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Morphology development in polystyrene/polyethylene blends during uniaxial elongational flow
Authors:Marcus?Heindl  author-information"  >  author-information__contact u-icon-before"  >  mailto:marcus.heindl@ww.uni-erlangen.de"   title="  marcus.heindl@ww.uni-erlangen.de"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author,Maria-Kristin?Sommer,Helmut?Münstedt
Affiliation:(1) Institute of Polymer Materials, Department of Materials Science, University Erlangen-Nürnberg, Martensstrasse 7, 91058 Erlangen, Germany;(2) Present address: Institut für Kunststofftechnologie, University Stuttgart, Böblinger Strasse 70, 70199 Stuttgart, Germany
Abstract:The deformation of linear low-density and low-density polyethylene particles dispersed in a polystyrene matrix was studied during defined uniaxial elongational flow conditions for different capillarity numbers and different temperatures. The morphology of the elongated samples was analysed by quenching the specimens in liquid nitrogen directly after the deformation. Furthermore, morphology development after recovery was investigated. By measuring the transient elongational viscosity of the blend matrix the true hydrodynamic stress during the flow process was calculated. Using a modified critical capillarity number, the fibril formation of the dispersed phase could be described at all test conditions. Virtually no break-up processes were observed. This finding could be explained by calculating the characteristic time of fibril break-up due to Rayleigh instabilities. By annealing the elongated samples a spherical shape of the dispersed droplets was regained. Compared with the initial sample morphology a pronounced increase of the particle sizes due to coalescence processes during elongation was observed.
Keywords:Polystyrene/polyethylene blends  Uniaxial elongational flow  Elongational viscosity  Morphology development  Capillarity number
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