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The effect of fibre-matarix interactions on structure and property changes during the fabrication of undirectional carbon/carbon composites

机译:纤维-基体相互作用对单向碳/碳复合材料制造过程中结构和性能变化的影响

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This paper reports the systematic characterisation of changes in the structure and properties of a series of unidirectional carbon-carbon composites at key stages of processing. The composites were fabricated from PAN-based carbon fibres (surface treated and untreated) and two carbon matrix systems (graphitising and non-graphitising). The effects of matrix shrinkage, together with thermal expansion mismatch and interfacial bonding, established the composite structure and hence the composite properties. The morphology and interconnectivity of the shrinkage cracks, the strength and nature of the fibre-matrix interfacial interaction and the development of matrix texture were identified as key structural features. These features were characterised and their effect on subsequent processing stages (densification) and composite properties was determined.
机译:本文报道了在加工的关键阶段一系列单向碳-碳复合材料的结构和性能变化的系统表征。该复合材料由PAN基碳纤维(经表面处理和未经处理)和两种碳基质体系(石墨化和非石墨化)制成。基体收缩以及热膨胀失配和界面结合的影响建立了复合材料的结构,从而确立了复合材料的性能。收缩裂纹的形态和相互关系,纤维-基体界面相互作用的强度和性质以及基体织构的发展被确定为关键的结构特征。表征了这些特征,并确定了它们对后续加工阶段(致密化)和复合材料性能的影响。

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