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One-Step Densification of Carbon/Carbon Composites Impregnated with Pyrolysis Fuel Oil-Derived Mesophase Binder Pitches

机译:碳/碳复合材料浸渍热解燃料油衍生的中间相粘合剂沥青的一步致密化

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摘要

Carbon/carbon (C/C) composites are conventionally manufactured by liquid-phase impregnation (LPI), in which the binder pitches and phenolic resins are impregnated into the composites, and by chemical vapor infiltration (CVI). However, CVI has certain limitations in that expensive gases, such as methane and propane, are used and a long reaction time is required. Therefore, LPI is more widely used, as it employs economical pitches. In this study, the effects of one-step preparation on mechanical properties of C/C composites impregnated with mesophase binder pitches and phenolic resins have been investigated. The C/C composites containing four types of 20 wt.% mesophase binder pitches had differences in softening point (SP) and quinoline insoluble (QI) contents. After conducting trials on mesophase formation using different heat treatment temperatures and times, the best density and mechanical properties of the C/C composites were achieved using the mesophase binder pitches with 170 °C SP. However, when SP 200 °C was used, the density of the C/C composites was not further improved. This is because the binder pitches were not properly impregnated into the composites due to the high viscosity and QI of the binder pitches. Furthermore, the C/C composites fabricated with 20 wt.% pitch 2 exhibited the highest mechanical properties.
机译:碳/碳(C / C)复合材料通常是通过液相浸渍(LPI)制造的,其中粘合剂沥青和酚醛树脂浸渍到复合材料中,并通过化学蒸汽浸润(CVI)。然而,CVI在使用诸如甲烷和丙烷的昂贵气体中具有一定的限制,并且需要长反应时间。因此,LPI更广泛地使用,因为它采用经济的音高。在该研究中,已经研究了一步进行单步制剂对浸渍中间体粘合剂沥青和酚醛树脂的C / C复合材料的机械性能的影响。含有四种类型的20重量%的C / C复合材料。%中间相粘合剂沥青具有软化点(SP)和喹啉不溶性(QI)含量的差异。在使用不同的热处理温度和时间对中间相形成进行试验后,使用具有170℃的中间体粘合剂沥青来实现C / C复合材料的最佳密度和机械性能。然而,当使用SP 200℃时,C / C复合材料的密度没有进一步提高。这是因为由于粘合剂沥青的高粘度和Qi,粘合剂俯仰未被正确浸渍到复合材料中。此外,用20重量%的C / C复合材料制备。%间距2表现出最高的机械性能。

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