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Densification mechanism of chemical vapor infiltration technology for carbon/carbon composites

机译:碳/碳复合材料化学气相渗透技术的致密化机理

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Carbon/carbon composites were fabricated using pressure-gradient chemical vapor infiltration(CVI) technology with propane (C3H6) as the carbon precursor gas and nitrogen (N2) as the carrier gas. The chemical process of deposition of pyrolytic carbon was deduced by analyzing the component of molecules in gas phase and observing the microstructure of deposition carbon. The results show that the process of deposition starts from the breakdown of C-C single bond of propene (C3H6), and forms two kinds of active groups in the heterogeneous gas phase reaction. Afterwards, these active groups form many stable bigger molecules and deposit on carbon fiber surface. At the same time, hydrogen atoms of the bigger molecules absorbed on carbon fiber surface are eliminated and the solid pyrolytic carbon matrix is formed in the heterogeneous reaction process.
机译:使用具有丙烷(C3H6)的压力梯度化学蒸气渗透(CVI)技术制造碳/碳复合材料作为碳前体气体和氮气(N2)作为载气。通过分析气相中分子的组分并观察沉积碳的微观结构来推导热解碳的化学过程。结果表明,沉积方法从丙烯(C3H6)的C-C单键的击穿开始,并在异质气相反应中形成两种活性基团。然后,这些活性组形成许多稳定的更大分子并沉积在碳纤维表面上。同时,消除了在碳纤维表面上吸收的更大分子的氢原子,并且在非均相反应过程中形成固体热解碳基质。

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