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Erschienen in: Rheologica Acta 11/2017

15.09.2017 | Original Contribution

Rheological and molecular characterization of long-chain branched poly(ethylene terephthalate)

verfasst von: Matthias Kruse, Manfred H. Wagner

Erschienen in: Rheologica Acta | Ausgabe 11/2017

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Abstract

Reactive extrusion with pyromellitic dianhydride (PMDA) and tetraglycidyl diamino diphenyl methane (TGDDM) was conducted to create long-chain branched poly(ethylene terephthalate) (LCB-PET). The mechanical and molecular properties were analyzed by linear and non-linear viscoelastic rheology in the melt state and by size-exclusion chromatography measurements with triple detection. The two tetra-functional chain extenders lead to strong viscosity increases, increasing strain hardening effects, and increasing LCB with increasing chain extender concentration. Molecular stress function model predictions show good agreement with the elongational data measured and allowed a quantification of the strain hardening. Analysis of SEC triple detection data shows a strong increase of the average molar mass, polydispersity, radius of gyration, and hydrodynamic radius with increasing chain extender concentration. Branching was confirmed by a decreasing Mark-Houwink exponent, and the analysis of the contraction of the molecule revealed either star-like, comb-like, random tree-like or hyperbranched structures depending on concentration and type of chain extender.

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Literatur
Zurück zum Zitat Auhl D, Stange J, Münstedt H, Krause B, Voigt D, Lederer A, Lappan U, Lunkwitz K (2004) Long-chain branched polypropylenes by electron beam irradiation and their rheological properties. Macromolecules 37:9465–9472CrossRef Auhl D, Stange J, Münstedt H, Krause B, Voigt D, Lederer A, Lappan U, Lunkwitz K (2004) Long-chain branched polypropylenes by electron beam irradiation and their rheological properties. Macromolecules 37:9465–9472CrossRef
Zurück zum Zitat Auhl D, Stadler FJ, Münstedt H (2012) Comparison of molecular structure and rheological properties of electron-beam- and gamma-irradiated polypropylene. Macromolecules 45:2057–2065CrossRef Auhl D, Stadler FJ, Münstedt H (2012) Comparison of molecular structure and rheological properties of electron-beam- and gamma-irradiated polypropylene. Macromolecules 45:2057–2065CrossRef
Zurück zum Zitat Awaja F, Daver F, Kosior E (2004) Recycled poly(ethylene terephthalate) chain extension by a reactive extrusion process. Polym Eng Sci 44:1579–1587CrossRef Awaja F, Daver F, Kosior E (2004) Recycled poly(ethylene terephthalate) chain extension by a reactive extrusion process. Polym Eng Sci 44:1579–1587CrossRef
Zurück zum Zitat Baumgaertel M, Winter HH (1989) Determination of discrete relaxation and retardation time spectra from dynamic mechanical data. Rheol Acta 28:511–519CrossRef Baumgaertel M, Winter HH (1989) Determination of discrete relaxation and retardation time spectra from dynamic mechanical data. Rheol Acta 28:511–519CrossRef
Zurück zum Zitat Berkowitz SA (1984) Viscosity-molecular weight relationships for poly(ethylene terephthalate) in hexafluoroisopropanol pentauorophenol using SEC-LALLS. Polymer 29:4353–4361 Berkowitz SA (1984) Viscosity-molecular weight relationships for poly(ethylene terephthalate) in hexafluoroisopropanol pentauorophenol using SEC-LALLS. Polymer 29:4353–4361
