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首页> 外文期刊>Journal of the European Ceramic Society >Effects of sintering atmosphere on the densification and microstructure of yttrium aluminum garnet fibers prepared by sol-gel process
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Effects of sintering atmosphere on the densification and microstructure of yttrium aluminum garnet fibers prepared by sol-gel process

机译:烧结气氛对溶凝胶加工钇铝石榴石纤维致密化和微观结构的影响

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摘要

Yttrium aluminum garnet (YAG) fibers were prepared by a sol-gel method, and then sintered in air or nitrogen atmosphere, respectively. The effects of sintering atmosphere on the densification process and microstructure of YAG fibers were investigated. No obvious difference can be found in the fibers sintered below 800 degrees C. At 1100 degrees C, the grain size of YAG fibers sintered in nitrogen is much smaller than in air. This difference is much clearer at the higher temperature of 1200 degrees C. The fine grains are explained by the existence of residual carbon in YAG fibers, which can be trapped at the grain boundaries to hinder the movement of grain boundary. Meanwhile, the densification degree of fibers sintered in nitrogen is higher than in air at 1200 degrees C, due to the smaller grain size and higher oxygen vacancy concentration generated in the nitrogen atmosphere, which leads to a higher fiber densification rate.
机译:通过溶胶 - 凝胶法制备钇铝石榴石(YAG)纤维,然后分别在空气或氮气氛中烧结。 研究了烧结气氛对YAG纤维致密化过程的影响和薄纱纤维的微观结构。 没有明显的差异可以在烧结在800℃以下的纤维中,在1100℃下,在氮气中烧结的YAG纤维的晶粒尺寸远小于空气中。 这种差异在1200℃的较高温度下更清晰。通过在YAG纤维中存在残留碳的含量来解释细粒,其可以被困在晶界处以阻碍晶界的运动。 同时,由于在氮气氛中产生的较小的粒度和氧气空间浓度较小,氮气烧结的纤维的致密度高于1200℃的空气中。

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