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Highly efficient densification of carbon fiber-reinforced SiC-matrix composites by melting infiltration and pyrolysis using polycarbosilane

机译:碳纤维增强的SiC基质复合材料通过熔融渗透和聚碳硅烷热解的高效致密化

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Carbon fiber-reinforced SiC-matrix composites (Cf/SiC) were fabricated via a precursor infiltration and pyrolysis (PIP) process. A polycarbosilane (PCS) precursor was used, with a halogen element (iodine) for curing. The effects of high-temperature polycarbosilane infiltrate melting and iodine-based curing on the efficiency of the PIP process, as well as the physical characteristics of the fabricated Cf/SiC composites, were investigated. Highly dense Cf/SiC composites with strong fiber/matrix interfacial bonding were fabricated. By melting the infiltrate and using iodine-based preform curing, the ceramic yield of polycarbosilane increased drastically from 38 wt% to 82 wt%. This increase, which is due to pyrolysis, resulted in a low degree of shrinkage in the polycarbosilane-derived matrix. This shrinkage, in turn, increased the density of the Cf/SiC composites and improved the interfacial bonding between the matrix and fibers. As a result, the fabricated C_f/SiC composites exhibited a density of 1.75 g/cm3. This was much higher than the 0.38 g/cm3 density of bare carbon fiber preforms after 6 iterations of the PIP process.
机译:碳纤维增强的SiC基复合材料(Cf / SiC)是通过前体渗透和热解(PIP)工艺制造的。使用具有卤族元素(碘)的聚碳硅烷(PCS)前体进行固化。研究了高温聚碳硅烷渗透熔体和基于碘的固化对PIP工艺效率以及所制备的Cf / SiC复合材料的物理特性的影响。制备了具有强纤维/基体界面结合力的高密度Cf / SiC复合材料。通过熔化渗透物并使用基于碘的预成型件固化,聚碳硅烷的陶瓷产率从38 wt%急剧增加到82 wt%。由于热解导致的这种增加导致衍生自聚碳硅烷的基质的收缩率低。这种收缩反过来又增加了Cf / SiC复合材料的密度,并改善了基体与纤维之间的界面结合。结果,所制造的C_f / SiC复合材料显示出1.75g / cm 3的密度。这比经过6次PIP处理后的裸碳纤维预制棒的密度为0.38 g / cm3高得多。

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