Zurück zum Zitat Berry GC (1968) Translational frictional constant of comb-branched polymers. J Polym Sci A-2 Polym Phys 6:1551–1554CrossRef Berry GC (1968) Translational frictional constant of comb-branched polymers. J Polym Sci A-2 Polym Phys 6:1551–1554CrossRef
Zurück zum Zitat Berry GC (1988) Remarks on a relation among the intrinsic viscosity, the radius of gyration, and the translational friction coefficient. J Polym Sci B Polym Phys 26:1137–1142CrossRef Berry GC (1988) Remarks on a relation among the intrinsic viscosity, the radius of gyration, and the translational friction coefficient. J Polym Sci B Polym Phys 26:1137–1142CrossRef
Zurück zum Zitat Chambon F, Winter HH (1987) Linear viscoelasticity at the gel point of a crosslinking PDMS with imbalanced stoichiometry. J Rheol 31:683–697CrossRef Chambon F, Winter HH (1987) Linear viscoelasticity at the gel point of a crosslinking PDMS with imbalanced stoichiometry. J Rheol 31:683–697CrossRef
Zurück zum Zitat Coccorullo I, Di Maio L, Montesano S, Incarnato L (2009) Theoretical and experimental study of foaming process with chain extended recycled PET. Polymer 3:84–96 Coccorullo I, Di Maio L, Montesano S, Incarnato L (2009) Theoretical and experimental study of foaming process with chain extended recycled PET. Polymer 3:84–96
Zurück zum Zitat Daver F, Gupta R, Kosior E (2008) Rheological characterisation of recycled poly(ethylene terephthalate) modified by reactive extrusion. J Mater Process Technol 204:397–402CrossRef Daver F, Gupta R, Kosior E (2008) Rheological characterisation of recycled poly(ethylene terephthalate) modified by reactive extrusion. J Mater Process Technol 204:397–402CrossRef
Zurück zum Zitat Dekmezian AH, Weng W, Garcia-Franco CA, Markel EJ (2004) Melt strength of blends of linear low density polyethylene and comb polymers. Polymer 45:5635–5640CrossRef Dekmezian AH, Weng W, Garcia-Franco CA, Markel EJ (2004) Melt strength of blends of linear low density polyethylene and comb polymers. Polymer 45:5635–5640CrossRef
Zurück zum Zitat Doi M, Edwards SF (1978) Dynamics of concentrated polymer systems. 2. Molecular-motion under flow. J Chem Soc Faraday Trans II 74:1802–1817CrossRef Doi M, Edwards SF (1978) Dynamics of concentrated polymer systems. 2. Molecular-motion under flow. J Chem Soc Faraday Trans II 74:1802–1817CrossRef
Zurück zum Zitat Doi M, Edwards SF (1986) The theory of polymer dynamics. Oxford University Press, Oxford Doi M, Edwards SF (1986) The theory of polymer dynamics. Oxford University Press, Oxford
Zurück zum Zitat Gabriel C, Münstedt H (2003) Strain hardening of various polyolefins in uniaxial elongational flow. J Rheol 47:619–630CrossRef Gabriel C, Münstedt H (2003) Strain hardening of various polyolefins in uniaxial elongational flow. J Rheol 47:619–630CrossRef
Zurück zum Zitat Härth M, Kaschta J, Schubert DW (2014) Shear and elongational flow properties of longchain branched poly(ethylene terephthalates) and correlations to their molecular structure. Macromolecules 47:4471–4478CrossRef Härth M, Kaschta J, Schubert DW (2014) Shear and elongational flow properties of longchain branched poly(ethylene terephthalates) and correlations to their molecular structure. Macromolecules 47:4471–4478CrossRef
Zurück zum Zitat Hatzikiriakos SG, Heffner G, Vlassopoulos D, Christodoulou D (1997) Rheological characterization of polyethylene terephthalate resins using a multimode Phan-Tien-Tanner constitutive relation. Rheol Acta 36:568–578CrossRef Hatzikiriakos SG, Heffner G, Vlassopoulos D, Christodoulou D (1997) Rheological characterization of polyethylene terephthalate resins using a multimode Phan-Tien-Tanner constitutive relation. Rheol Acta 36:568–578CrossRef
