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首页> 外文期刊>Journal of Materials Science >High-temperature behavior and degradation mechanism of SiC fibers annealed in Ar and N-2 atmospheres
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High-temperature behavior and degradation mechanism of SiC fibers annealed in Ar and N-2 atmospheres

机译:在Ar和N-2气氛中退火的SiC纤维的高温行为和降解机理

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The thermal and mechanical stability of SiC fibers at elevated temperature is an important property for the practical application of SiC fiber-reinforced ceramic matrix composites and is related to the heat-treating atmosphere. In this study, the high-temperature behavior of KD SiC fibers with low oxygen content was investigated in both Ar and N-2 at temperatures from 1400 to 1800 A degrees C through scanning electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, Auger electron spectroscopy, resistivity measurements, and tensile tests in order to understand the effects of atmospheres on the degradation of the fibers. The results show that high-temperature treatment caused more severe strength degradation in Ar than in N-2. In particular, the fibers heat treated in N-2 at 1700 A degrees C retained a relatively high strength of 1.52 GPa, 60 % of their original strength, while the fiber strength was completely lost after heat treatment in Ar. Fiber strength degradation was mainly caused by a combination of crystal growth and surface flaws. The formation of huge grains and porosity in the fiber surfaces, owing to the thermal decomposition of the SiC (x) O (y) N (z) and SiC (x) O (y) phases, significantly degraded the strength for fibers heat treated in Ar. However, the suppressing effect of N-2 on the decomposition of the SiC (x) O (y) N (z) phase in the fiber surfaces and nitrided case on the decomposition of the SiC (x) O (y) phase in the fiber cores, led to higher SiC fiber temperature stability in N-2 rather than Ar.
机译:SiC纤维在高温下的热稳定性和机械稳定性是SiC纤维增强陶瓷基复合材料实际应用的重要属性,并且与热处理气氛有关。在这项研究中,通过扫描电子显微镜,X射线衍射,X射线光电子能谱研究了低氧含量的KD SiC纤维在Ar和N-2中在1400至1800 A的温度下的高温行为。 ,俄歇电子能谱,电阻率测量和拉伸试验,以了解气氛对纤维降解的影响。结果表明,与N-2相比,高温处理引起的Ar强度下降更为严重。尤其是,在N-2中于1700 A℃热处理的纤维保留了1.52 GPa的较高强度,是其原始强度的60%,而在Ar中热处理后,纤维强度完全丧失了。纤维强度下降主要是由晶体生长和表面缺陷共同引起的。由于SiC(x)O(y)N(z)和SiC(x)O(y)相的热分解,在纤维表面形成了巨大的晶粒和孔隙,大大降低了热处理纤维的强度在Ar。但是,N-2对纤维表面的SiC(x)O(y)N(z)相分解的抑制作用和渗氮的情况对碳纤维中的SiC(x)O(y)相分解的抑制作用。纤维芯导致N-2而不是Ar中具有更高的SiC纤维温度稳定性。

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