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Chemical Stability of the Fiber Coating/Matrix Interface in Silicon-Based Ceramic Matrix Composites

机译:硅基陶瓷基复合材料中纤维涂层/基体界面的化学稳定性

摘要

Carbon and boron nitride are used as fiber coatings in silicon-based composites. In order to assess the long-term stability of these materials, reactions of carbon/Si3N4 and BN/SiC were studied at high temperatures with Knudsen effusion, coupon tests, and microstructural examination. In the carbon/Si3N4 system, carbon reacted with Si3N4 to form gaseous N2 and SiC. The formation of SiC limited further reaction by physically separating the carbon and Si3N4. Consequently, the development of high p(N2) at the interface, predicted from thermochemical calculations, did not occur, thus limiting the potential deleterious effects of the reaction on the composite. Strong indications of a reaction between BN and SiC were shown by TEM and SIMS analysis of the BN/SiC interface. In long-term exposures, this reaction can lead to a depletion of a BN coating and/or an unfavorable change of the interfacial properties, limiting the beneficial effects of the coating.
机译:碳和氮化硼在硅基复合材料中用作纤维涂层。为了评估这些材料的长期稳定性,对碳/ Si3N4和BN / SiC的反应在高温下进行了Knudsen渗出,试样试验和显微结构检查。在碳/ Si3N4系统中,碳与Si3N4反应形成气态N2和SiC。 SiC的形成通过物理分离碳和Si3N4限制了进一步的反应。因此,没有发生由热化学计算预测的界面处高p(N2)的形成,从而限制了反应对复合材料的潜在有害作用。 BN / SiC界面的TEM和SIMS分析显示了BN与SiC之间反应的强烈迹象。在长期暴露中,该反应会导致BN涂层耗竭和/或界面性能发生不利变化,从而限制了涂层的有益作用。

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