The dynamic-mechanical characterization and fracture resistance of composites, prepared by using a liquid crystalline epoxy resin and continuous carbon fibers, are presented and compared with conventional composites. In the case of the LC matrix, a higher Tg was found; similarly, a superior fracture resistance, higher elastic modulus and higher Tg were found for the LC-based composites. These results allow to consider these materials as potential candidates for advanced composites.

Composites based on carbon fibers and liquid crystalline epoxy resins, 2: Dynamic-mechanical analysis and fracture toughness behavior / Carfagna, Cosimo; G., Meo; L., Nicolais; M., Giamberini; A., Priola; G., Malucelli. - In: MACROMOLECULAR CHEMISTRY AND PHYSICS. - ISSN 1022-1352. - 201:(2000), pp. 2639-2645.

Composites based on carbon fibers and liquid crystalline epoxy resins, 2: Dynamic-mechanical analysis and fracture toughness behavior

CARFAGNA, COSIMO;
2000

Abstract

The dynamic-mechanical characterization and fracture resistance of composites, prepared by using a liquid crystalline epoxy resin and continuous carbon fibers, are presented and compared with conventional composites. In the case of the LC matrix, a higher Tg was found; similarly, a superior fracture resistance, higher elastic modulus and higher Tg were found for the LC-based composites. These results allow to consider these materials as potential candidates for advanced composites.
2000
Composites based on carbon fibers and liquid crystalline epoxy resins, 2: Dynamic-mechanical analysis and fracture toughness behavior / Carfagna, Cosimo; G., Meo; L., Nicolais; M., Giamberini; A., Priola; G., Malucelli. - In: MACROMOLECULAR CHEMISTRY AND PHYSICS. - ISSN 1022-1352. - 201:(2000), pp. 2639-2645.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/568500
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