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Enhanced thermal conductivity and mechanical properties of a GNP reinforced Si3N4 composite

机译:增强GNP增强Si3N4复合材料的导热性和机械性能

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Graphene nanocomposites can significantly enhance the thermal conductivity and mechanical properties of ceramics at relatively low nano-filler addition. Herein, graphene nano-platelet reinforced Si3N4 (GNP/Si3N4) composites were prepared by hot press (HP) sintering using fluoride (AlF3, MgF2) sintering-additives. The microstructural properties revealed the enhanced crystallization degree and density of the GNP/Si3N4 composites with different concentrations of graphene nano-platelets (GNPs). These properties help to achieve a significantly improved thermal conductivity (from 82.42 to 137.47 W m(-1) K-1) of the GNP/Si3N4 composites. The morphology of the composites shows a uniform distribution of GNP, whereas overlapping of GNPs (2 to 4 platelets) at the grain boundaries of Si3N4 was observed. The fracture toughness and Vickers hardness of the composites also increased with the increasing content of GNP. The toughening mechanism was similar in all composites with GNP addition in respect of pull out, crack deflection, crack branching and crack bridging.
机译:石墨烯纳米复合材料可以在相对低的纳米填充物中显着提高陶瓷的导热性和机械性能。这里,使用氟化物(ALF3,MGF2)烧结 - 添加剂,通过热压(HP)烧结制备石墨烯纳米血小板增强Si3N4(GNP / Si3N4)复合材料。微观结构特性揭示了具有不同浓度的石墨烯纳米血小板(GNPS)的GNP / Si3N4复合材料的增强的结晶度和密度。这些性质有助于实现GNP / Si3N4复合材料的显着改善的导热率(从82.42至137.47W m(-1)k-1)。复合材料的形态表明了GNP的均匀分布,而在观察到Si3N4的晶界处的GNPS(2至4个血小板)的重叠。复合材料的断裂韧性和维氏硬度也随着GNP的含量增加而增加。在拉出,裂纹偏转,裂纹支化和裂纹桥接方面,加强机构在所有复合材料中相似。

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    《RSC Advances 》 |2019年第68期| 共7页
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  • 正文语种 eng
  • 中图分类 化学 ;
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