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首页> 外文期刊>Journal of the European Ceramic Society >Mechanical behaviour of the constituents inside carbon-fibre/carbon-silicon carbide composites characterised by nano-indentation
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Mechanical behaviour of the constituents inside carbon-fibre/carbon-silicon carbide composites characterised by nano-indentation

机译:以纳米压痕为特征的碳纤维/碳-碳化硅复合材料内部成分的机械行为

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摘要

The Young's modulus, hardness, fracture toughness and ductility of the key constituents were characterised using nano-indentation for three types of carbon-fibre/carbon silicon carbide composite manufactured through different routes and/or using different carbonaceous raw materials. Under indentation, all of the carbon constituents demonstrated much less ductile deformation than the silicon carbide and silicon did in these composites. Between two types of PAN-based carbon fibre, as well as of pyrolytic carbon, a difference of around a factor of two was evident in the Young's modulus and hardness. For the silicon carbide, a difference of around 100 GPa and 5 GPa was recorded for the mean Young's modulus and hardness respectively;;for silicon, only a small variation was evident. The estimated mean fracture toughness of the silicon carbide ranged between 0.7 and 1.2MPa.m~(1/2), whilst the silicon was approximately 0.6MPa.m~(1/2). Results for the constituents were discussed in terms of their elastic/plastic behaviour.
机译:使用纳米压痕表征了关键成分的杨氏模量,硬度,断裂韧性和延展性,这些压痕是通过不同途径和/或使用不同含碳原料生产的三种类型的碳纤维/碳碳化硅复合材料的。在压痕下,所有碳成分的延展性变形都比这些复合材料中的碳化硅和硅小得多。在两种类型的PAN基碳纤维以及热解碳之间,杨氏模量和硬度之间的差异约为2倍。对于碳化硅,平均杨氏模量和硬度分别记录了约100 GPa和5 GPa的差异;对于硅而言,只有很小的变化是明显的。估计的碳化硅的平均断裂韧性在0.7和1.2MPa.m〜(1/2)之间,而硅大约为0.6MPa.m〜(1/2)。就成分的弹性/塑性行为进行了讨论。

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