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首页> 外文期刊>Journal of the European Ceramic Society >Enhancing toughness and strength of SiC ceramics with reduced graphene oxide by HP sintering
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Enhancing toughness and strength of SiC ceramics with reduced graphene oxide by HP sintering

机译:通过HP烧结加强石墨烯氧化物的SiC陶瓷的韧性和强度

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In this paper, the silicon carbide-reduced graphene oxide (SiC/rGO) composites with different content of rGO are investigated. The hot pressing (HP) at 2100 degrees C for 60 min under a uniaxial pressure of 40 M Pa resulted in a near fully-dense SiC/rGO composite. In addition, the influence of graphene reinforcement on the sintering process, microstructure, and mechanical properties (fracture toughness, bending strength, and Vickers hardness) of SiC/rGO composites is discussed. The fracture toughness of SiC/rGO composites (7.9MPam(1/2)) was strongly enhanced by incorporating rGO into the SiC matrix, which was 97% higher than the solid-state sintering SiC ceramics (SSiC) by HP. Meanwhile, the bending strength of the composites reached 625 M Pa, which was 17.3% higher than the reference materials (SSiC). The microstructure of the composites revealed that SiC grains were isolated by rGO platelets, which lead to the toughening of the composite through rGO pull out/debonding and crack bridging mechanisms.
机译:本文研究了具有不同含量的碳化硅还原的石墨烯氧化物(SiC / Rgo)复合材料。在40 m Pa的单轴压力下,在2100℃下的热压(HP)在40μm的高压下导致近全致密的SiC / Rgo复合材料。此外,讨论了石墨烯增强对SiC / Rgo复合材料的烧结过程,微观结构和机械性能(断裂韧性,弯曲强度和维氏硬度)的影响。通过将RGO掺入SiC基质,强大地增强了SiC / Rgo复合材料的断裂韧性(7.9MPAM(1/2),比HP的固态烧结SiC陶瓷(SSIC)高97%。同时,复合材料的弯曲强度达到625米PA,比参考资料(SSIC)高17.3%。复合材料的微观结构显示,RGO血小板分离SiC晶粒,这通过RGO拉出/剥离和裂纹桥接机制导致复合材料的增韧。

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