Characterization and role of an elastomeric interphase on carbon fibers reinforcing an epoxy matrix
- 1 May 1988
- journal article
- research article
- Published by Wiley in Polymer Engineering & Science
- Vol. 28 (9), 568-577
- https://doi.org/10.1002/pen.760280905
Abstract
Oxidized carbon fibers were coated using an on‐line filament winding process with an elastomeric adduct crosslinkable and compatible with an epoxy matrix. The coating and modifications of the epoxy network were studied by dynamic mechanical measurements. Assuming that apparent activation energies of the secondary relaxation βe of the epoxy network and main relaxation αa of adduct are very different, it is possible at low frequencies to separate the two peaks. The composite material can be described as a three phase system: an epoxy network as matrix, carbon fibers, and a soft interlayer. The mechanical behavior of unidirectional composite materials studied by impact and bending tests is strongly dependent on the presence and the thickness of the coating at the carbon fiber surface.This publication has 20 references indexed in Scilit:
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