A dicyanate ester, namely, 2,2-bis-(4-cyanatophenyl)propane, and a bismaleimide, namely, 2,2-bis[4-(4-maleimido phenoxy)phenyl]propane, possessing closely resembling backbone structures, were cured together to derive bismaleimide-triazine network polymers of varying compositions. The blend manifeste
Curing behavior and thermal mechanical properties of cyanate ester blends
β Scribed by Henry C. Y. Koh; Jie Dai; Eileen Tan
- Publisher
- John Wiley and Sons
- Year
- 2006
- Tongue
- English
- Weight
- 286 KB
- Volume
- 102
- Category
- Article
- ISSN
- 0021-8995
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β¦ Synopsis
Abstract
Cyanate esters are a class of important thermally resistant polymers. To tailor their processability and thermomechanical properties, a series of cyanate ester blends based on a trifunctional novolac cyanate ester (HFβ5), a difunctional bisphenol E cyanate ester (HFβ9), and a reactive catalyst [2,2β²βdiallyl bisphenol A (DBA)] were formulated. The effect of the blend composition on the rheology and curing behavior of these cyanate ester blends and the corresponding thermal and mechanical properties of the cured cyanate ester blends was studied. The results showed that HFβ5 contributed to good mechanical property retention at high temperatures because of its trifunctionality, whereas HFβ9 imparted processability by reducing the viscosity and extending the pot life of the formulated cyanate ester blends at the processing temperature. On the basis of the results, an optimal cyanate ester blend suitable for resin transfer molding was determined: the HFβ5/HFβ9/DBA weight ratio of 80 : 15 : 5 exhibited good processability and thermomechanical properties. Β© 2006 Wiley Periodicals, Inc. J Appl Polym Sci 102: 4284β4290, 2006
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