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Influence of carbon nanotubes on thermal response and reaction to fire properties of carbon fibre-reinforced plastic material

机译:碳纳米管对碳纤维增强塑料材料热响应和反应的影响

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摘要

The influence of the carbon nanotube content on thermal response and reaction to fire properties of carbon fibre-reinforced plastics (CFRP) is investigated in detail. A CFRP material filled with 1.0 and 2.0wt.% carbon nanotubes within the epoxy matrix shows increasing thermal conductivities perpendicular to the fibre fabrics direction. Therefore, laminate panels containing an increasing amount of carbon nanotubes exhibit lower temperature and internal stress gradients, and, for this reason, a less pronounced tendency to form delaminations during a one-sided thermal load. In a temperature range where rapid matrix degradation takes place, smaller damages are observed by ultrasonic analysis, and higher interlaminar shear strengths are retained. Backside temperatures rise with increasing amounts of carbon nanotubes, resulting in a more thermally degraded polymer matrix, as recorded by infrared spectroscopy at the backside. By adding carbon nanotubes into the matrix, ignition is retarded, the peak heat release rate is reduced and a more steadily combustion is achieved when the reaction to fire properties are investigated by cone calorimetry. Correlations between matrix degradation, recorded by infrared spectroscopy, and temperature, as well as residual strength, provide a reliable tool for non-destructive testing.
机译:详细研究了碳纳米管含量对碳纤维增强塑料(CFRP)热响应和对火灾性的反应的影响。填充1.0和2.0wt的CFRP材料。环氧基质内的%碳纳米管显示出垂直于纤维织物方向的热导体增加。因此,含有增加量的碳纳米管的层压板表现出较低的温度和内应力梯度,并且因此,原因是在单面热负荷期间形成分层的不太明显的趋势。在发生快速基质劣化的温度范围内,通过超声波分析观察到较小的损坏,并且保留更高的层间剪切强度。背面温度随着碳纳米管的增加而上升,导致更热降解的聚合物基质,如背面的红外光谱记录。通过将碳纳米管添加到基质中,延迟点火,降低峰值热释放速率,并且当通过锥形量热法研究对火质的反应时,实现更稳定的燃烧。通过红外光谱记录的矩阵劣化之间的相关性,以及温度,以及剩余强度,为非破坏性测试提供可靠的工具。

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