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首页> 外文期刊>Journal of the European Ceramic Society >Liquid-phase assisted flash sintering of SiC from powder mixtures prepared by aqueous colloidal processing
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Liquid-phase assisted flash sintering of SiC from powder mixtures prepared by aqueous colloidal processing

机译:由胶体加工制备的粉末混合物的SiC液相辅助闪蒸

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The effects were investigated of the starting particle size (i.e., nanometer or submicrometer powders), content of Y3Al5O12 additives (YAG; in the range 5-20 wt.%), and difference of size scales between the two particle types on the liquid-phase assisted flash sintering of SiC from powder mixtures prepared by aqueous colloidal processing. It was found that flash sintering benefits from the refinement of the particles size, the increase in additive content, and the smaller size scale of the particulate additive. It was also found that under the present flash sintering conditions (i.e., 900 degrees C furnace temperature, 13 A current, and 50s in flash state) the resulting ceramics are, despite the formation of liquid phase, porous to a greater or lesser extent, and exhibit decreasing porosity gradients from their surface to the centre. These observations are rationalized to extract guidelines for powder batch design contributing to the pressureless ultrafast sintering of non-oxide advanced ceramics. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了起始粒度(即,纳米或亚型乳膏粉末)的效果,Y3AL5O12添加剂(YAG;在5-20重量%)的范围内,并且在液体上的两个粒子类型之间的大小尺度的差异通过胶体加工水溶液制备的粉末混合物的SiC相位辅助闪光烧结。发现闪光烧结源于颗粒尺寸的改进,添加剂含量的增加,以及颗粒添加剂的较小尺寸等级。还发现,在本闪光烧结条件下(即,900摄氏度温度,13个电流和闪光状态下的50s),所得到的陶瓷尽管形成液相,多孔在更大或更小的程度上,并且表现出从它们的表面到中心的孔隙率梯度。这些观察结果是合理化的,以提取粉末批量设计指南,有助于非氧化物高速陶瓷的无压超速烧结。 (c)2016 Elsevier Ltd.保留所有权利。

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