Journal of Rheology, Vol. 49, No. 2, pp. 501–522, March/April 2005
©2005 The Society of Rheology. All rights reserved.

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REFERENCES


  1. Baaijens F. P. T., S. H. A. Seelen, H. P. W. Baaijens, G. W. M. Peters, and H. E. H. Meijer, "Viscoelastic flow past a confined cylinder of a low density polyethylene melt," J. Non-Newtonian Fluid Mech. 68, 173–203 (1997). [Inspec] [ISI] first citation in article
  2. Bent J., L. R. Hutchings, R. W. Richards, T. Gough, R. Spares, P. D. Coates, I. Grillo, O. G. Harlen, D. J. Read, R. S. Graham, A. E. Likhtman, D. J. Groves, T. M. Nicholson, and T. C. B. McLeish, "Neutron-mapping polymer flow: Scattering, flow visualization, and molecular theory," Science 301, 1691–1695 (2003). [MEDLINE] first citation in article
  3. Bishko G. B., O. G. Harlen, T. M. Nicholson, and T. C. B. McLeish, "Numerical simulation of the transient flow of branched polymer melts through a planar contraction using the `pom-pom' Model," J. Non-Newtonian Fluid Mech. 82, 255–273 (1999). [Inspec] [ISI] first citation in article
  4. Doi, M., and S.F. Edwards , The Theory of Polymer Dynamics (Oxford University Press, Oxford, UK, 1986). first citation in article
  5. Graham, R. S., A. E. Likhtman, S. T. Milner, and T. C. B. McLeish, "Microscopic theory of linear entangled polymer chains under rapid deformation including chain stretch and convective constraint release," J. Rheol. 47, 1171–1200 (2003). first citation in article
  6. Ianniruberto, G., and G. Marrucci, "A simple constitutive equation for entangled polymers with chain stretch," J. Rheol. 45, 1305–1318 (2001). [ISI] first citation in article
  7. Janeschitz-Kriegl, H. , Polymer Melt Rheology and Flow Birefringence (Springer, New York, 1983). first citation in article
  8. Larson, R. G., T. Sridhar, L. G. Leal, G. H. McKinley, A. E. Likhtman, and T. C. B. McLeish, "Definitions of entanglement spacing and time constants in the tube model," J. Rheol. 47, 809–818 (2003). [ISI] first citation in article
  9. Laso, M., and H. C. Öttinger, "Calculation of viscoelastic flow using molecular models: The CONFFESSIT approach," J. Non-Newtonian Fluid Mech. 47, 1–20 (1993). [Inspec] [ISI] first citation in article
  10. Lee, C. S., B. C. Tripp, and J. J. Magda, "Does N1 or N2 control the onset of edge fracture?" J. Rheol. 31, 306–308 (1992). first citation in article
  11. Lee, K., and M. R. Mackley, "The application of the multipass rheometer for precise rheooptic characterisation of polyethylene melts," Chem. Eng. Sci. 56, 5653–5661 (2001). [ISI] first citation in article
  12. Lee, K., M. R. Mackley, T. C. B. McLeish, T. M. Nicholson, and O. G. Harlen, "Experimental observation and numerical simulation of transient stress fangs within flowin molten polyethylene," J. Rheol. 45, 1261–1277 (2001). [ISI] first citation in article
  13. Likhtman, A. E., and T. C. B. McLeish, "Quantitative theory for linear dynamics of linear entangled polymers," Macromolecules 35, 6332–6343 (2002). [ISI] first citation in article
  14. Likhtman, A. E., and R. S. Graham, "Simple constitutive equation for linear polymer melts derived from molecular theory: Rolie-Poly equation," J. Non-Newtonian Fluid Mech. 114, 1–12 (2003). [ISI] first citation in article
  15. Mackley, M. R., Marshall, R. T. J., and Smeulders, J. B. A. F., "The multipass rheometer," J. Rheol. 39, 1293–1309 (1995). first citation in article
  16. McLeish, T. C. B., "Tube theory of entangled polymer dynamics," Adv. Phys. 51, 1379–1527 (2002). first citation in article
  17. McLeish, T. C. B., and S. T. Milner, "Entangled dynamics and melt flow of branched polymers," Adv. Polym. Sci. 143, 195–256 (1999). [ISI] first citation in article
  18. Mead, D. W., R. G. Larson, and M. Doi, "A molecular theory of fast flows of linear polymers," Macromolecules 31, 7895–7914 (1998). first citation in article
  19. Meissner J., and J Hostettler, "A new elongational rheometer for polymer melts and other highly viscoelastic liquids," Rheol. Acta 33, 1–21 (1994). [Inspec] [ISI] first citation in article
  20. Milner, S. T., T. C. B. McLeish, and A. E. Likhtman, "Microscopic theory of convective constraint release," J. Rheol. 45, 539–563 (2001). first citation in article
  21. Morton, M., and Fetters, L. J., "Anionic polymerization of vinyl monomers," Rubber Chem. Technol. 48, 359–409 (1975). first citation in article
  22. Pangborn, A. B., M. A. Giardello, R. H. Grubbs, R. K. Rosen, and F. J. Timmers, "Safe and convenient procedure for solvent purification," Organometallics 15, 1518–1520 (1996). [ISI] first citation in article
  23. Peters, E. A. J. F., A. P. G. van Heel, M. A. Hulsen, and B. H. A. A. van den Brule, "Generalization of the deformation field method to simulate advanced reptation models in complex flow," J. Rheol. 44, 811–829 (2000). [ISI] first citation in article
  24. Rajagopalan, D., R. C. Armstrong, and R. A. Brown, "Comparison of computational efficiency of flow simulations with multimode constitutive equations: Integral and differential models," J. Non-Newtonian Fluid Mech. 46, 243–273 (1993). [Inspec] [ISI] first citation in article
  25. Schulze, J. S., T. P. Lodge, C. W. Macosko, J. Hepperle, H. Munstedt, H. Bastian, D. Ferri, D. J. Groves, Y. H. Kim, M. Lyon, T. Schweizer, T. Virkler, E. Wassner, and W. Zoetelief, "A comparison of extensional viscosity measurements from various RME rheometers," Rheol. Acta 40, 457–466 (2001). [Inspec] [ISI] first citation in article
  26. Tanner R. I., and M. Keentok, "Shear fracture in cone-plate rheometry," J. Rheol. 27, 47–57 (1983). first citation in article
  27. Verbeeten, W., G. W. M. Peters, and F. P. T. Baaijens, "The extended pom-pom model," J. Rheol. 45, 823–843 (2001). [ISI] first citation in article
  28. Wischnewski A., M. Monkenbusch, L. Willner, D. Richter, A. E. Likhtman, T. C. B. McLeish, and B. Farago, "Molecular observation of contour-length fluctuations limiting topological confinement in polymer melts," Phys. Rev. Lett. 88, 058301 (2002). [MEDLINE] first citation in article

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