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Erschienen in: Rheologica Acta 11-12/2012

01.12.2012 | Original Contribution

Effects of fluctuations of cross-linking points on viscoelastic properties of associating polymer networks

verfasst von: Tsutomu Indei, Jay D. Schieber, Jun-ichi Takimoto

Erschienen in: Rheologica Acta | Ausgabe 11-12/2012

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Abstract

We study the effects of fluctuations of cross-linking points, or junctions, on the dynamic mechanical and viscoelastic properties of polymer networks formed by multisticker associating polymers on the basis of a single-chain approach. Fluctuations of junctions are implemented by introducing virtual springs. We consider two possible cases for the treatment of virtual springs: the direct contribution from virtual springs is either neglected or included in the stress. We show that, if neglected, the fluctuation of junctions decreases (or softens) the dynamic modulus over a wide range of frequencies. This result agrees qualitatively with the result of several multichain models that predicts the decrease of the static or plateau modulus. We also show that the fluctuation accelerates the associative Rouse mode at low frequencies originating from the association/dissociation process of stickers. These results are apparently reasonable, but it is expected that there are some errors arising from thermodynamical inconsistency due to the neglect of virtual-spring contribution from the total stress against the virtual work principle and the second law of thermodynamics. On the other hand, if the direct contribution from the virtual springs is included in the stress, thermodynamics is satisfied but the plateau modulus does not change, contrary to the multichain prediction. The softening occurs only at the low-frequency regime. Thus, each method has both merits and demerits, and hence the treatment of junction fluctuations in the framework of single-chain approaches requires care and further investigation.

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Fußnoten
1
This relation is satisfied because the mean position of the fluctuating junctions on the real chain moves affinely as proved by James and Guth (1943) for phantom networks.
 
2
The anchor point of the virtual chain moves affinely.
 
3
In general, the factor M in Eq. 2 should be the mean spacing between neighboring bound stickers along the chain rather than the period of all stickers \(M=(N_\textrm{b}-1)/(N_\textrm{a}-1)\). However, since we are considering the case that almost all stickers are in a bound state, the mean spacing between bound stickers is approximately M.
 
4
If a majority of stickers are free, this method is not efficient for numerical calculations of G  ∗ . In the rest of this article, however, we consider the opposite case where almost all stickers are bound stickers for which this method is useful.
 
