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Closed Die Upsetting of Aluminum Matrix Composites Reinforced with Molybdenum Disulfide Nanocrystals and Multilayer Graphene Implemented using the SPS Process—Microstructure Evolution

机译:使用SPS工艺实施的二硫化钼纳米晶体和多层石墨烯增强的铝基复合材料的闭模Up锻-组织演变

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摘要

New methods for producing composite materials such as SPS (Spark Plasma Sintering) are becoming more and more popular due to the ease of implementation in industrial conditions and the versatility of the materials used for processing. In order to fully exploit the potential of this method, modifications were proposed which consisted in the deliberate induction of deformation during the sintering process. The influence of the manufacturing method on the microstructure of aluminum alloy matrix composites reinforced with layered crystals in the form of nanoflakes was investigated. Composites with the addition of 10 vol % of multilayer graphene and molybdenum disulfide were prepared and their density, hardness, and the influence of the deformation ratio on the changes occurring in the microstructure were examined. The potential of the method to shape the properties of the tested composites and the strong dependence of the obtained results on the morphology of the reinforcing phase was indicated. An interesting phenomenon observed for composites with the addition of MoS2 during the process was the reaction of the components leading to in situ formation of the Al12Mo intermetallic phase.
机译:由于在工业条件下易于实施以及用于加工的材料的多功能性,用于生产复合材料的新方法,例如SPS(火花等离子体烧结)正变得越来越流行。为了充分利用这种方法的潜力,提出了一些修改方案,其中包括在烧结过程中故意引起变形。研究了制造方法对以纳米薄片形式的层状晶体增强的铝合金基复合材料微观结构的影响。制备了添加了10体积%的多层石墨烯和二硫化钼的复合材料,并研究了它们的密度,硬度以及变形比对微观结构中发生变化的影响。指出了该方法具有改变测试复合材料性能的潜力,以及所获得结果对增强相形态的强烈依赖性。在此过程中,在添加MoS2的复合材料中观察到的一个有趣现象是各组分之间的反应导致Al12Mo金属间相的原位形成。

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