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  4. The influence of internal stresses on the microbond test II : Physical aging and adhesion
 
research article

The influence of internal stresses on the microbond test II : Physical aging and adhesion

Mendels, D.-A.
•
Leterrier, Y.  
•
Månson, J.-A. E.  
2002
Journal of Composite Materials

The present work investigated the effects of physical aging on interfacial adhesion and internal stresses using single-fibre model composites. First, the stress state of the interface and its evolution upon aging were studied for the microbond geometry. This stress analysis was used with experiments to determine an intrinsic interfacial shear strength. Second, this stress analysis, including aging effects, was used in a fracture mechanics or energy release rate analysis of the microbond test, which involves the energy necessary to propagate a crack instead of the minimum stress to initiate a crack. These methods were tested for both freshly cured and aged epoxy droplets on glass fibres, and were shown to yield similar results. It was found that neither the interfacial shear strength nor the interfacial toughness were changed by physical aging of the polymer matrix when the relaxation of internal stresses and shift of relaxation times of the matrix due to physical aging were accounted for. Thus, the intrinsic shear strength and toughness of the fibre matrix interface were determined.

  • Details
  • Metrics
Type
research article
DOI
10.1177/0021998302036014166
Author(s)
Mendels, D.-A.
Leterrier, Y.  
Månson, J.-A. E.  
Date Issued

2002

Published in
Journal of Composite Materials
Volume

36

Issue

14

Start page

1655

End page

1676

Subjects

microbond test

•

adhesion

•

intrinsic strength

•

internal stresses

•

physical aging

•

energy release rate

•

interfacial toughness

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LTC  
Available on Infoscience
June 26, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/232312
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