Zurück zum Zitat Huang Q, Rasmussen HK, Skov AL, Hassager O (2012) Stress relaxation and reversed flow of low-density polyethylene melts following uniaxial extension. J Rheol 56:1535–1554CrossRef Huang Q, Rasmussen HK, Skov AL, Hassager O (2012) Stress relaxation and reversed flow of low-density polyethylene melts following uniaxial extension. J Rheol 56:1535–1554CrossRef
Zurück zum Zitat Huang Q, Mangnus M, Alvarez NJ, Koopmans R, Hassager O (2016) A new look at extensional rheology of low-density polyethylene. Rheol Acta 55:343–350CrossRef Huang Q, Mangnus M, Alvarez NJ, Koopmans R, Hassager O (2016) A new look at extensional rheology of low-density polyethylene. Rheol Acta 55:343–350CrossRef
Zurück zum Zitat Incarnato L, Scarfato P, Di Maio L, Acierno D (2000) Structure and rheology of recycled PET modified by reactive extrusion. Polymer 41:6825–6831CrossRef Incarnato L, Scarfato P, Di Maio L, Acierno D (2000) Structure and rheology of recycled PET modified by reactive extrusion. Polymer 41:6825–6831CrossRef
Zurück zum Zitat Japon S, Boogh L, Leterrier Y, Ma JE (2000) Reactive processing of poly(ethylene terephthalate) modified with multifunctional epoxy-based additives. Polymer 41:5809–5818CrossRef Japon S, Boogh L, Leterrier Y, Ma JE (2000) Reactive processing of poly(ethylene terephthalate) modified with multifunctional epoxy-based additives. Polymer 41:5809–5818CrossRef
Zurück zum Zitat Japon S, Luciani A, Nguyen QT, Leterrier Y, Manson JAE (2001) Molecular characterization and rheological properties of modified poly(ethylene terephthalate) obtained by reactive extrusion. Polym Eng Sci 41:1299–1309CrossRef Japon S, Luciani A, Nguyen QT, Leterrier Y, Manson JAE (2001) Molecular characterization and rheological properties of modified poly(ethylene terephthalate) obtained by reactive extrusion. Polym Eng Sci 41:1299–1309CrossRef
Zurück zum Zitat Kheirandish S (2005) Constitutive equations for linear and long-chain-branched polymer melts. PhD Thesis, Berlin Kheirandish S (2005) Constitutive equations for linear and long-chain-branched polymer melts. PhD Thesis, Berlin
Zurück zum Zitat Kil SB, Augros T, Leterrier Y, Manson JAE, Christel A, Borer C (2003) Rheological properties of hyperbranched polymer/poly(ethylene terephthalate) reactive blends. Polym Eng Sci 43:329–343CrossRef Kil SB, Augros T, Leterrier Y, Manson JAE, Christel A, Borer C (2003) Rheological properties of hyperbranched polymer/poly(ethylene terephthalate) reactive blends. Polym Eng Sci 43:329–343CrossRef
Zurück zum Zitat Kratochvil P (1972) In: Huglin MB (ed) Particle scattering function, light scattering from polymer solutions. Academic Press, London Kratochvil P (1972) In: Huglin MB (ed) Particle scattering function, light scattering from polymer solutions. Academic Press, London
Zurück zum Zitat Kruse M (2017) From linear to long-chain branched polyethylene(terephthalate) – reactive extrusion, rheology, and molecular characterization. PhD Thesis, Berlin Kruse M (2017) From linear to long-chain branched polyethylene(terephthalate) – reactive extrusion, rheology, and molecular characterization. PhD Thesis, Berlin
Zurück zum Zitat Kruse M, Wagner MH (2016) Time-resolved rheometry of poly(ethylene terephthalate) during thermal and thermo-oxidative degradation. Rheol Acta 55:789–800CrossRef Kruse M, Wagner MH (2016) Time-resolved rheometry of poly(ethylene terephthalate) during thermal and thermo-oxidative degradation. Rheol Acta 55:789–800CrossRef
