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Preparation of Ag/reduced graphene oxide reinforced copper matrix composites through spark plasma sintering: An investigation of microstructure and mechanical properties

机译:通过火花等离子体烧结制备Ag / X次氧化石墨烯氧化物增强铜基复合材料:微观结构和机械性能的研究

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The reduced graphene oxide (rGO) decorated with Ag nanoparticles was synthesized by the chemical reduction of graphene oxide in an aqueous solution containing AgNO3, in the presence of hydrazine hydrate as a reducing agent. The reduction of graphene oxide was confirmed by FT-IR and raman spectroscopy analyses. The x-ray diffraction pattern and UV-visible investigations demonstrated the formation of Ag particles on the surface of rGO sheets. After successful decoration, the Ag/rGO nano-composite was used as the reinforcement in the copper matrix composite. Cu-Ag/rGO composites with different percentages of Ag/rGO (0.4, 0.8, 1.6 and 3.2 vol%.) were prepared by mechanical milling and spark plasma sintering (SPS). The effects of the Ag/rGO content on the consolidation process, micro-hardness, bending strength and also, fracture surface of the prepared samples were then investigated. The three-point bending strength of the sintered samples was increased from 285 to 472 MPa by the addition 0.8 vol%. of Ag/rGO, as compared to the pure Cu. Moreover, increasing the reinforcement content to the 3.2 vol%. Ag/rGO led to decreasing the bending strength to 433 MPa. The highest micro-hardness (81 Hv) was obtained for the composite sample containing the 1.6 vol%. Ag/rGO. By increasing Ag/r-GO as the reinforcement (3.2 vol%.), the Vickers hardness was decreased to 69 Hv. Also, investigation of the fracture surface morphology showed transformation of fracture mechanism from plastic changes to brittle ones by raising the Ag/rGO content volume from 0.8 to 1.6 vol %.
机译:通过含有AgNO3的水溶液中的石墨烯氧化物的化学还原,在含有AgNO3的含有肼水合物作为还原剂的情况下合成用Ag纳米颗粒装饰的还原的石墨烯氧化物(Rgo)。通过FT-IR和拉曼光谱分析证实了石墨烯氧化物的还原。 X射线衍射图案和UV可见的研究证明了RGO片材表面上的Ag颗粒的形成。成功装修后,Ag / Rgo纳米复合材料用作铜基质复合材料中的增强剂。通过机械研磨和火花等离子体烧结(SPS),制备具有不同百分比的Ag / RGO(0.4,0.8,1.6和3.2体积%)的Cu-Ag / Rgo复合材料。然后研究了Ag / Rgo含量对固结过程,微硬度,弯曲强度以及制备样品的断裂表面的影响。通过加入0.8体积%,烧结样品的三点弯曲强度从285%增加到472MPa。与纯Cu相比,Ag / Rgo。此外,将增强含量增加到3.2体积%。 AG / RGO导致将弯曲强度降低至433MPa。为含有1.6体积%的复合样品获得最高的微硬度(81HV)。 ag / rgo。通过增加Ag / R-Go作为钢筋(3.2体积%),维氏硬度降至69HV。此外,骨折表面形态的研究表明,通过将Ag / Rgo含量体积从0.8%升至1.6体积,将骨折机制与脆性变化的变化转化。

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