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Modeling studies on the effects of the process parameters in forced-flow chemical vapor infiltration reactor for the preparation of CYC composites

机译:工艺参数对强制流动化学气相渗透反应器制备CYC复合材料影响的建模研究

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The mathematical modeling for the preparation of C/C composites from propane by F-CVI (Forced-flow chemical vapor infiltration) was studied. Experimental data were fitted with the modeling calculations and an adjusted reaction rate constant was obtained. Effects of many operation parameters such as temperature, the inlet concentration of propane, flow rate, and the initial porosity were observed. The decrease of the deposition rate due to the decrease of porosity and the depletion of propane in the middle of the preform was compensated with the increase of the lateral surface area of fibers. It was confirmed that a slow reaction rate with a low temperature and a low concentration is necessary for a uniform infiltration. As the gas flow rate and the initial porosity increase, the amount of deposition increases.
机译:研究了用F-CVI(强制流化学气相渗透)从丙烷制备C / C复合材料的数学模型。实验数据与模型计算相符,并获得了调整后的反应速率常数。观察到许多操作参数的影响,例如温度,丙烷入口浓度,流速和初始孔隙率。由于孔隙率的降低和丙烷中间层丙烷的减少而导致的沉积速率的降低,可以通过增加纤维横向表面积来弥补。已经证实,低温和低浓度的缓慢反应速率对于均匀渗透是必需的。随着气体流速和初始孔隙率的增加,沉积量增加。

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