首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >EFFECT OF MATRIX TEXTURE ON TENSILE STRENGTH AND OXIDATION BEHAVIOR OF CARBON FIBER REINFORCED CARBON COMPOSITES
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EFFECT OF MATRIX TEXTURE ON TENSILE STRENGTH AND OXIDATION BEHAVIOR OF CARBON FIBER REINFORCED CARBON COMPOSITES

机译:基质纹理对碳纤维增强碳复合材料拉伸强度和氧化行为的影响

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摘要

Unidirectional carbon fiber reinforced carbon composites (C-C composites) with different matrix textures were prepared from six matrix precursors. Two composites with an optically isotropic matrix showed tensile strength and modulus values that increased on heat treatment of the samples at a high temperature. Composites with an anisotropic matrix, having preferred orientation parallel to fiber surface, were deformed due to shrinkage as the graphitic structure developed on heat treatment. This caused the fibers to be exfoliated from the anisotropic matrix, as a result of residual stresses generated by restriction of matrix shrinkage. The strengths of the composites with an anisotropic matrix were reduced after graphitization. On oxidation in a wet atmosphere, the composites with an anisotropic matrix showed higher durability than those with isotropic matrices. The oxidation of the former composites was localized at the fiber-matrix interphase, but this effect was not observed with isotropic matrix composites. [References: 19]
机译:由六个基质前体制备了具有不同基质质地的单向碳纤维增强碳复合材料(C-C复合材料)。具有光学各向同性基体的两种复合材料的拉伸强度和模量值在高温下对样品进行热处理后会增加。具有优选平行于纤维表面取向的各向异性基体的复合材料由于收缩而变形,这是由于在热处理中形成的石墨结构所致。由于限制了基体的收缩而产生了残余应力,这导致纤维从各向异性基体上脱落。石墨化后,具有各向异性基体的复合材料的强度降低。在潮湿气氛中氧化时,具有各向异性基质的复合材料比具有各向同性基质的复合材料具有更高的耐久性。前一种复合材料的氧化作用局限于纤维-基体之间的相间,但各向同性基体复合材料未观察到这种作用。 [参考:19]

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