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Improvement of Interface Interaction and Conductive Anodic Filament Resistance Through Amphiphilic Oligomeric Silane
writer:Huihuang Su, Xinhui Zhong,Guozhu Zhan,Yingfeng Yu*, Wenjun Gan
keywords:interfaces, thermosets, composites,ageing
source:期刊
specific source:Journal of Applied Polymer Science, Vol. 122, 2317–2324 (2011)
Issue time:2011年

     In this article, an amphiphilic oligomeric silane was synthesized as a coupling agent to improve the interface bonding between resin matrix and glass fiber. The effect of the oligomeric silane coupling agent on the interface of glass fiber/epoxy resin was studied by contact angle measurement, gravimetric measurements of water sorption, scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), and conductive anodic filament resistance test. With the addition of the oligomeric silane to the composites, the contact angle between epoxy resin and glass fiber decrease notably. Normalized water sorption by gravimetric measurements showed that the interfacial debonding time of composites with the oligomeric silane can be prolonged significantly. Conductive anodic filament (CAF) tests were also consistent with the water sorption results, which suggest that the gravimetric measurement of water sorption is a cost-effective method to assess the CAF resistance of materials.