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The transition between undiluted and oligomer-diluted states of nearly monodisperse polystyrenes in extensional flow
Authors:Qian?Huang,Henrik?Koblitz?Rasmussen  author-information"  >  author-information__contact u-icon-before"  >  mailto:hkra@mek.dtu.dk"   title="  hkra@mek.dtu.dk"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author
Affiliation:1.Department of Chemical and Biochemical Engineering,Technical University of Denmark,Lyngby,Denmark;2.Department of Mechanical Engineering,Technical University of Denmark,Lyngby,Denmark
Abstract:We have measured the startup and steady extensional viscosity of two narrow molar mass distributed (NMMD) polystyrenes, a 910 kg/mole and a 545 kg/mole, diluted in a NMMD 4.29 kg/mole styrene oligomer, with a wide concentration range from 90 down to 17%. The constant interchain pressure model, proposed by Rasmussen and Huang (Rheol Acta 53(3):199–208 (2014a)), predicts the extensional viscosity well for the dilutions with lower concentrations. However, for the 70 and 90% 545 kg/mole samples which represent the transition between the diluted and undiluted states, the model predictions are less satisfactory. Another concept based on interchain pressure, proposed by Wagner (Rheol Acta 53(10):765–777 (2014)), also shows agreement with the measured data.
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