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Effect of PyC coating on mechanical properties of C-f/AZ91D composites

机译:PYC涂层对C-F / AZ91D复合材料力学性能的影响

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The microstructure of high strength PAN-based T700 carbon fibre (C-f) with pyrolytic carbon (PyC) coating was characterised. Effects of PyC coating on the surface of carbon fibres, interface characteristics, and mechanical properties of C-f/AZ91D composites were evaluated. The results showed that the carbon fibres with PyC coating had higher surface roughness and higher graphitisation which were beneficial to ease hazardous interface reaction. C-f-PyC/AZ91D composites with an optimal PyC coating that is about 150nm thick and has low texture exhibited ultimate tensile strength of 416MPa, which demonstrated 35% improvement compared with the C-f/AZ91D composites. The increase of mechanical properties of C-f-PyC/AZ91D composites could be ascribed to a synergistic effect of the rough C-f surface interlocking, an optimum interfacial bonding between fibres and matrix, and protection of fibres from a corrosive attack of the aluminium element in the matrix.
机译:具有热解碳(PYC)涂层的高强度泛基T700碳纤维(C-F)的微观结构。 评价Pyc涂层对C-F / AZ91D复合材料的碳纤维,界面特性和力学性能的影响。 结果表明,碳纤维具有较高的表面粗糙度和较高的石灰质,有利于缓解危险界面反应。 C-F-PYC / AZ91D复合材料,具有约150nm厚的最佳PYC涂层,具有较低的质地表现出416MPa的最终拉伸强度,与C-F / AZ91D复合材料相比,展现了35%的改善。 CF-PYC / AZ91D复合材料的力学性能的增加可以归因于粗糙的CF表面互锁的协同效应,纤维和基质之间的最佳界面键合,以及保护纤维免受基质中铝元件的腐蚀性攻击 。

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