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首页> 外文期刊>Journal of the European Ceramic Society >High-temperature properties and interface evolution of silicon nitride fiber reinforced silica matrix wave-transparent composite materials
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High-temperature properties and interface evolution of silicon nitride fiber reinforced silica matrix wave-transparent composite materials

机译:氮化硅纤维增强二氧化硅基波透明复合材料的高温性能和界面演化

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摘要

In order to improve the high-temperature performance of wave-transparent materials especially for the high-speed aircrafts application, filament winding combined with sol-gel method was adopted to the fabrication of unidirectional silicon nitride fiber reinforced silica matrix composites. The mechanical properties and the interface evolution at high temperatures were investigated. The results show that the composite sintered in N-2 maintains a flexural strength of 210MPa at up to 1200 degrees C, while its counterpart prepared in air experiences a dramatic reduction to about 73MPa. The degradation is due to the partial oxidation of silicon nitride fibers at the fiber matrix interface. Besides, it is also notable that the bending strength of these two composites undergoes a similar growth from about 160 to 210MPa when tested under 900 degrees C, which can be explained by the release of thermal stress on the silicon nitride fibers.
机译:为了提高尤其是高速飞机应用的波透明材料的高温性能,采用丝绕组与溶胶 - 凝胶法相结合,制备单向氮化硅纤维增强二氧化硅基复合材料。 研究了高温下的机械性能和界面演化。 结果表明,在N-2中烧结的复合材料保持210MPa的弯曲强度,高达1200摄氏度,而空气中制备的对应物经历了大约73MPa的剧烈降低。 劣化是由于纤维基质界面处的氮化硅纤维的部分氧化。 此外,还值得注意的是,当在900摄氏度下测试时,这两个复合材料的弯曲强度在约160至210MPa上经历了类似的生长,这可以通过氮化硅纤维上的热应力释放来解释。

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