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Reduced-graphene-oxide-reinforced boron carbide ceramics fabricated by spark plasma sintering from powder mixtures obtained by heterogeneous co-precipitation

机译:由通过异质共沉淀获得的粉末混合物制造的石墨烯 - 氧化物增强硼碳化硼陶瓷制造,由异质共沉淀得到的粉末混合物

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摘要

Reduced graphene oxide (rGO) sheets were uniformly dispersed in boron carbide ceramics by a heterogeneous co-precipitation method. This approach was used to improve the fracture toughness of boron carbide ceramics and to address the problem of agglomeration of graphene in the boron carbide matrix. Cetyltrimethyl ammonium bromide was used as a heterogeneous co-precipitation reaction initiator to prepare a homogeneously dispersed graphene oxide/boron carbide (GO/B4C) mixture. Reduced graphene oxide/boron carbide (rGO/B4C) powder mixtures with good dispersion were obtained by high temperature heat treatment. Dense rGO/B4C composite ceramics were fabricated by spark plasma sintering at 1800 degrees C and 50 MPa. The fracture toughness and flexural strength of the rGO/B4C with an rGO content of 2 vol% composite increased by 42% (from 3.43 to 4.88 MPam(1/2)) and 28% (from 372 to 476 MPa) compared with those of pure B-4 C, respectively. The markedly improved fracture toughness and flexural strength of the boron carbide ceramics were attributed to the effect of crack bridging and crack deflection by graphene sheets, graphene interface sliding, and pulling out of graphene.
机译:通过非均相共沉淀法均匀地将石墨烯氧化物(RGO)片材均匀地分散在碳化硼陶瓷中。这种方法用于改善碳化硼陶瓷的断裂韧性,并解决碳化硼基质中石墨烯凝聚的问题。将甲基三甲基溴化铵用作非均相共沉淀反应引发剂,以制备均匀分散的石墨烯氧化物/碳化硼(GO / B4C)混合物。通过高温热处理获得含有良好分散体的石墨烯氧化物/碳化硼/碳化硼(RGO / B4C)粉末混合物。通过火花等离子体烧结在1800℃和50MPa下进行致密Rgo / B4C复合陶瓷。 RGO / B4C的骨折韧性和抗弯强度,RGO含量为2体积%的复合材料增加42%(从3.43到4.88 mPam(1/2))和28%(从372至476MPa)相比纯B-4 C分别。碳化硼陶瓷的显着改善的断裂韧性和抗弯强度归因于石墨烯片,石墨烯界面滑动和拉出石墨烯的裂缝桥接和裂纹偏转的影响。

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