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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >THE SIGNIFICANCE OF THE FIBRE COATING IN THE PRODUCTION OF CARBON FIBRE-REINFORCED CARBONS FROM HT CARBON FIBRES AND PHENOLIC RESIN AS MATRIX PRECURSOR .2. PHENOLIC RESIN COATINGS
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THE SIGNIFICANCE OF THE FIBRE COATING IN THE PRODUCTION OF CARBON FIBRE-REINFORCED CARBONS FROM HT CARBON FIBRES AND PHENOLIC RESIN AS MATRIX PRECURSOR .2. PHENOLIC RESIN COATINGS

机译:纤维涂层在以HT碳纤维和酚醛树脂为基质前驱体生产碳纤维增强碳中的意义。2。酚醛树脂涂料

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Commercially surface-treated HT carbon fibres were coated with phenolic resin in order to reduce the adhesion of the phenolic resin matrix to the fibre surface. Unidirectional (UD) composites were fabricated using uncoated and coated fibres and a standard phenolic resin as matrix; the fibre volume fraction of the green composites was 60 vol%. The composites were carbonized at 1000 degrees C and treated at 2100 degrees C. The effect of the coating was examined by measuring mechanical properties and analyzing failure modes after curing, carbonization, and treatment at graphitization temperatures. The effectiveness of a phenolic resin coating of optimum thickness was demonstrated by the flexural strength after each processing step (values obtained without the coating are given in parentheses): after curing 2300 MPa (1000 MPa); after carbonization 400 MPa (260 MPa), after graphitization treatment 800 MPa (575 MPa). [References: 3]
机译:为了减少酚醛树脂基体对纤维表面的粘附力,将商品表面处理过的HT碳纤维涂上酚醛树脂。单向(UD)复合材料是使用未涂覆和涂覆的纤维以及标准酚醛树脂为基质制造的;未加工的复合材料的纤维体积分数为60体积%。将复合材料在1000摄氏度下碳化,并在2100摄氏度下进行处理。通过测量机械性能并分析固化,碳化和在石墨化温度下处理后的破坏模式,可以检查涂层的效果。最佳厚度的酚醛树脂涂料的有效性通过每个加工步骤后的抗弯强度证明(不加涂料时获得的值在括号中给出):固化后为2300 MPa(1000 MPa);碳化后为400 MPa(260 MPa),石墨化后为800 MPa(575 MPa)。 [参考:3]

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