Characterization of the viscoelastic and mechanical properties of tightly cross-linked polythiourethane networks

Both viscoelastic behavior and plastic deformation in compression were investigated on new polythiourethane networks based on diisocyanates and tri- or tetra-thiols. Dynamic mechanical analysis was used to characterize the mechanically-active α and β relaxations as a function of crosslink density an...

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Veröffentlicht in:Journal of applied polymer science 2008-01, Vol.107 (1), p.455-462
Hauptverfasser: Droger, Nicolas, Primel, Odile, Halary, Jean Louis
Format: Artikel
Sprache:eng
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Zusammenfassung:Both viscoelastic behavior and plastic deformation in compression were investigated on new polythiourethane networks based on diisocyanates and tri- or tetra-thiols. Dynamic mechanical analysis was used to characterize the mechanically-active α and β relaxations as a function of crosslink density and nature of the diisocyanate. Data molecular analysis on these novel materials led to conclusions in good agreement with earlier statements on the well-known epoxy-amine networks. Besides, consideration of the relaxational behavior, and especially in the β relaxation region, allowed one to interpret the plastic deformation properties of the systems under study and to predict their poor resistance to fracture. By the way, analysis of the energy required to yield permitted determination of a new characteristic temperature, Ty, which can be compared to the thermomechanical main transition temperature, Tα, and to the glass transition temperature, Tg. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci, 2008
ISSN:0021-8995
1097-4628
DOI:10.1002/app.27091