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- W1990286175 abstract "When the phenolic CFRP is heated in a nitrogen gas atmosphere, the phenolic resin is pyrolyzed and the gas containing oxygen is generated. This generated oxygen oxidized the phenolic CFRP. The oxidation of carbonized phenolic CFRP in the nitrogen gas atmosphere was found to be divided into the rate-controlled oxidation region and the diffusion-controlled oxidation region. The boundary temperature was approximately 1600K. The activation-energy E, collision-frequency coefficient ko, and diffusion-controlled oxidation constant Co were determined. They were used for estimating the surface mass loss rate of the carbonized phenolic CFRP in the rate-controlled oxidation region and the diffusion-controlled oxidation region. The activation energy E was estimated to be 182.4kJ/mol, and the ko was expressed as ko=10.0/ (τPe) 0.5, where Pe is the stagnation pressure measured at the specimen surface. C0 could be expressed as a function of the reaction rate I by C0=1.3×10-5ln (τ) +3.3×10-5." @default.
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- W1990286175 date "2004-01-01" @default.
- W1990286175 modified "2023-10-05" @default.
- W1990286175 title "Surface mass loss characteristics of carbonized phenolic CFRP in nitrogen gas atmosphere" @default.
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- W1990286175 doi "https://doi.org/10.7209/tanso.2004.184" @default.
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