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Fire resistant cyanate ester-epoxy blends
The cure chemistry, thermal stability, and fire behavior of a series of fire resistant cyanate esterepoxy blends were examined. The dicyanate and diepoxide of 1,1-dichloro-2,2-bis(4-hydroxyphenyl)ethylene (bisphenol-C, BPC) were combined in various molar ratios and the reaction chemistry was monitored using FT-IR and DSC. Fire behavior of the BPC cyanateepoxy blends was studied in flaming and nonfiaming combustion using fire calorimetry and pyrolysis-combustion flow calorimetry, respectively.
Fire resistant cyanate ester-epoxy blends
The cure chemistry, thermal stability, and fire behavior of a series of fire resistant cyanate esterepoxy blends were examined. The dicyanate and diepoxide of 1,1-dichloro-2,2-bis(4-hydroxyphenyl)ethylene (bisphenol-C, BPC) were combined in various molar ratios and the reaction chemistry was monitored using FT-IR and DSC. Fire behavior of the BPC cyanateepoxy blends was studied in flaming and nonfiaming combustion using fire calorimetry and pyrolysis-combustion flow calorimetry, respectively.
Fire resistant cyanate ester-epoxy blends
Walters, R.N. (author)
2001
12 Seiten, 29 Quellen
Conference paper
English
Epoxidharz , Ester , Schwerentflammbarkeit , Aushärten (Polymer) , Entflammbarkeitsprüfung , Verbrennung (Oxidation) , Pyrolyse , Differenzialrasterkalorimetrie , Thermoanalyse , Fourier-Transform-Infrarotspektroskopie , organische Verbindung , Polymermischung , Kalorimetrie , thermodynamische Stabilität
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