Title of article :
Structural composites hybridized with epoxy compatible polymer/MWCNT nanofibrous interlayers
Author/Authors :
Ahmet K. Bilge، نويسنده , , E. Ozden-Yenigun، نويسنده , , E. Simsek، نويسنده , , Y.Z. Menceloglu، نويسنده , , M. Papila، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
7
From page :
1639
To page :
1645
Abstract :
Surface reactive P(St-co-GMA) copolymer and P(St-co-GMA)/MWCNT fibrous mats are placed onto a conventional carbon fiber/epoxy prepreg as interlayer reinforcing material. Experimental observations are used to demonstrate excellent epoxy wetting and structural compatibility of the interlayers chemically tuned for the epoxy matrix. Comparisons of increase in mechanical performance by incorporating P(St-co-GMA) and P(St-co-GMA)/MWCNT interlayers also show the contribution of MWCNT presence in the copolymer nanofibers. Flexural strength and stiffness of (0/0/0) and (90/0/90) laminates increase up to 17% when the nanocomposite interlayers are integrated. Cross-sectional SEM analyses of the failure surfaces suggest reinforcing ability of interlayers both against transverse cracking and delamination. Further examination for the delamination resistance is presented by the End Notched Flexure (ENF) tests. An improvement up to 70% in mode II strain energy release rate (GIIc) is recorded for the laminates with nanocomposite interlayers. The resistance against transverse matrix cracking in the presence of interlayers is also elaborated. Charpy-impact and transverse-tension tests result in up to 20% and 27% increase in the impact energy absorbance and transverse tensile strength, respectively. Overall, the test results suggest that mechanical behavior of the laminates is enhanced by the nanofibrous interlayers chemically-tuned for epoxy crosslinking, with no weight penalty.
Keywords :
Interlayer , A. Structural composites , E. Electro-spinning , B. Delamination , A. Nanocomposites
Journal title :
COMPOSITES SCIENCE AND TECHNOLOGY
Serial Year :
2012
Journal title :
COMPOSITES SCIENCE AND TECHNOLOGY
Record number :
1044092
Link To Document :
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