首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Densification behavior and microstructure of carbon/carbon composites prepared by chemical vapor infiltration from xylene at temperatures between 900 and 1250 °C
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Densification behavior and microstructure of carbon/carbon composites prepared by chemical vapor infiltration from xylene at temperatures between 900 and 1250 °C

机译:在900至1250°C之间由二甲苯化学气相渗透制得的碳/碳复合材料的致密化行为和微观结构

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摘要

Carbon/carbon composites were prepared by film boiling chemical vapor infiltration from xylene pyrolysis. Their densification behaviors such as the mass gain, the deposition rate and the density profile were investigated. The microstructure was studied by polarized light microscopy and characterized quantitatively with average extinction angle (Ae). Results showed that, under the particular experimental equipment and process, the initial deposition rate and the average Ae of pyrocarbon (PyC) increased with the increasing deposition temperature (T_d). The structural transition of PyC from rough laminar (RL) to smooth laminar along both the axial and radial directions of the composites was retarded as T_d increased from 900 to 1100 °C; PyC was deposited by the heterogeneous nucleation and growth. The homogeneous nucleation was generated producing isotropic PyC at the bottom of the composites for 1200-1250 °C deposition. The matrix produced at 1100-1250 °C was dominated by RL PyC, and the composites with high average density and uniform RL matrix were rapidly produced for T_d around 1100 °C.
机译:碳/碳复合材料是通过二甲苯热解的薄膜沸腾化学气相渗透法制备的。研究了它们的致密行为,如质量增加,沉积速率和密度分布。通过偏光显微镜研究了显微结构,并用平均消光角(Ae)进行了定量表征。结果表明,在特定的实验设备和工艺下,初始沉积速率和热解碳的平均Ae随沉积温度(T_d)的升高而增加。随着T_d从900°C升高到1100°C,PyC沿复合材料的轴向和径向方向从粗糙层流(RL)过渡到光滑层流的结构转变受到阻碍; PyC通过异质形核和生长而沉积。产生了均匀的形核,在复合材料的底部产生了各向同性的PyC,以沉积1200至1250°C。 RL PyC在1100-1250°C时产生的基体占主导地位,在1100°C左右的T_d时,可以快速生产出具有高平均密度和均匀RL基体的复合材料。

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