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首页> 外文期刊>Journal of the European Ceramic Society >Hardness degradation in liquid-phase-sintered SiC with prolonged sintering
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Hardness degradation in liquid-phase-sintered SiC with prolonged sintering

机译:长时间烧结液相烧结碳化硅的硬度降低

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摘要

The effect of the sintering time on the Vickers hardness of liquid-phase-sintered SiC with 10wt percent YAG additives was studied for materials fabricated in Ar and N_2 atmospheres. The hardness of the Ar-sintered materials was found to decrease markedly with increasing sintering time, whereas, in contrast, the decrease was only marginal for the N_2-sintered materials. Berkovich nanoindentation tests showed that the softening could not be attributed in either case to degradation of the SiC grains, thereby pointing to the intergranular YAG phase as the responsible. That the cause was degradation of the YAG phase was confirmed by X-ray energy-dispersive spectrometry and Hertzian indentation tests. The far more pronounced softening observed for the Ar-sintered materials reflects the more severe degradation that the YAG phase undergoes during sintering in this atmosphere.
机译:研究了在Ar和N_2气氛下制备的材料的烧结时间对含10wt%YAG添加剂的液相烧结SiC的维氏硬度的影响。发现Ar烧结材料的硬度随着烧结时间的增加而显着降低,而相反,该降低仅对于N_2烧结材料而言是很小的。 Berkovich纳米压痕测试表明,在两种情况下,软化都不能归因于SiC晶粒的降解,因此指出晶间YAG相是负责任的。通过X射线能量色散光谱法和赫兹压痕试验证实了YAG相的降解。对于Ar烧结材料观察到的更为明显的软化现象反映了YAG相在此气氛下烧结期间经历的更严重的降解。

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