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Chemistry and kinetics of chemical vapor infiltration of pyrocarbon-V.Infiltration of carbon fiber felt

机译:焦碳-V化学气相渗透的化学和动力学。碳纤维毡的渗透

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The paper is concened with the chemical vapor infiltration of a carbon fiber felt, 2 cm in thickness, exhibiting a porousity of 88%. The studies were performed at a temperature of 1100 deg C using pure methane at a total pressure of 20 kPa (felt III) and a methane/hydrogen mixture of P_CH_4/P_H_2=7:1 at total pressures of 20 and 30 kPa (felt I and II, respectively). The infiltrations were finshed after 4 days (felt II), 5 days (felt III), and 6 days (felt ). After infiltration the total, open and closed porosities were determined s: 14.53/10.83/3.71% (felt I); 19.02/10.83/8.64% (felt II); 19.87/13.81/6.06% (felt III). Deposition at the external surface occurred only in the case of felt III.Thus, further infiltration of felt I and II should lead to decreased porosities, in the case of felt I to less than 10% total porosity. The results are shown to agree with earlier results obtained with a porous alumina ceramic showing an initial porousity of only 23%.
机译:该纸被厚度为2 cm的碳纤维毡的化学气相渗透所致,表现出88%的孔隙率。研究是在1100摄氏度的温度下使用纯甲烷在20 kPa的总压力下进行的(毡III),以及甲烷/氢气混合物P_CH_4 / P_H_2 = 7:1的总压力在20和30 kPa的条件下(毡I和II)。在第4天(感觉II),5天(感觉III)和6天(感觉)之后完成渗透。渗透后,确定总的,开放的和封闭的孔隙度为:14.53 / 10.83 / 3.71%(毛毡I); 19.02 / 10.83 / 8.64%(感觉II); 19.87 / 13.81 / 6.06%(感觉III)。仅在毛毡III的情况下才在外表面沉积,因此,毛毡I和II的进一步渗透应导致孔隙率降低,在毛毡I的情况下总孔隙率小于10%。结果表明,该结果与使用多孔氧化铝陶瓷获得的早期结果一致,该多孔氧化铝陶瓷的初始孔隙率仅为23%。

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