MCT relates both to negative sections of the generalized shear modulus, which grow with increasing shear rate. When the inverse shear rate becomes much smaller than the structural relaxation time of the quiescent system, relaxation through Brownian motion becomes less important. In this regime, larger stresses are accumulated before the system yields and the transition from localization to flow occurs earlier and more abruptly.eng
dc.description.versionpublished
dc.identifier.citationJournal of Physics : Condensed Matter ; 24 (2012), 46. - 464104deu
dc.identifier.doi10.1088/0953-8984/24/46/464104deu
dc.identifier.pmid23114203
dc.identifier.ppn37603274Xdeu
dc.identifier.urihttp://kops.uni-konstanz.de/handle/123456789/20942
dc.language.isoengdeu
dc.legacy.dateIssued2012-11-28deu
dc.rightsterms-of-usedeu
dc.rights.urihttps://rightsstatements.org/page/InC/1.0/deu
dc.subjectSoft matterdeu
dc.subjectliquids and polymersdeu
dc.subjectCondensed matter: structuraldeu
dc.subjectmechanical & thermaldeu
dc.subjectChemical physics and physical chemistrydeu
dc.subject.ddc530deu
dc.subject.pacs82.70.Dd Colloids; 62.10.+s Mechanical properties of liquids; 82.70.Kj Emulsions and suspensions; 61.20.Ja Computer simulation of liquid structure; 64.70.P- Glass transitions of specific systemsdeu
dc.titleTransient dynamics in dense colloidal suspensions under shear : shear rate dependenceeng
dc.typeJOURNAL_ARTICLEdeu
dspace.entity.typePublication
kops.citation.bibtex
@article{Laurati2012-11-21Trans-20942,
  year={2012},
  doi={10.1088/0953-8984/24/46/464104},
  title={Transient dynamics in dense colloidal suspensions under shear : shear rate dependence},
  number={46},
  volume={24},
  issn={0953-8984},
  journal={Journal of Physics: Condensed Matter},
  author={Laurati, Marco and Mutch, K. Jacob and Koumakis, Nikos and Zausch, Jochen and Amann, Christian P. and Schofield, Andrew B. and Petekidis, George and Brady, John F. and Horbach, Jürgen and Fuchs, Matthias and Egelhaaf, Stefan Ulrich},
  note={Article Number: 464104}
}
kops.citation.iso690LAURATI, Marco, K. Jacob MUTCH, Nikos KOUMAKIS, Jochen ZAUSCH, Christian P. AMANN, Andrew B. SCHOFIELD, George PETEKIDIS, John F. BRADY, Jürgen HORBACH, Matthias FUCHS, Stefan Ulrich EGELHAAF, 2012. Transient dynamics in dense colloidal suspensions under shear : shear rate dependence. In: Journal of Physics: Condensed Matter. 2012, 24(46), 464104. ISSN 0953-8984. eISSN 1361-648X. Available under: doi: 10.1088/0953-8984/24/46/464104deu
kops.citation.iso690LAURATI, Marco, K. Jacob MUTCH, Nikos KOUMAKIS, Jochen ZAUSCH, Christian P. AMANN, Andrew B. SCHOFIELD, George PETEKIDIS, John F. BRADY, Jürgen HORBACH, Matthias FUCHS, Stefan Ulrich EGELHAAF, 2012. Transient dynamics in dense colloidal suspensions under shear : shear rate dependence. In: Journal of Physics: Condensed Matter. 2012, 24(46), 464104. ISSN 0953-8984. eISSN 1361-648X. Available under: doi: 10.1088/0953-8984/24/46/464104eng
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kops.submitter.emailmarianne.griesser@uni-konstanz.dedeu
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