Zurück zum Zitat Kruse M, Rolón-Garrido VH, Wagner MH (2013) Rheological characterization of degradation and polycondensation of poly(ethylene terephthalate) melt in air and in nitrogen. AIP Conf Proc 1526:216–229CrossRef Kruse M, Rolón-Garrido VH, Wagner MH (2013) Rheological characterization of degradation and polycondensation of poly(ethylene terephthalate) melt in air and in nitrogen. AIP Conf Proc 1526:216–229CrossRef
Zurück zum Zitat Larson R (1999) The structure and rheology of complex fluids. Oxford University Press, New York Larson R (1999) The structure and rheology of complex fluids. Oxford University Press, New York
Zurück zum Zitat Lohse DJ, Milner ST, Fetters LJ, Xenidou M, Hadjichristidis N, Mendelson RA, García-Franco CA, Lyon MK (2002) Well-defined, model long chain branched polyethylene. 2. Melt rheological behavior. Macromolecules 35:3066–3075CrossRef Lohse DJ, Milner ST, Fetters LJ, Xenidou M, Hadjichristidis N, Mendelson RA, García-Franco CA, Lyon MK (2002) Well-defined, model long chain branched polyethylene. 2. Melt rheological behavior. Macromolecules 35:3066–3075CrossRef
Zurück zum Zitat Ma Y, Agarwal US, Sikkema DJ, Lemstra PJ (2003) Solid-state polymerization of PET: influence of nitrogen sweep and high vacuum. Polymer 44:4085–4096 Ma Y, Agarwal US, Sikkema DJ, Lemstra PJ (2003) Solid-state polymerization of PET: influence of nitrogen sweep and high vacuum. Polymer 44:4085–4096
Zurück zum Zitat Marrucci G, Grizzuti N (1983) The free energy function relaxation of the Doi-Edwards theory: analysis of the instabilities in stress. J Rheol 27:433–450CrossRef Marrucci G, Grizzuti N (1983) The free energy function relaxation of the Doi-Edwards theory: analysis of the instabilities in stress. J Rheol 27:433–450CrossRef
Zurück zum Zitat McLeish TCB, Milner ST (1999) Entangled dynamics and melt flow of branched polymers. Adv Polym Sci 143:195–256CrossRef McLeish TCB, Milner ST (1999) Entangled dynamics and melt flow of branched polymers. Adv Polym Sci 143:195–256CrossRef
Zurück zum Zitat Mori S, Barth HG (1999) Size exclusion chromatography. Springer, BerlinCrossRef Mori S, Barth HG (1999) Size exclusion chromatography. Springer, BerlinCrossRef
Zurück zum Zitat Münstedt H, Kurzbeck S, Stange J (2006) Importance of elongational properties of polymer melts for film blowing and thermoforming. Polym Eng Sci 46:1190–1195CrossRef Münstedt H, Kurzbeck S, Stange J (2006) Importance of elongational properties of polymer melts for film blowing and thermoforming. Polym Eng Sci 46:1190–1195CrossRef
Zurück zum Zitat Ogura K, Wagner MH (2013) Rheological characterization of cross-linked poly(methyl methacrylate). Rheol Acta 52:753–765CrossRef Ogura K, Wagner MH (2013) Rheological characterization of cross-linked poly(methyl methacrylate). Rheol Acta 52:753–765CrossRef
Zurück zum Zitat Ogura K, Morioka K, Tsujii Y, Hsu SY, Wagner MH (2015) Uniaxial extensional flow behavior of comb-shaped poly(methyl methacrylate). J Polym Sci 54:637–645 Ogura K, Morioka K, Tsujii Y, Hsu SY, Wagner MH (2015) Uniaxial extensional flow behavior of comb-shaped poly(methyl methacrylate). J Polym Sci 54:637–645
Zurück zum Zitat Podzimek S (2011) Light scattering, size exclusion chromatography and asymmetric flow field flow fractionation: powerful tools for the characterization of polymers, proteins and nanoparticles. John Wiley & Sons, New JerseyCrossRef Podzimek S (2011) Light scattering, size exclusion chromatography and asymmetric flow field flow fractionation: powerful tools for the characterization of polymers, proteins and nanoparticles. John Wiley & Sons, New JerseyCrossRef
