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首页> 外文期刊>Journal of Advanced Ceramics >In-situ synthesis and sintering of mullite glass composites by SPS
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In-situ synthesis and sintering of mullite glass composites by SPS

机译:SPS原位合成和莫来石玻璃复合材料的烧结

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The main subject of this work is an investigation of the effects of heating rate and current on the crystallisation of amorphous precursors in spark plasma sintering (SPS). For this, dry gel of Al2O3-SiO2 with a molar ratio of 1:1, was synthesized and sintered in-situ by SPS, and also by hot pressing (HP) for comparison. Phase analysis showed that the only crystalline product in both cases was mullite, whose Al2O3 content was lower in the SPS specimens. The microstructures showed a low volume fraction of large mullite fibers in the SPS specimens, whereas a high volume fraction of fine equiaxed grains was present in the HP specimen. The main difference in microstructure between HP and SPS specimens could be explained in terms of the higher heating rate of the SPS specimens. The size of the SPS die also affected the size and aspect ratio of the mullite fibers produced, which might have been due to either the different electrical current required or a difference in specimen temperature profile.
机译:这项工作的主要主题是研究加热速率和电流对火花等离子体烧结(SPS)中非晶态前驱物结晶的影响。为此,合成了摩尔比为1:1的Al 2 O 3 -SiO 2干凝胶,并通过SPS和热压(HP)原位烧结以进行比较。相分析表明,两种情况下唯一的结晶产物是莫来石,SPS样品中的Al2O3含量较低。显微组织显示,SPS样品中的大型莫来石纤维体积分数较低,而HP样品中的等轴细晶粒体积分数较高。 HP和SPS标本之间微观结构的主要差异可以用SPS标本的较高加热速率来解释。 SPS模具的尺寸也会影响生产的莫来石纤维的尺寸和长宽比,这可能是由于所需的不同电流或样品温度曲线的差异所致。

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