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Tensile properties of carbon fibres and carbon fibre-polymer composites in fire

机译:火灾中碳纤维和碳纤维聚合物复合材料的拉伸性能

摘要

The effect of fire on the tensile properties of carbon fibres is experimentally determined to provide new insights into the tensile performance of carbon fibre-polymer composite materials during fire. Structural tests on carbon-epoxy laminate reveal that thermally-activated weakening of the fibre reinforcement is the dominant softening process which leads to failure in the event of a fire. This process is experimentally investigated by determining the reduction to the tensile properties and identifying the softening mechanism of T700 carbon fibre following exposure to simulated fires of different temperatures (up to 700 degrees C) and atmospheres (air and inert). The fibre modulus decreases with increasing temperature (above similar to 500 degrees C) in air, which is attributed to oxidation of the higher stiffness layer in the near-surface fibre region. The fibre modulus is not affected when heated in an inert (nitrogen) atmosphere due to the absence of surface oxidation, revealing that the stiffness loss of carbon fibre composites in fire is sensitive to the oxygen content. The tensile strength of carbon fibre is reduced by nearly 50% following exposure to temperatures over the range 400-700 degrees C in an air or inert atmosphere. Unlike the fibre modulus, the reduction in fibre strength is insensitive to the oxygen content of the atmosphere during fire. The reduction in strength is possibly attributable to very small (under similar to 100 nm) flaws and removal of the sizing caused by high temperature exposure.
机译:实验确定了火对碳纤维拉伸性能的影响,从而为碳纤维-聚合物复合材料在火过程中的拉伸性能提供了新的见解。对碳-环氧层压板的结构测试表明,纤维增强材料的热活化弱化是主要的软化过程,在发生火灾时会导致失败。通过确定拉伸性能的降低并确定T700碳纤维在暴露于不同温度(最高700摄氏度)和大气(空气和惰性)的模拟火焰后的软化机理,进行了实验研究。纤维模量随空气中温度升高(高于500摄氏度)而降低,这归因于近表面纤维区域中较高硬度的层的氧化。由于没有表面氧化,因此在惰性(氮气)气氛中加热时,纤维模量不会受到影响,这表明碳纤维复合材料在火中的刚度损失对氧含量敏感。在空气或惰性气氛中暴露于400-700摄氏度范围内的温度后,碳纤维的拉伸强度降低了近50%。与纤维模量不同,纤维强度的降低对火灾期间大气中的氧气含量不敏感。强度降低可能归因于很小的缺陷(在类似于100 nm的情况下),并且由于高温暴露而去除了胶料。

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    Feih S; Mouritz A;

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  • 年度 2012
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