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Are short Hi-Nicalon SiC fibers a secondary or a toughening phase for ultra-high temperature ceramics?

机译:Hi-Nicalon短SiC纤维是超高温陶瓷的第二相还是增韧相?

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This paper deals with the effect of the addition of Hi-Nicalon SiC fibers to Zr- and Hf-borides. The main scope is to understand the fiber/matrix chemical interaction and correlate it to the fracture toughness. Transmission electron microscopy (TEM) was used as key investigation tool to disclose the microstruc-tural features at nanoscale level. Several sintering additives were used to enable densification in the temperature range 1600-1850 ℃. It was observed that the fiber strongly reacts with the matrix at the same temperature at which the sintering additive starts to be effective. At this point, the fibers themselves locally behave as sintering aid promoting a strong fiber/matrix bonding which prevents any possibility of fiber pullout. Fiber modification was correlated with the fracture toughness and it was at last deduced that these fibers exert a toughening action only when the sintering temperature is kept below 1700 ℃. Above this temperature fibers start to significantly degrade and can be considered just as a secondary phase.
机译:本文讨论了在Zr和Hf硼化物中添加Hi-Nicalon SiC纤维的效果。主要范围是了解纤维/基体的化学相互作用,并将其与断裂韧性相关联。透射电子显微镜(TEM)被用作关键的研究工具,以揭示纳米级的微观结构特征。几种烧结添加剂被用于致密化1600-1850℃的温度范围。观察到,在烧结添加剂开始有效的相同温度下,纤维与基体强烈反应。在这一点上,纤维本身在局部上起到烧结助剂的作用,促进了牢固的纤维/基体结合,从而防止了纤维拉出的任何可能性。纤维的改性与断裂韧性有关,最后得出结论,只有当烧结温度保持在1700℃以下时,这些纤维才会发挥增韧作用。在此温度以上,纤维开始显着降解,可以视为次生相。

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