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Self- healing of interfacial de-bonding in fibre reinforced polymers
Domestic and foreign trends in the development of FRP with self-healing properties have been outlined and theoretical and experimental studies aimed at developing FRP that autonomically repairs interfacial debonding have been reviewed. FRPs have a heterogenous internal structure and exhibit complex fracture behaviour; compared with non-composite polymer materials, therefore, a highly expressed self-healing effect is difficult to achieve. However, many techniques have been proposed that exploit the merits of composites whereby materials can be freely designed to impart self-healing functions, and practical application is at an advanced stage of development. We can expect that FRP will be used even more widely in future; more stringent requirements will be placed on reliability and endurance, and consideration of environmental burden will be essential, making FRPs with self-healing properties indispensable.
Self- healing of interfacial de-bonding in fibre reinforced polymers
Domestic and foreign trends in the development of FRP with self-healing properties have been outlined and theoretical and experimental studies aimed at developing FRP that autonomically repairs interfacial debonding have been reviewed. FRPs have a heterogenous internal structure and exhibit complex fracture behaviour; compared with non-composite polymer materials, therefore, a highly expressed self-healing effect is difficult to achieve. However, many techniques have been proposed that exploit the merits of composites whereby materials can be freely designed to impart self-healing functions, and practical application is at an advanced stage of development. We can expect that FRP will be used even more widely in future; more stringent requirements will be placed on reliability and endurance, and consideration of environmental burden will be essential, making FRPs with self-healing properties indispensable.
Self- healing of interfacial de-bonding in fibre reinforced polymers
Sanada, K. (author)
International Polymer Science and Technology ; 40 ; T/45-T/50
2013
6 Seiten, 11 Bilder, 17 Quellen
Article (Journal)
English
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