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Aging of polyamide 11. Part 3: Multiscale model predicting the mechanical properties after hydrolytic degradation

Aging of polyamide 11. Part 3: Multiscale model predicting the mechanical properties after hydrolytic degradation

Category
Journal publication
Abstract
A holistic general multiscale model of polymer degradation has been applied to predict the mechanical properties of polyamide 11 after the hydrolytic ageing. Results for elastic modulus, tensile strength, and embrittlement threshold have been compared with experimental aging in deoxygenated water at 120°C. For all studied properties the modeled trend is close to the experimental test results confirming hydrolysis induced chain scission and chemicrystalization as the two main mechanisms of property change. This suggests that the multiscale modeling methodology can provide a valuable alternative to accelerated aging tests. The model also indicated that the crystalline phase does play a role in the plastic deformation. Moreover, the mechanical equilibrium between effects of macromolecule degradation and an increased degree of crystallinity has been described. © 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 42792.
Client
  • Norges forskningsråd / 193167
Language
English
Author(s)
Affiliation
  • Norwegian University of Science and Technology
  • SINTEF Industry / Materials and Nanotechnology
Year
2015
Published in
Journal of Applied Polymer Science
ISSN
0021-8995
Volume
132
Issue
46