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Thermo-mechanical characterization of carbon fiber reinforced silicon carbide composites having boron nitride as an interphase material

机译:碳纤维增强碳化硅复合材料具有硼氮化物的热机械表征,作为晶体材料

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摘要

The carbon fiber reinforced silicon carbide composites were prepared by an isothermal chemical vapour infiltration process. In order to achieve the required density, the carbon fiber preforms in the form of rectangular panels were infiltrated by silicon carbide (SiC) matrix. Prior to the matrix infiltration, a thin coating of boron nitride, as an interphase, was applied on the fiber preform. The test samples were subjected to seal coating of silicon carbide by chemical vapour deposition process. The effect of protective SiC seal coating was examined by testing (3-point bend test) the uncoated and the seal coated samples at different temperatures. Higher value of the flexural strength was observed for the seal coated samples as compared to the uncoated samples, when got tested at high temperature (up to 1400 degrees C). The detailed analysis of the fractured surfaces of the tested samples was carried out.
机译:通过等温化学蒸汽渗透过程制备碳纤维增强碳化硅复合材料。 为了达到所需的密度,通过碳化硅(SiC)基质渗透矩形面板形式的碳纤维预成型件。 在基质浸润之前,施加在纤维预制件上施加氮化硼的薄涂层。 通过化学气相沉积方法对测试样品进行密封碳化硅涂层。 通过在不同温度下测试(3点弯曲试验)来检查保护SiC密封涂层的效果(3点弯曲试验)。 当与未涂覆的样品在高温(高达1400℃)上测试时,与未涂覆的样品相比,对密封涂覆的样品观察到更高的弯曲强度值。 进行了测试样品的裂缝表面的详细分析。

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