首页> 外文期刊>Journal of the European Ceramic Society >Microstructure, fracture behaviour and mechanical properties of conductive alumina based composites manufactured by SPS from graphenated Al2O3 powders
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Microstructure, fracture behaviour and mechanical properties of conductive alumina based composites manufactured by SPS from graphenated Al2O3 powders

机译:由石墨化Al2O3粉末制造的导电氧化铝基复合材料的微观结构,断裂行为和力学性能

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摘要

Conductive Al2O3/graphene composites were manufactured by SPS from Al2O3 powders coated with a few graphene layers. Composite powders with a total carbon content of 0.1, 0.6 and 1.0 wt. % were manufactured by chemical vapour deposition. The effect of the graphene content on the microstructure, mechanical and electrical properties of the compacts were studied. Graphene, homogenously located along the grain boundaries, dramatically hindered the Al2O3 grain growth. The continuous interconnected graphene network enhanced electrical properties, achieving percolation threshold as low as 0.6 wt. % of graphene. The content of 1 wt. % of graphene increased electroconductivity by 13 orders of magnitude as compared to the monolithic alumina. The indentation fracture toughness increased by 20 % in specimens with 0.6 wt. % graphene content as compared to pure alumina. The presence of 1.0 wt. % of graphene resulted in a slight decrease of elastic modulus and hardness, but strength decreased by 40 %.
机译:导电Al 2 O 3 /石墨烯复合材料由来自涂有几个石墨烯层的Al 2 O 3粉末的SPS制备。 总碳含量为0.1,0.6和1.0wt的复合粉末。 %通过化学气相沉积制造。 研究了石墨烯含量对压块的微观结构,机械和电性能的影响。 石墨烯,沿晶界均匀地均匀地阻碍了Al2O3晶粒生长。 连续互连的石墨烯网络增强电性能,实现低至0.6重量%的渗透阈值。 占石墨烯的百分比。 1重量%的含量。 与整体氧化铝相比,石墨烯的%增加了13个级的导电性。 压痕断裂韧性在标本中增加了20%,具有0.6重量%。 与纯氧化铝相比的%石墨烯含量。 存在1.0wt。 占石墨烯的%导致弹性模量和硬度略微降低,但强度降低了40%。

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