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Relating the strength of graphene/metal composites to the graphene orientation and position

机译:将石墨烯/金属复合材料的强度与石墨烯取向和位置相关联

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This letter presents new insight on the underlying strengthening mechanisms that take place during deformation of iron-graphene (Fe/Gr) composites. Molecular dynamics revealed that the Gr orientation dictated the dislocation evolution during compression, revealing three possible dislocation-Gr interaction mechanisms: transmission, reflection and gliding. A new numerical materials design was therefore proposed of a lamellae Fe-Gr structure with a short graphene sheet inserted in Fe, whose orientation resulted in reflection. Decreasing the distance between the long and short Gr-sheets resulted in the stronger composites. This method can be used for predicting the properties of graphene reinforced composites based on the Gr structure. Published by Elsevier Ltd on behalf of Acta Materialia Inc.
机译:这封信对铁石墨烯(Fe / Gr)复合材料变形发生的潜在增强机制提供了新的洞察。 分子动力学揭示了GR定位在压缩期间决定了位错演化,揭示了三种可能的错位 - GR相互作用机制:传输,反射和滑动。 因此,提出了一种新的数值材料设计,其中薄片Fe-GR结构具有插入Fe的短石墨烯片,其取向导致反射。 减小长和短gr板之间的距离导致更强的复合材料。 该方法可用于预测基于GR结构的石墨烯增强复合材料的性质。 elsevier有限公司发布代表Acta Magementia Inc.

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