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Textures of pyrolytic carbon formed in the chemical vapor infiltration of capillaries

机译:在毛细管的化学蒸气渗透中形成的热解碳的纹理

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摘要

Capillaries, 1.1 mm in diameter and 17.0 or 32.5 mm in length, were infiltrated at a temperature of 1100 deg C and methane pressures from 5 to 30 kPa. Layer thickness and carbon texture were determined at cross-sections of 2, 16 and 32 mm from the open end of the capillaries using polarized light microscopy. Average deposition rates, determined from layer thickness and infiltration time, as a function of methane pressure indicate a rate increase up to a saturation adsorption at pressures between 10 and 15 kPa (range 1) and a strong rate increase above these pressures (range 2). This result implies carbon formations based on the growth mechanism in range 1 and the nucleation mechanism in range 2. The carbon texture shows a maximum in range 1 and a minimum in the transition from range 1 to range 2 followed by a clear increase in range 2. The maximum in range 1 corresponds to the particle-filler model describing formation of various textures of carbon by the ratio of aromatic species to C_2 species. Increasing texture degrees in range 2 suggest that the nucleation mechanism may lead to high textured carbon provided that the residence time for intramolecular rearrangements of polycyclic aromatic hydrocarbons is sufficient.
机译:毛细管直径为1.1毫米,长度为17.0或32.5毫米,在1100°C的温度和5至30kPa的甲烷压力下浸润。使用偏振光显微镜在距毛细管开口端 2、16 和 32 mm 的横截面上测定层厚度和碳质地。由层厚度和渗透时间确定的平均沉积速率作为甲烷压力的函数表明,在10至15 kPa(范围1)的压力下,速率增加至饱和吸附,高于这些压力(范围2)的速率增加。这一结果表明,基于范围 1 的生长机制和范围 2 的成核机制的碳形成。碳纹理在范围 1 中显示最大值,在从范围 1 到范围 2 的过渡中显示最小值,然后在范围 2 中明显增加。范围 1 中的最大值对应于颗粒填充物模型,该模型通过芳香族物种与C_2物种的比率来描述各种碳质地的形成。在范围2中增加织构度表明,只要多环芳烃的分子内重排停留时间足够,成核机制可能导致高织构碳。

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