Open Access
Issue
MATEC Web Conf.
Volume 188, 2018
5th International Conference of Engineering Against Failure (ICEAF-V 2018)
Article Number 01021
Number of page(s) 9
Section Composite Materials: Characterization, Mechanical Behavior and Modeling, Advanced Manufacturing Techniques, Multifunctionality
DOI https://doi.org/10.1051/matecconf/201818801021
Published online 07 August 2018
  1. M. Bordival, F. Schmidt, Y. L. Maoult V. Velay, “Optimization of Preform Temperature Distribution for the Stretch-Blow Molding of PET Bottles: Infrared Heating and Blowing Modeling,” (2008). [Google Scholar]
  2. F. Daver B. Demirel, (Journal of Materials Processing Technology, 2012). [Google Scholar]
  3. B. Demire F. Daver, (Wiley Online Library, 2012). [Google Scholar]
  4. H. Haddad, D. Erbulut, (Australian Journal of Mechanical Engineering, 2009). [Google Scholar]
  5. C. W. Tan, G. H. Menary, Y. Salomeia, C. G. Armstrong, M. Picard, N. Billon, E. M. A. H.-. Jones, P. J. Martin and K. Maheshwari, Modelling of the Injection Stretch Blow Moulding of PET Containers via a Pressure-Volume (Pv -t) Thermodynamic Relationship. [Google Scholar]
  6. Z. J. Yang, E. Harkin-Jones, G. H. Menary and C. G. Armstrong, (Journal of Materials Processing Technology, 2004). [Google Scholar]
  7. J. Zimmer, M. Stommel (7th EEIGM International Conference on Advanced Materials Research, 2004). [Google Scholar]
  8. S. Yan, G. Menary, Modeling the Constitutive Behaviour of PET for Stretch Blow Moulding. [Google Scholar]
  9. E. Deloye, J. M. Haudin and N. Billon, Stretch Blow Molding of Copolymers-Influence of Molecular Architecture, (2012). [Google Scholar]
  10. G. Venkateswaran, M. Cameron and C. Jabarin, Adv. Polym. Technol., (1998). [Google Scholar]
  11. F. Fritsch, R. Carlson, SIAM J. Numer. Analysis. [Google Scholar]
  12. F. M. Shmidt, J. F. Agassant and M. Bellet, Experimental Study and Simulation of The Injection Stretch/Blow Molding Process. [Google Scholar]
  13. L. Ji-hu, H. Han-Xiong and Y. Zhan-song, Experiment and Simulation of PET Stretch Blow Molding Process, (2005). [Google Scholar]
  14. J. Nixon, G. Menary, S. Yan, Finite Element Simulations of stretch-blow moulding with experimental validation over a broad process window, (International Journal of Material Forming, 2016). [Google Scholar]
  15. F. Chaari, M. Chaouche, J. Douchet, Crystallization of poly (ethylene terephthalate) under tensile strain: crystalline development versus mechanical behaviour, (Polymer, 2003). [Google Scholar]
  16. E. Gorlier, J. Haudin, N. Billon, Strain-induced crystallisation in bulk amorphous PET under uni-axial loading, (Polymer, 2001). [Google Scholar]
  17. Y. Marco, L. Chevalier, M. Chaouche, WAXD study of induced crystallization and orientation in poly (ethylene terephthalate) during biaxial elongation, (Polymer, 2002). [Google Scholar]
  18. N. G. McCrum, C. P. Buckley, C. Bucknall, Principles of Polymer Engineering, (Oxford Science Publications, June, 2017). [Google Scholar]
  19. H. Zhou, Effects of microcrystallinity on physical aging and environmental stress cracking of poly (ethylene terephthalate) (PET), (PhD Thesis, 2005). [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.