Determination of the elongational behavior of polypropylene melts from transient shear experiments using Wagner's model
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Mechanical Engineering,Condensed Matter Physics,General Materials Science,General Chemical Engineering
Reference27 articles.
1. Analysis of time-dependent non-linear stress-growth data for shear and elongational flow of a low-density branched polyethylene melt
2. Constitutive equations from molecular network theories for polymer solutions
3. Description of the non-linear shear behaviour of a low density polyethylene melt by means of an experimentally determined strain dependent memory function
4. Elongational behaviour of polymer melts in constant elongation-rate, constant tensile stress, and constant tensile force experiments
5. Constant force elongational flow of a low-density polyethylene melt—experiment and theory
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1. “Experimentation and modeling for the apparent elongation viscosity of polymer melts with the White-Metzner model”;Polymers for Advanced Technologies;2014-09-30
2. Evaluate the nonlinear viscoelasticity of polyolefin melts using the Larson model;Polymer Engineering & Science;2013-10-24
3. Detecting very low levels of long-chain branching in metallocene-catalyzed polyethylenes;Rheologica Acta;2012-07-05
4. Effect of sparse long-chain branching on the step-strain behavior of a series of well-defined polyethylenes;Polymer Engineering & Science;2010-03-22
5. Numerical Investigation of the Gas Flow Temperature on the Thermoforming and Blow-Molding Processes;Journal of Reinforced Plastics and Composites;2008-06-16
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