Literatur
Zurück zum Zitat Bird RB, Armstrong RC, Hassager O (1987) Dynamics of polymeric liquids, vol II: kinetic theory, 2nd edn. Addison-Wesley, New York Bird RB, Armstrong RC, Hassager O (1987) Dynamics of polymeric liquids, vol II: kinetic theory, 2nd edn. Addison-Wesley, New York
Zurück zum Zitat Chandler D (1987) Introduction to modern statistical mechanics, 1st edn. Oxford University Press, New York Chandler D (1987) Introduction to modern statistical mechanics, 1st edn. Oxford University Press, New York
Zurück zum Zitat Chassenieux C, Nicolai T, Benyahia L (2011) Rheology of associative polymer solutions. Curr Opin Colloid Interface Sci 16:18–26CrossRef Chassenieux C, Nicolai T, Benyahia L (2011) Rheology of associative polymer solutions. Curr Opin Colloid Interface Sci 16:18–26CrossRef
Zurück zum Zitat Doi M, Edwards SF (1986) The theory of polymer dynamics, 1st edn. Oxford University Press, Oxford Doi M, Edwards SF (1986) The theory of polymer dynamics, 1st edn. Oxford University Press, Oxford
Zurück zum Zitat Duiser JA, Staverman AJ (1965) On the theory of rubber elasticity. In: Prins JA (ed) Physics of non-crystalline solids. North Holland, Amsterdam, p 176 Duiser JA, Staverman AJ (1965) On the theory of rubber elasticity. In: Prins JA (ed) Physics of non-crystalline solids. North Holland, Amsterdam, p 176
Zurück zum Zitat Eichinger BE (1972) Elasticity theory I. Distribution functions for perfect phantom networks. Macromolecules 5:496–505CrossRef Eichinger BE (1972) Elasticity theory I. Distribution functions for perfect phantom networks. Macromolecules 5:496–505CrossRef
Zurück zum Zitat Flory PJ (1976) Statistical thermodynamics of random networks [and discussion]. Proc R Soc Lond A 351:351–380CrossRef Flory PJ (1976) Statistical thermodynamics of random networks [and discussion]. Proc R Soc Lond A 351:351–380CrossRef
Zurück zum Zitat Flory PJ, Rehner J (1943) Statistical mechanics of cross-linked polymer networks. 1. Rubberlike elasticity. J Chem Phys 11:512–520CrossRef Flory PJ, Rehner J (1943) Statistical mechanics of cross-linked polymer networks. 1. Rubberlike elasticity. J Chem Phys 11:512–520CrossRef
Zurück zum Zitat Graessley WW (1975a) Elasticity and chain dimensions in Gaussian networks. Macromolecules 8:865–868CrossRef Graessley WW (1975a) Elasticity and chain dimensions in Gaussian networks. Macromolecules 8:865–868CrossRef
Zurück zum Zitat Graessley WW (1975b) Statistical mechanics of random coil networks. Macromolecules 8:186–190CrossRef Graessley WW (1975b) Statistical mechanics of random coil networks. Macromolecules 8:186–190CrossRef
Zurück zum Zitat Graessley WW (2003) Polymeric liquids & networks: structure and properties. Garland, New York Graessley WW (2003) Polymeric liquids & networks: structure and properties. Garland, New York
Zurück zum Zitat Heitz C, Pendharkar S, Prud’homme RK, Kohn J (1999a) A new strictly alternating comblike amphiphilic polymer based on PEG. 1. Synthesis and associative behavior of a low molecular weight sample. Macromolecules 32:6652–6657CrossRef Heitz C, Pendharkar S, Prud’homme RK, Kohn J (1999a) A new strictly alternating comblike amphiphilic polymer based on PEG. 1. Synthesis and associative behavior of a low molecular weight sample. Macromolecules 32:6652–6657CrossRef
Zurück zum Zitat Heitz C, Prud’homme RK, Kohn J (1999b) A new strictly alternating comblike amphiphilic polymer based on PEG. 2. Associative behavior of a high molecular weight sample and interaction with sds. Macromolecules 32:6658–6667CrossRef Heitz C, Prud’homme RK, Kohn J (1999b) A new strictly alternating comblike amphiphilic polymer based on PEG. 2. Associative behavior of a high molecular weight sample and interaction with sds. Macromolecules 32:6658–6667CrossRef
Zurück zum Zitat Indei T, Takimoto J (2010) Linear viscoelastic properties of transient networks formed by associating polymers with multiple stickers. J Chem Phys 133:194902CrossRef Indei T, Takimoto J (2010) Linear viscoelastic properties of transient networks formed by associating polymers with multiple stickers. J Chem Phys 133:194902CrossRef
Zurück zum Zitat James HM (1947) Statistical properties of networks of flexible chains. J Chem Phys 15:651–668.CrossRef James HM (1947) Statistical properties of networks of flexible chains. J Chem Phys 15:651–668.CrossRef
Zurück zum Zitat James HM, Guth E (1943) Theory of the elastic properties of rubber. J Chem Phys 11:455–481CrossRef James HM, Guth E (1943) Theory of the elastic properties of rubber. J Chem Phys 11:455–481CrossRef
Zurück zum Zitat James HM, Guth E (1947) Theory of the increase in rigidity of rubber during cure. J Chem Phys 15:669–683CrossRef James HM, Guth E (1947) Theory of the increase in rigidity of rubber during cure. J Chem Phys 15:669–683CrossRef
Zurück zum Zitat James HM, Guth E (1949) Simple presentation of network theory of rubber, with a discussion of other theories. J Polym Sci 4:153–182CrossRef James HM, Guth E (1949) Simple presentation of network theory of rubber, with a discussion of other theories. J Polym Sci 4:153–182CrossRef
