Study of the moisture/stress effects on glass fibre/epoxy composite and the impact of the interphase area
Author:
Publisher
Elsevier BV
Subject
Civil and Structural Engineering,Ceramics and Composites
Reference52 articles.
1. The nature of the glass fibre surface and its effect in the water absorption of glass fibre/epoxy composites. The use of fluorescence to obtain information at the interface;Olmos;Compos Sci Technol,2006
2. Study of the interfacial degradation of a glass–epoxy composite during hygrothermal ageing using water diffusion measurements and dynamic mechanical thermal analysis;Chateauminois;Polymer,1994
3. The effects of water aging on the interphase region and interlaminar fracture toughness in polymer–glass composites;Hodzic;Compos Sci Technol,2004
4. Interphase variation in silane-treated glass–fiber-reinforced epoxy composites;Griswold;J Adhes Sci Technol,2005
5. Composites formed by glass fibers and PS-modified epoxy matrix. Influence of the glass fibers surface on the morphologies and mechanical properties of the interphases generated;Olmos;Polym Compos,2010
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