Open Access
Issue
EPJ Web Conf.
Volume 183, 2018
DYMAT 2018 - 12th International Conference on the Mechanical and Physical Behaviour of Materials under Dynamic Loading
Article Number 04011
Number of page(s) 6
Section Industrial Applications
DOI https://doi.org/10.1051/epjconf/201818304011
Published online 07 September 2018
  • R. Balieu, F. Lauro, B. Bennani, R. Delille, Matsumoto, T., E. Mottola, A fully coupled elastoviscoplastic damage model at finite strains for mineral filled semi-crystalline polymer. International Journal of Plasticity, 51, 241-270 (2013) [CrossRef] [Google Scholar]
  • R. Balieu, F. Lauro, B. Bennani, T. Matsumoto, E. Mottola, Non-associated viscoplasticity coupled with an integral-type non local damage model for mineral filled semi-crystalline polymers. Computers and Structures, 134, 18-31(2014) [CrossRef] [Google Scholar]
  • F. Lauro, B. Bennani, D. Morin., and A. Epee, The SEE method for determination of behaviour laws for strain rate dependant material: Application to polymer material. International Journal of Impact Engineering, 37, 715-722, impact Loading of Lightweight Structures (2010) [CrossRef] [Google Scholar]
  • A. Epee, F. Lauro, B. Bennani, and B. Bourel, Constitutive model for a semi-crystalline polymer under dynamic loading. International Journal of Solids and Structures, 48, 1590-1599 (2011) [CrossRef] [Google Scholar]
  • Précis matières plastiques, J.P. Trotignon & co., éd. Nathan (1996) [Google Scholar]
  • Polypropylene, The Definitive User’s Guide & Databook, Clive Maier, Teresa Calafut, PDL (1998) [Google Scholar]
  • EUROTALC - IMA Europe, Talc Publication [Google Scholar]
  • E. Baquet, Ph.D. thesis, Modélisation thermomécanique visco-hyperélastique du comportement d’un polymère semi-cristallin : application au cas d’une matrice polyamide 6.6., https://pastel.archivesouvertes.fr/pastel-00715693, Submitted on 9 Jul 2012 [Google Scholar]
  • A. Maurel-Pantel, E. Baquet, J. Bikard, J.-L. Bouvard, and N. Billon, A thermo-mechanical large deformation constitutive model for polymers based on material network description: Application to a semi-crystalline polyamide 66. International Journal of Plasticity, 67: 102-126, 2015 [CrossRef] [Google Scholar]
  • N. Billon, New constitutive modeling for timedependent mechanical behavior of polymers close to glass transition: Fundamentals and experimental validation. Journal of Applied Polymer Science, 125 (6): 4390-4401 (2012) [CrossRef] [Google Scholar]
  • F.-J. Wortmann, K.V. Schulz. Stress relaxation and time/temperature superposition of polypropylene fibres. Polymer Vol. 36 Ko. 2, PP. 315-321 (1995) [CrossRef] [Google Scholar]
  • A. Roncin, Ph.D. thesis, Étude de la modification des propriétés rhéologiques linéaires et non linéaires par ingénierie moléculaire. Vers le contrôle des propriétés adhésives de matériaux autocollants, www.theses.fr. Submitted on 12 Dec 2011. [Google Scholar]