Zurück zum Zitat Jongschaap RJJ, Wientjes RHW, Duits MHG, Mellema J (2001) A generalized transient network model for associative polymer networks. Macromolecules 34:1031–1038CrossRef Jongschaap RJJ, Wientjes RHW, Duits MHG, Mellema J (2001) A generalized transient network model for associative polymer networks. Macromolecules 34:1031–1038CrossRef
Zurück zum Zitat Khaliullin RN, Schieber JD (2009) Self-consistent modeling of constraint release in a single-chain mean-field slip-link mode. Macromolecules 42:7504–7517CrossRef Khaliullin RN, Schieber JD (2009) Self-consistent modeling of constraint release in a single-chain mean-field slip-link mode. Macromolecules 42:7504–7517CrossRef
Zurück zum Zitat Kuhn W (1936) Beziehungen zwischen Molekülgröße, statistischer Molekülgestalt und elastischen Eigenschaften hochpolymerer Stoffe. Kolloid Z 76:258–271CrossRef Kuhn W (1936) Beziehungen zwischen Molekülgröße, statistischer Molekülgestalt und elastischen Eigenschaften hochpolymerer Stoffe. Kolloid Z 76:258–271CrossRef
Zurück zum Zitat Likhtman AE (2005) Single-chain slip-link model of entangled polymers: simultaneous description of neutron spin-echo, rheology, and diffusion. Macromolecules 38:6128–6139CrossRef Likhtman AE (2005) Single-chain slip-link model of entangled polymers: simultaneous description of neutron spin-echo, rheology, and diffusion. Macromolecules 38:6128–6139CrossRef
Zurück zum Zitat Masubuchi Y, Ianniruberto G, Greco F, Marrucci G (2003) Entanglement molecular weight and frequency response of sliplink networks. J Chem Phys 119:6925CrossRef Masubuchi Y, Ianniruberto G, Greco F, Marrucci G (2003) Entanglement molecular weight and frequency response of sliplink networks. J Chem Phys 119:6925CrossRef
Zurück zum Zitat Masubuchi Y, Takimoto J, Koyama K, Ianniruberto G, Marrucci G, Greco F (2001) Brownian simulations of a network of reptating primitive chains. J Chem Phys 115:4387CrossRef Masubuchi Y, Takimoto J, Koyama K, Ianniruberto G, Marrucci G, Greco F (2001) Brownian simulations of a network of reptating primitive chains. J Chem Phys 115:4387CrossRef
Zurück zum Zitat Ramirez J, Sukumaran SK, Likhtman AE (2007) Significance of cross correlations in the stress relaxation of polymer melts. J Chem Phys 126:244904CrossRef Ramirez J, Sukumaran SK, Likhtman AE (2007) Significance of cross correlations in the stress relaxation of polymer melts. J Chem Phys 126:244904CrossRef
Zurück zum Zitat Rubinstein M, Panyukov S (1997) Nonaffine deformation and elasticity of polymer networks. Macromolecules 30:8036–8044CrossRef Rubinstein M, Panyukov S (1997) Nonaffine deformation and elasticity of polymer networks. Macromolecules 30:8036–8044CrossRef
Zurück zum Zitat Rubinstein M, Panyukov S (2002) Elasticity of polymer networks. Macromolecules 35:6670–6686CrossRef Rubinstein M, Panyukov S (2002) Elasticity of polymer networks. Macromolecules 35:6670–6686CrossRef
Zurück zum Zitat Rubinstein M, Semenov AN (1998) Thermoreversible gelation in solutions of associating polymers. 2. Linear dynamics. Macromolecules 31:1386–1397CrossRef Rubinstein M, Semenov AN (1998) Thermoreversible gelation in solutions of associating polymers. 2. Linear dynamics. Macromolecules 31:1386–1397CrossRef
Zurück zum Zitat Schieber JD, Horio K (2010) Fluctuation in entanglement positions via elastic slip-links. J Chem Phys 132:074905CrossRef Schieber JD, Horio K (2010) Fluctuation in entanglement positions via elastic slip-links. J Chem Phys 132:074905CrossRef
Zurück zum Zitat Staverman AJ (1982) Properties of phantom networks and real networks. In: Dusek K (ed) Polymer networks. Advances in polymer science, vol 44. Springer, Berlin, pp 73–101 Staverman AJ (1982) Properties of phantom networks and real networks. In: Dusek K (ed) Polymer networks. Advances in polymer science, vol 44. Springer, Berlin, pp 73–101
Zurück zum Zitat Winnik MA, Yekta A (1997) Associative polymers in aqueous solution. Curr Opin Colloid Interface Sci 2:424–436CrossRef Winnik MA, Yekta A (1997) Associative polymers in aqueous solution. Curr Opin Colloid Interface Sci 2:424–436CrossRef
Zurück zum Zitat Xu B, Li L, Zhang K, Macdonald PM, Winnik MA, Jenkins R, Bassett D, Wolf D, Nuyken O (1997a) Synthesis and characterization of comb associative polymers based on poly(ethylene oxide). Langmuir 13:6896–6902CrossRef Xu B, Li L, Zhang K, Macdonald PM, Winnik MA, Jenkins R, Bassett D, Wolf D, Nuyken O (1997a) Synthesis and characterization of comb associative polymers based on poly(ethylene oxide). Langmuir 13:6896–6902CrossRef
Zurück zum Zitat Xu B, Yekta A, Winnik MA, Dalivand S-K, James DF, Jenkins R, Bassett D (1997b) Viscoelastic properties in water of comb associative polymers based on poly(ethylene oxide). Langmuir 13:6903–6911CrossRef Xu B, Yekta A, Winnik MA, Dalivand S-K, James DF, Jenkins R, Bassett D (1997b) Viscoelastic properties in water of comb associative polymers based on poly(ethylene oxide). Langmuir 13:6903–6911CrossRef
Metadaten
Titel
Effects of fluctuations of cross-linking points on viscoelastic properties of associating polymer networks
verfasst von
Tsutomu Indei
Jay D. Schieber
Jun-ichi Takimoto
Publikationsdatum
01.12.2012
Verlag
Springer-Verlag
Erschienen in
Rheologica Acta / Ausgabe 11-12/2012
Print ISSN: 0035-4511
Elektronische ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-012-0656-4

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