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Multi-layer graphene reinforced aluminum - Manufacturing of high strength composite by friction stir alloying

机译:多层石墨烯增强铝-摩擦搅拌合金制造高强度复合材料

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摘要

The paper reports manufacturing of a multi-layer graphene embedded composite of aluminium alloys by direct exfoliation of graphite into graphene with the help of Friction Stir Alloying (FSA). The formation of this nano composite and optimization of the process parameters led to an approximately two-fold increase in the strength, without loss in ductility, due to the dispersion of the graphene in aluminium. The manufacturing process is scalable and cost effective as it uses graphite powder and aluminium sheets as the raw materials. The presence of graphene layers in the metal matrix was confirmed using Raman spectroscopy as well as TEM. The graphene sheet thickness was measured using AFM after extracting it from the composite. Molecular dynamic simulation results reveal the evolution of newer structures and defects that have resulted in the enhanced properties of the nano-composite. These findings open up newer possibilities toward efficient and scalable manufacturing of high strength high-ductility metal matrix based graphene nano-composites.
机译:该论文报道了通过摩擦搅拌合金化(FSA)将石墨直接剥落成石墨烯,从而制造铝合金的多层石墨烯嵌入复合材料。由于石墨烯在铝中的分散,这种纳米复合材料的形成和工艺参数的优化导致强度大约增加了两倍,而没有延展性的损失。由于使用石墨粉和铝片作为原材料,因此制造工艺可扩展且具有成本效益。使用拉曼光谱法和TEM证实了金属基质中石墨烯层的存在。从复合物中提取石墨烯片的厚度后,使用AFM进行测定。分子动力学模拟结果揭示了新型结构和缺陷的演变,这些结构和缺陷已导致纳米复合材料性能增强。这些发现为高强度,高延展性的金属基石墨烯纳米复合材料的高效,可扩展制造提供了新的可能性。

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