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Influence of fibre–matrix interface on the fracture behaviour of carbon-carbon composites

机译:纤维-基体界面对碳-碳复合材料断裂行为的影响

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摘要

This paper studies the fracture behaviour of unidirectional carbon fibre reinforced carbon matrix composites and its relation with the type of fibre–matrix interface developed in the composite. Model unidirectional carbon–carbon composites were prepared using the same type of fibre and different pitches as matrix precursors. These included both commercial pitches and synthesized in the laboratory ones. The chemical composition of the matrix precursor determined the type of microstructure developed in the composite, this microstructure seems to govern the fibre-matrix bonding and in turn controls the fracture behaviour of the composite. In general, a matrix texture of mosaic (small size) seems to yield a good fibre-matrix bonding, making the materials to have higher interlaminar shear strength but having at the same time brittle fracture behaviour. On the other hand, composites where larger textures were developed in the matrix seem to have a poorer fibre-matrix bonding. This made the composites to have lower strength, but it allowed debonding of fibre and matrix during fracture. As a result, these materials showed pseudo-plastic failure behaviour. Other examples of both types of fracture behaviour associated with the change in microstructure and fibre–matrix interface are discussed.
机译:本文研究了单向碳纤维增强碳基复合材料的断裂行为及其与复合材料中纤维-基体界面类型的关系。使用与基质前体相同类型的纤维和不同的沥青,制备了模型单向碳-碳复合材料。这些包括商业沥青和实验室合成沥青。基质前体的化学成分决定了复合材料中形成的微结构的类型,这种微结构似乎控制着纤维-基体的结合,进而控制了复合材料的断裂行为。通常,马赛克的基体纹理(小尺寸)似乎可以产生良好的纤维-基体粘结,使材料具有更高的层间剪切强度,但同时具有脆性断裂行为。另一方面,在基质中形成较大织构的复合材料似乎具有较差的纤维-基质粘合性。这使复合材料具有较低的强度,但在断裂过程中却允许纤维和基体脱粘。结果,这些材料表现出假塑性破坏行为。讨论了与微观结构和纤维-基体界面变化有关的两种断裂行为的其他例子。

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