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Thermal Protection of Carbon Fiber-Reinforced Composites by Ceramic Particles

机译:陶瓷颗粒对碳纤维增强复合材料的热保护

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The thermal barrier efficiency of two types of ceramic particle, glass flakes and aluminum titanate, dispersed on the surface of carbon-fiber epoxy composites, has been evaluated using a cone calorimeter at 35 and 50 kW/m 2 , in addition to temperature gradients through the samples’ thicknesses, measured by inserting thermocouples on the exposed and back surfaces during the cone tests. Two techniques of dispersing ceramic particles on the surface have been employed, one where particles were dispersed on semi-cured laminate and the other where their dispersion in a phenolic resin was applied on the laminate surface, using the same method as used previously for glass fiber composites. The morphology and durability of the coatings to water absorption, peeling, impact and flexural tension were also studied and compared with those previously reported for glass-fiber epoxy composites. With both methods, uniform coatings could be achieved, which were durable to peeling or water absorption with a minimal adverse effect on the mechanical properties of composites. While all these properties were comparable to those previously observed for glass fiber composites, the ceramic particles have seen to be more effective on this less flammable, carbon fiber composite substrate.
机译:除了通过温度梯度在35和50 kW / m 2之外,还使用锥形量热仪评估了分散在碳纤维环氧复合材料表面上的两种陶瓷颗粒(玻璃鳞片和钛酸铝)的热障效率。样品的厚度,是通过在锥体测试过程中在裸露的表面和背面插入热电偶来测量的。已经使用了两种将陶瓷颗粒分散在表面上的技术,一种将颗粒分散在半固化的层压板上,另一种使用与玻璃纤维相同的方法将其在酚醛树脂中的分散体施加到层压板表面上。复合材料。还研究了涂层对水吸收,剥离,冲击和弯曲张力的形态和耐久性,并将其与先前报道的玻璃纤维环氧复合材料进行了比较。通过这两种方法,都可以获得均匀的涂层,该涂层耐剥离或吸水,并且对复合材料的机械性能影响最小。尽管所有这些性能都可以与以前对玻璃纤维复合材料观察到的性能相媲美,但陶瓷颗粒在这种不易燃的碳纤维复合材料基材上更有效。

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