Zurück zum Zitat Podzimek S (2013) Importance of multi-angle light scattering in polyolefin characterization. Macromol Symp 330:81–91CrossRef Podzimek S (2013) Importance of multi-angle light scattering in polyolefin characterization. Macromol Symp 330:81–91CrossRef
Zurück zum Zitat Radke W, Müller AHE (2005) Synthesis and characterization of comb-shaped polymers by SEC with on-line light scattering and viscometry detection. Macromolecules 38:3949–3960CrossRef Radke W, Müller AHE (2005) Synthesis and characterization of comb-shaped polymers by SEC with on-line light scattering and viscometry detection. Macromolecules 38:3949–3960CrossRef
Zurück zum Zitat Raible T, Demarmels A, Meissner J (1979) Stress and recovery maxima in LDPE melt elongation. Polym Bull 1:397–402CrossRef Raible T, Demarmels A, Meissner J (1979) Stress and recovery maxima in LDPE melt elongation. Polym Bull 1:397–402CrossRef
Zurück zum Zitat Rasmussen HK, Nielsen JK, Bach A, Hassager O (2005) Viscosity overshoot in the start-up of uniaxial elongation of low density polyethylene melts. J Rheol 49:369–381CrossRef Rasmussen HK, Nielsen JK, Bach A, Hassager O (2005) Viscosity overshoot in the start-up of uniaxial elongation of low density polyethylene melts. J Rheol 49:369–381CrossRef
Zurück zum Zitat Rolón-Garrido VH (2014) The molecular stress function (MSF) model in rheology. Rheol Acta 53:663–700CrossRef Rolón-Garrido VH (2014) The molecular stress function (MSF) model in rheology. Rheol Acta 53:663–700CrossRef
Zurück zum Zitat Rolón-Garrido VH, Wagner MH (2007) The MSF model: relation of nonlinear parameters to molecular structure of long-chain branched polymer melts. Rheol Acta 46:583–593CrossRef Rolón-Garrido VH, Wagner MH (2007) The MSF model: relation of nonlinear parameters to molecular structure of long-chain branched polymer melts. Rheol Acta 46:583–593CrossRef
Zurück zum Zitat Rolón-Garrido VH, Wagner MH (2014) Elongational rheology and cohesive fracture of photooxidated LDPE. J Rheol 58:199–222CrossRef Rolón-Garrido VH, Wagner MH (2014) Elongational rheology and cohesive fracture of photooxidated LDPE. J Rheol 58:199–222CrossRef
Zurück zum Zitat Rolón-Garrido VH, Kruse M, Wagner MH (2015) Size exclusion chromatography of photooxidated LDPE by triple detection and its relation to rheological behavior. Polym Degrad Stab 111:46–54CrossRef Rolón-Garrido VH, Kruse M, Wagner MH (2015) Size exclusion chromatography of photooxidated LDPE by triple detection and its relation to rheological behavior. Polym Degrad Stab 111:46–54CrossRef
Zurück zum Zitat Rubinstein M, Colby RH (2003) Polymer physics, 1nd edn. Oxford University Press, Oxford Rubinstein M, Colby RH (2003) Polymer physics, 1nd edn. Oxford University Press, Oxford
Zurück zum Zitat Sentmanat ML (2004) Miniature universal testing platform: from extensional melt rheology to solid-state deformation behavior. Rheol Acta 43:657–669CrossRef Sentmanat ML (2004) Miniature universal testing platform: from extensional melt rheology to solid-state deformation behavior. Rheol Acta 43:657–669CrossRef
Zurück zum Zitat Trinkle S, Friedrich C (2001) Van Gurp-Palmen-plot: a way to characterize polydispersity of linear polymers. Rheol Acta 40:322–328CrossRef Trinkle S, Friedrich C (2001) Van Gurp-Palmen-plot: a way to characterize polydispersity of linear polymers. Rheol Acta 40:322–328CrossRef
