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kw.\*:("Modèle pom pom")

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Capitalizing on nonequilibrium thermodynamics: Branched polymersCHRISTIAN ÖTTINGER, Hans.Problèmes non linéaires appliqués. Ecoles CEA-EDF-INRIA. 2000, pp 147-152, isbn 2-7261-1175-0Conference Paper

A pragmatic approach for deriving constitutive equations endowed with pom-pom attributesCLEMEUR, Nicolas; DEBBAUT, Benoit.Rheologica acta. 2007, Vol 46, Num 9, pp 1187-1196, issn 0035-4511, 10 p.Article

Shear modification of long-chain branched polymers: A theoretical approach using the pom-pom modelBOURRIGAUD, S; MARIN, G; POITOU, A et al.Macromolecules. 2003, Vol 36, Num 4, pp 1388-1394, issn 0024-9297, 7 p.Article

Anisotropy parameter restrictions for the eXtended Pom-Pom modelBALTUSSEN, Michiel G. H. M; VERBEETEN, Wilco M. H; BOGAERDS, Arjen C. B et al.Journal of non-newtonian fluid mechanics. 2010, Vol 165, Num 19-20, pp 1047-1054, issn 0377-0257, 8 p.Article

The prediction of complex flows of polymer melts using spectral elementsVAN OS, R. G. M; PHILLIPS, T. N.Journal of non-newtonian fluid mechanics. 2004, Vol 122, Num 1-3, pp 287-301, issn 0377-0257, 15 p.Conference Paper

Numerical simulation of branched polymer melts in transient complex flow using pom-pom modelsWAPPEROM, P; KEUNINGS, R.Journal of non-newtonian fluid mechanics. 2001, Vol 97, Num 2-3, pp 267-281, issn 0377-0257Article

Hydrodynamic stability of unidirectional shear flow of linear and branched polymeric meltsARORA, K; GANESAN, V; SURESHKUMAR, R et al.Journal of non-newtonian fluid mechanics. 2004, Vol 121, Num 2-3, pp 101-115, issn 0377-0257, 15 p.Article

Stability analysis of polymer shear flows using the eXtended Pom-Pom constitutive equationsBOGAERDS, Arjen C. B; GRILLET, Anne M; PETERS, Gerrit W. M et al.Journal of non-newtonian fluid mechanics. 2002, Vol 108, Num 1-3, pp 187-208, issn 0377-0257, 22 p.Conference Paper

Unphysical phenomena associated with the extended pom-pom model in steady flowINKSON, N. J; PHILLIPS, T. N.Journal of non-newtonian fluid mechanics. 2007, Vol 145, Num 2-3, pp 92-101, issn 0377-0257, 10 p.Article

Evaluation of rheological constitutive equations for branched polymers in step shear strain flowsCHODANKAR, Chirag D; SCHIEBER, Jay D; VENERUS, David C et al.Rheologica acta. 2003, Vol 42, Num 1-2, pp 123-131, issn 0035-4511, 9 p.Article

Numerical simulations of the planar contraction flow for a polyethylene melt using the XPP modelVERBEETEN, Wilco M. H; PETERS, Gerrit W. M; BAAIJENS, Frank P. T et al.Journal of non-newtonian fluid mechanics. 2004, Vol 117, Num 2-3, pp 73-84, issn 0377-0257, 12 p.Article

On the evaluation of some differential formulations for the pom-pom constitutive modelCLEMEUR, Nicolas; RUTGERS, Rulande P. G; DEBBAUT, Benoit et al.Rheologica acta. 2003, Vol 42, Num 3, pp 217-231, issn 0035-4511, 15 p.Article

Simple constitutive models for linear and branched polymersTANNER, Roger I; NASSERI, Simin.Journal of non-newtonian fluid mechanics. 2003, Vol 116, Num 1, pp 1-17, issn 0377-0257, 17 p.Article

Stress Relaxation in Polymer Melts Following Equibiaxial Step StrainKASHYAP, Teresita; VENERUS, David C.Macromolecules (Print). 2010, Vol 43, Num 13, pp 5874-5880, issn 0024-9297, 7 p.Article

The effect of viscoelasticity on stress fields within polyethylene melt flow for a cross-slot and contraction-expansion slit geometryHASSELL, D. G; AUHL, D; MCLEISH, T. C. B et al.Rheologica acta. 2008, Vol 47, Num 7, pp 821-834, issn 0035-4511, 14 p.Article

Numerical simulation of extrusion process and die design for industrial profile, using multimode pom-pom modelDEBBAUT, B; MARCHAL, T.Plastics, rubber and composites. 2008, Vol 37, Num 2-4, pp 142-150, issn 1465-8011, 9 p.Conference Paper

Recent advances in the numerical simulation of polymer processingMITSOULIS, Evan.Les Cahiers de rhéologie (Paris). 2000, Vol 17, Num 1, pp 1-13, issn 1149-0039Conference Paper

LDPE melt rheology and the pom-pom modelRUBIO, P; WAGNER, M. H.Journal of non-newtonian fluid mechanics. 2000, Vol 92, Num 2-3, pp 245-259, issn 0377-0257Article

Numerical simulation of the transient flow of branched polymer melts through a planar contraction using the 'pom-pom' modelBISHKO, G. B; HARLEN, O. G; MCLEISH, T. C. B et al.Journal of non-newtonian fluid mechanics. 1999, Vol 82, Num 2-3, pp 255-273, issn 0377-0257Conference Paper

Effect of branching in cross-slot flow: the formation of W cuspsHASSELL, D. G; HOYLE, D; AUHL, D et al.Rheologica acta. 2009, Vol 48, Num 5, pp 551-561, issn 0035-4511, 11 p.Article

Lubricated cross-slot flow of a low density polyethylene meltSOULAGES, J; SCHWEIZER, T; VENERUS, D. C et al.Journal of non-newtonian fluid mechanics. 2008, Vol 154, Num 1, pp 52-64, issn 0377-0257, 13 p.Article

Prediction of the Influence of Flow-Enhanced Crystallization on the Dynamics of Fiber SpinningKOHLER, William H; MCHUGH, Anthony J.Polymer engineering and science. 2008, Vol 48, Num 1, pp 88-96, issn 0032-3888, 9 p.Article

A numerical study of constitutive models endowed with Pom-Pom molecular attributesWEI WANG; XIKUI LI; XIANHONG HAN et al.Journal of non-newtonian fluid mechanics. 2010, Vol 165, Num 21-22, pp 1480-1493, issn 0377-0257, 14 p.Article

Numerical simulation of flow past a cylinder using models of XPP typeINKSON, N. J; PHILLIPS, T. N; VAN OS, R. G. M et al.Journal of non-newtonian fluid mechanics. 2009, Vol 156, Num 1-2, pp 7-20, issn 0377-0257, 14 p.Article

Three-dimensional numerical simulation of viscoelastic contraction flows using the Pom-Pom differential constitutive modelSIRAKOV, I; AINSER, A; HAOUCHE, M et al.Journal of non-newtonian fluid mechanics. 2005, Vol 126, Num 2-3, pp 163-173, issn 0377-0257, 11 p.Conference Paper

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