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首页> 外文期刊>Journal of the European Ceramic Society >Fabrication of carbon fiber reinforced ceramic matrix composites with improved oxidation resistance using boron as active filler
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Fabrication of carbon fiber reinforced ceramic matrix composites with improved oxidation resistance using boron as active filler

机译:以硼为活性填料制备具有改善的抗氧化性的碳纤维增强陶瓷基复合材料

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摘要

Boron was introduced into C_f/SiC composites as active filler to shorten the processing time of PIP process and improve the oxidation resistance of composites. When heat-treated at 1800 °C inN_2 for 1 h, the density of composites with boron (C_f/SiC-BN) increased from 1.71 to 1.78 g/cm3, while that of composites without boron (C_f/SiC) decreased from 1.92 to 1.77 g/cm~3. So when boron was used, two cycles of polymer impregnation and pyrolysis (PIP) could be reduced. Meanwhile, the oxidation resistance of composites was greatly improved with the incorporation of boron-bearing species. Most carbon fiber reinforcements in Cf/SiC composite were burnt off when they were oxidized at 800 °C for 10 h. By contrast, only a small amount of carbon fibers in Cf/SiC-BN composite were burnt off. Weight losses for Cf/SiC composite and Cf/SiC-BN composite were about 36 and 16 wt%, respectively.
机译:硼作为活性填料引入C_f / SiC复合材料中,以缩短PIP工艺的加工时间,提高复合材料的抗氧化性。在1800°C的N_2中热处理1 h后,含硼复合材料(C_f / SiC-BN)的密度从1.71增加到1.78 g / cm3,而不含硼复合材料(C_f / SiC-B)的密度从1.92下降到1.92 g / cm3。 1.77克/厘米〜3。因此,当使用硼时,可以减少聚合物浸渍和热解(PIP)的两个循环。同时,掺入含硼物质大大提高了复合材料的抗氧化性。 Cf / SiC复合材料中的大多数碳纤维增强材料在800°C氧化10小时后就被烧掉。相比之下,Cf / SiC-BN复合材料中仅燃烧了少量碳纤维。 Cf / SiC复合材料和Cf / SiC-BN复合材料的重量损失分别约为36和16 wt%。

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