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Application of a novel method for fabrication of graphene reinforced aluminum matrix nanocomposites: Synthesis, microstructure, and mechanical properties

机译:一种新方法在石墨烯增强铝基纳米复合材料制备中的应用:合成,微观结构和力学性能

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In this study, the graphene reinforced aluminium matrix nanocomposite is fabricated through the combination of high energy ball milling (HEBM) and molecular level mixing (MLM) processes followed by spark plasma sintering (SPS) method. FTIR, XRD and FESEM analyses revealed that Cu/RGO nanocomposite was well synthesized by the MLM method with a uniform distribution of Cu nanoparticles on RGO surface. XRD and Raman spectroscopy showed that no Al_4C_3 phase was formed during the manufacturing process, but Al_2Cu fine particles precipitated during the SPS treatment which were smaller in size and more uniform in distribution when RGO was used as reinforcement according to TEM analysis. Grain refinement of the nanocomposites was also investigated in the presence of RGO by EBSD method. The results showed that with increasing RGO content from 0 to 1 wt %, the coarse grained microstructure changed to bimodal microstructure. In addition, the mean grain size decreased from 3.9 to 1.6 nm, and dislocation density increased significantly with the increased RGO content. The SPS process also resulted in a nearly fully dense nanocomposite with a relative density higher than 99%. The investigation of mechanical properties of the sintered nanocomposite indicated an improvement of 79, 49 and 44% of yield strength, ultimate strength, and Vickers hardness, respectively, for only 1 wt % graphene containing nanocomposite in comparison to the unreinforced Al-4Cu alloy.
机译:在这项研究中,石墨烯增强的铝基纳米复合材料是通过高能球磨(HEBM)和分子能级混合(MLM)工艺结合火花等离子体烧结(SPS)方法制成的。 FTIR,XRD和FESEM分析表明,通过MLM方法可以很好地合成Cu / RGO纳米复合材料,并且Cu纳米粒子在RGO表面均匀分布。 XRD和拉曼光谱表明,在制造过程中没有形成Al_4C_3相,但在SPS处理过程中析出的Al_2Cu细颗粒尺寸较小,当根据TEM分析将RGO用作增强剂时,分布更均匀。还通过EBSD方法在RGO存在下研究了纳米复合材料的晶粒细化。结果表明,随着RGO含量从0到1 wt%的增加,粗晶粒组织转变为双峰组织。此外,平均晶粒尺寸从3.9纳米减小到1.6纳米,并且位错密度随着RGO含量的增加而显着增加。 SPS工艺还产生了几乎完全致密的纳米复合材料,相对密度高于99%。对烧结的纳米复合材料的机械性能的研究表明,与未增强的Al-4Cu合金相比,仅含1 wt%的石墨烯的纳米复合材料的屈服强度,极限强度和维氏硬度分别提高了79%,49%和44%。

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