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Effects of air leaks on the phase content, microstructure, and interfacial behavior of CVD zirconia on SiC fiber

机译:空气泄漏对CVD氧化锆对SiC纤维的相含量,微观结构和界面行为的影响

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A slight increase in the rate of air leaks into the CVD-ZrO_2 process appeared to mitigate the nucleation of tetragonal ZrO_2 phase. Without the nucleation of the tetragonal phase, the ZrO_2 layer was well bonded to the SiC fiber surface and exhibited no delamination at the fiber/coating interface region. This strong bonding at the fiber/coating interface could significantly decrease, depending on the ZrO_2 coating thickness, the tensile failure load of the coated SiC fiber tows. In contrast, ZrO_2 coating specimens, produced at the lower air leak rates, contained the tetragonal ZrO_2 phase. For these specimens, delamination occurred within the ZrO_2 coating, and the coating did not decrease the fiber tow failure load. These results suggest that such a small change in the air leak rate could significantly change the nucleation behavior of ZrO_2 and consequently its interfacial properties as a fiber coating for SiC/SiC composites.
机译:略微增加空气泄漏到CVD-ZRO_2过程中,似乎减轻了四边形ZrO_2相的成核。没有四方相的成核,ZrO_2层粘合到SiC纤维表面上,并且在纤维/涂覆界面区域上没有占分层。根据ZrO_2涂层厚度,这种强键可显着降低涂覆的SiC纤维丝的拉伸破坏负荷。相反,在较低的空气泄漏速率下产生的ZrO_2涂层样本含有四边形ZrO_2相。对于这些试样,在Zro_2涂层内发生分层,涂层没有降低纤维截止载荷负荷。这些结果表明,空气泄漏率的这种微小变化可以显着改变ZrO_2的核心性能,从而改变其作为SiC / SiC复合材料的纤维涂层的界面性质。

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