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首页> 外文期刊>Chemical Engineering Science >Chemical vapor infiltration and deposition to produce a silicon carbide-carbon functionally gradient material
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Chemical vapor infiltration and deposition to produce a silicon carbide-carbon functionally gradient material

机译:化学气相渗透和沉积以生产碳化硅-碳功能梯度材料

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摘要

Functionally gradient material (FGM)that had a layer in which the chemical composition changed gradually from C to SiC between the C/C composite and the surface SiC layer was prepared.The 3D-woven carbon fiber preform was solidified partially by liquid-phase impregnation with a resol-type cresol resin.The preform was further solidified by thermal-gradient chemical vapor infiltration of carbon from propane. A consistent compositionally gradient protective layer was prepared by chemical vapor infiltration of carbon from propane. A consistent compositionally gradient protective layer was prepared by cehmical vapor deposition by changing the reactant mixture composition gradually from propane to dimethyldichlorosilane.Thus an FGM with a continuous composition distribution was obtained.No thermal cracks were observed and the compositionally gradient layer remained adhesive to the base composite following repeated rapid cooling tests from 1000 to 0#degC#.
机译:制备在C / C复合材料和表面SiC层之间具有化学成分从C逐渐变为SiC的层的功能梯度材料(FGM).3D编织碳纤维预成型件通过液相浸渍部分固化预成型坯通过丙烷中碳的热梯度化学气相渗透进一步固化。通过从丙烷化学气相渗透碳来制备一致的组成梯度保护层。通过将反应物混合物的组成从丙烷逐渐改变为二甲基二氯硅烷,通过化学气相沉积法制备出一致的组成梯度保护层,从而获得了具有连续组成分布的FGM,未观察到热裂纹,并且组成梯度层仍然与基体粘合反复进行从1000至0#C#的快速冷却测试。

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