Zurück zum Zitat Trinkle S, Walter P, Friedrich C (2002) Van Gurp-Palmen plot II—classification of long chain branched polymers by their topology. Rheol Acta 41:103–113CrossRef Trinkle S, Walter P, Friedrich C (2002) Van Gurp-Palmen plot II—classification of long chain branched polymers by their topology. Rheol Acta 41:103–113CrossRef
Zurück zum Zitat Utracki A, Catani AM, Bata GL, Kamal MR, Tam V (1982) Melt rheology of blends of semi-crystalline polymers. 1. Degradation and viscosity of poly(ethylene terephthalate)-polyamide-6,6 mixtures J. Appl Polym Sci 27:1913–1931CrossRef Utracki A, Catani AM, Bata GL, Kamal MR, Tam V (1982) Melt rheology of blends of semi-crystalline polymers. 1. Degradation and viscosity of poly(ethylene terephthalate)-polyamide-6,6 mixtures J. Appl Polym Sci 27:1913–1931CrossRef
Zurück zum Zitat Van Gurp M, Palmen J (1998) Time-temperature superposition for polymeric blends. Rheol Bull 67:5–8 Van Gurp M, Palmen J (1998) Time-temperature superposition for polymeric blends. Rheol Bull 67:5–8
Zurück zum Zitat Van Krevelen DW (1976) Properties of polymers, 2nd edn. Elsevier Science, Amsterdam Van Krevelen DW (1976) Properties of polymers, 2nd edn. Elsevier Science, Amsterdam
Zurück zum Zitat Van Ruymbeke E, Keunings R, Bailly C (2002) Determination of the molecular weight distribution of entangled linear polymers from linear viscoelasticity data. J Non-Newtonian 105:153–175CrossRef Van Ruymbeke E, Keunings R, Bailly C (2002) Determination of the molecular weight distribution of entangled linear polymers from linear viscoelasticity data. J Non-Newtonian 105:153–175CrossRef
Zurück zum Zitat Wagner MH (2006) Modeling nonlinear rheology of polydisperse polymer melts. Int J Appl Mech Eng 11:255–267 Wagner MH (2006) Modeling nonlinear rheology of polydisperse polymer melts. Int J Appl Mech Eng 11:255–267
Zurück zum Zitat Wagner MH, Schaeffer J (1992) Nonlinear strain measures for general biaxial extension of polymer melts. J Rheol 36:1–26CrossRef Wagner MH, Schaeffer J (1992) Nonlinear strain measures for general biaxial extension of polymer melts. J Rheol 36:1–26CrossRef
Zurück zum Zitat Wagner MH, Schaeffer J (1993) Rubbers and polymer melts: universal aspects of nonlinear stress-strain relations. J Rheol 37:643–661CrossRef Wagner MH, Schaeffer J (1993) Rubbers and polymer melts: universal aspects of nonlinear stress-strain relations. J Rheol 37:643–661CrossRef
Zurück zum Zitat Wagner MH, Bastian H, Ehrecke P, Kraft M, Hachmann P, Meissner J (1998) Nonlinear viscoelastic characterization of a linear polyethylene (HDPE) melt in rotational and irrotational flows. J Non-Newtonian Fluid Mech 79:283–296CrossRef Wagner MH, Bastian H, Ehrecke P, Kraft M, Hachmann P, Meissner J (1998) Nonlinear viscoelastic characterization of a linear polyethylene (HDPE) melt in rotational and irrotational flows. J Non-Newtonian Fluid Mech 79:283–296CrossRef
Zurück zum Zitat Wagner MH, Bastian H, Hachmann P, Meissner J, Kurzbeck S, Münstedt H, Langouche F (2000) The strain-hardening behaviour of linear and long-chain-branched polyolefin melts in extensional flows. Rheol Acta 39:97–109CrossRef Wagner MH, Bastian H, Hachmann P, Meissner J, Kurzbeck S, Münstedt H, Langouche F (2000) The strain-hardening behaviour of linear and long-chain-branched polyolefin melts in extensional flows. Rheol Acta 39:97–109CrossRef
