Adhesion of Graphite Fibers to Epoxy Matrices: II. The Effect of Fiber Finish
Адгезия графитовых волокон к эпоксидным матрицам: II. Влияние покрытия волокна
1983-11-01
SCID: 54.1/29xhzg2t
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brittle interphase layerepoxy matricesfiber finishgraphite fibersinterfacial shear strength
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Abstract (AI)
Abstract Reinforcing fibers are available from various manufacturers with matrix compatible “finishes” applied to them. Usually these finishes or coatings are 100–200 nm thick resin layers applied after surface treatment. Their function has been hypothesized as being to enhance adhesion through either protecting the fiber from handling damage, protecting the fiber surface reactivity, or improving fiber wettability. This study of finished and unfinished graphite fibers concludes that the mechanism by which an epoxy compatible finish operates is different from what has been hypothesized to date. The finish layer creates a brittle interphase layer between the fiber and matrix which increases the interfacial shear strength but at the expense of changing the failure mode from interfacial to matrix.
Key Findings
1
Commercial 100–200 nm resin "finishes" are applied to graphite fibers after surface treatment and are intended to improve matrix compatibility.
2
Contrary to prior hypotheses, the epoxy-compatible finish does not primarily enhance adhesion by protecting fiber damage, preserving surface reactivity, or improving wettability.
3
The finish layer creates a brittle interphase between the graphite fiber and epoxy matrix.
4
The increased interfacial shear strength comes at the cost of changing the failure mode from interfacial failure to matrix failure.
5
This brittle interphase increases interfacial shear strength between fiber and matrix.
Research Object
Graphite (carbon) fibers with epoxy-compatible surface finish in epoxy matrix composites
Research Subject
Effect of the fiber finish on fiber–matrix adhesion: formation of a brittle interphase that increases interfacial shear strength while altering the failure mode from interfacial to matrix
Publication Details
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1983-11-01
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