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Oxidation resistance in air of 1-D SiC (Hi-Nicalon) fibre reinforce4d silicon nitride ceramic matrix composite

机译:1-D SiC(Hi-Nicalon)纤维加强4D氮化硅陶瓷基质复合材料的空气中的抗氧化性

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The oxidation behaviour of a Si{sub}3N{sub}4 matrix reinforced with SiC fibres (Hi-Nicalon) pre-coated with a 400 nm thick pyrolytic carbon layer has been investigated in dry air in the temperature range 800-1500°C. The same study was performed for individual constituents of the composite (fibre and matrix). Two phenomena are observed in the oxidation behaviour of the composite. At low temperature (T<1200°C), the matrix oxidation is negligible, only the carbon interphase was oxidised creating an annular space between the fibres and the matrix throughout the sample. At high temperature (T≥1300°C) the rate of formation of the oxidation products of the matrix is rapid and a sealing effect is observed. While at these temperatures the interphase is protected in the bulk of the material, the time needed to seal the gap between the fibre and the matrix is too long to prevent its oxidation to a significant depth from the surface. Finally, preliminary results are presented where the consumption of the interphase is completely prevented by applying an external coating which gives oxidation protection from low to high temperature.
机译:在800-1500°C的温度范围内研究了预涂有400nm厚的热解碳层的Si纤维(Hi-Nicalon)的Si {sub} 3n {sub} 4基质的氧化行为。 。对复合材料(纤维和基质)的个体成分进行了相同的研究。在复合材料的氧化行为中观察到两种现象。在低温(T <1200℃)下,基质氧化可忽略不计,只氧化碳间相互作用在整个样品中产生纤维和基质之间的环形空间。在高温(T≥1300°C),基质的氧化产物的形成速率是快速的,并且观察到密封效果。虽然在这些温度下,间隔在大部分材料中保护,但密封纤维和基质之间的间隙所需的时间太长,以防止其氧化到从表面的显着深度。最后,通过施加外涂层完全防止氧化保护从低至高温进行氧化保护,提出了初步结果。

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