Zurück zum Zitat Wagner MH, Rubio P, Bastian H (2001) The molecular stress function model for polydisperse polymer melts with dissipative convective constraint release. J Rheol 45:1387–1412CrossRef Wagner MH, Rubio P, Bastian H (2001) The molecular stress function model for polydisperse polymer melts with dissipative convective constraint release. J Rheol 45:1387–1412CrossRef
Zurück zum Zitat Wagner MH, Yamaguchi M, Takahashi M (2003) Quantitative assessment of strain hardening of low-density polyethylene melts by the molecular stress function model. J Rheol 47:779–793CrossRef Wagner MH, Yamaguchi M, Takahashi M (2003) Quantitative assessment of strain hardening of low-density polyethylene melts by the molecular stress function model. J Rheol 47:779–793CrossRef
Zurück zum Zitat Wagner MH, Hepperle J, Münstedt H (2004) Relating rheology and molecular structure of model branched polystyrene melts by molecular stress. J Rheol 48:489–503CrossRef Wagner MH, Hepperle J, Münstedt H (2004) Relating rheology and molecular structure of model branched polystyrene melts by molecular stress. J Rheol 48:489–503CrossRef
Zurück zum Zitat Wagner MH, Kheirandish S, Koyama K, Nishioka A, Minegishi A, Takahashi T (2005) Modeling strain hardening of polydisperse polystyrene melts by molecular stress function theory. Rheol Acta 44:235–243CrossRef Wagner MH, Kheirandish S, Koyama K, Nishioka A, Minegishi A, Takahashi T (2005) Modeling strain hardening of polydisperse polystyrene melts by molecular stress function theory. Rheol Acta 44:235–243CrossRef
Zurück zum Zitat Winter HH, Chambon F (1986) Analysis of linear viscoelasticity of a cross-linking polymer at the gel point. J Rheol 30:367–382CrossRef Winter HH, Chambon F (1986) Analysis of linear viscoelasticity of a cross-linking polymer at the gel point. J Rheol 30:367–382CrossRef
Zurück zum Zitat Xanthos M (1992) In reactive extrusion. Oxford University Press, Munich Xanthos M (1992) In reactive extrusion. Oxford University Press, Munich
Zurück zum Zitat Xanthos M, Wan C, Dhavalikar R, Karayannidis GP, Bikiaris DN (2004) Identification of rheological and structural characteristics of foamable poly(ethylene terephthalate) by reactive extrusion. Polymer International 53:1161–1168 Xanthos M, Wan C, Dhavalikar R, Karayannidis GP, Bikiaris DN (2004) Identification of rheological and structural characteristics of foamable poly(ethylene terephthalate) by reactive extrusion. Polymer International 53:1161–1168
Zurück zum Zitat Yu K, Marina JMR, Rasmussen HK, Hassager O (2010) 3D modeling of dual wind-up extensional rheometers. J Non-Newtonian Fluid Mech 165:14–23CrossRef Yu K, Marina JMR, Rasmussen HK, Hassager O (2010) 3D modeling of dual wind-up extensional rheometers. J Non-Newtonian Fluid Mech 165:14–23CrossRef
Zurück zum Zitat Zimm BH, Kilb RW (1959) Dynamics of branched polymer molecules in dilute solution. J Polym Sci 37:19–42CrossRef Zimm BH, Kilb RW (1959) Dynamics of branched polymer molecules in dilute solution. J Polym Sci 37:19–42CrossRef
Zurück zum Zitat Zimm BH, Stockmayer W (1949) The dimensions of chain molecules containing branches and rings. J Chem Phys 17:1301–1314CrossRef Zimm BH, Stockmayer W (1949) The dimensions of chain molecules containing branches and rings. J Chem Phys 17:1301–1314CrossRef
Metadaten
Titel
Rheological and molecular characterization of long-chain branched poly(ethylene terephthalate)
verfasst von
Matthias Kruse
Manfred H. Wagner
Publikationsdatum
15.09.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Rheologica Acta / Ausgabe 11/2017
Print ISSN: 0035-4511
Elektronische ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-017-1043-y

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