首页> 外文期刊>Journal of the European Ceramic Society >Tailoring the properties of spark plasma sintered SiAlON containing graphene nanoplatelets by using different exfoliation and size reduction techniques: Anisotropic electrical properties
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Tailoring the properties of spark plasma sintered SiAlON containing graphene nanoplatelets by using different exfoliation and size reduction techniques: Anisotropic electrical properties

机译:使用不同的剥离和尺寸减少技术来定制含石墨烯纳米孔型纳米蛋白纳米孔的性质的性质:各向异性电气性能

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摘要

Insulating SiAlON ceramics can be machined into complex shapes if the electrical conductivities can be increased with additives. Therefore, the microfluidization technique was used as an alternative to traditional sonication for exfoliation and homogenization of GNPs to investigate the effects of different exfoliation, size reduction and homogenization techniques on the microstructure, electrical conductivity and percolation threshold values of GNPs-SiAlON composites. 2.85, 5.70 and 11.40 vol. % sonicated and sonicated + microfluidized GNPs added into SiAlON matrix and were densified by using SPS technique. Due to their thinner and smaller platelet size, microfluidized GNPs dispersed more homogeneously compared to the sonicated GNPs in the SiAlON matrix. Electrical conductivities of the microfluidized GNPs-SiAlON composites were similar to 70-200% higher than sonicated GNPs-SiAlON in the both measured directions. Lower percolation thresholds were achieved when sonicated + microfluidized GNPs used in comparison to sonicated GNPs containing composites. Electrical conductivities in the in-plane direction were also higher than through-plane direction.
机译:如果电导率可以用添加剂增加,可以将绝缘唾液陶瓷加工成复杂的形状。因此,微流化技术被用作传统超声的传统超声处理的替代方法,用于研究不同剥离,大小降低和均匀化技术对GNPS-Sialon复合材料的微观结构,电导率和渗透阈值的影响。 2.85,5.70和11.40卷。添加到Sialon基质中的%超声处理和超声+微流化GNP,通过使用SPS技术致密化。由于它们的稀释剂和较小的血小板尺寸,与Sialon基质中的超声波的GNP相比,微流化的GNPS更加均匀地分散。微流体的GNPS-SiAlon复合材料的电导率与两个测量方向上的超声处理GNPS-Sialon相似的70-200%。当与含有复合材料的超声的GNPS相比使用的超声处理+微流化GNP时,实现了降低的渗透阈值。面内方向上的电导率也高于通过平面方向。

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