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Strengthening effects of encapsulating graphene in SiC particle-reinforced Al-matrix composites

机译:封装石墨烯在SiC粒子增强的Al-矩阵复合材料中的加强效应

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摘要

This work aims to reveal the strengthening effects of encapsulating graphene in the tensile strength of SiC particulate Al-based composites. Modified theoretical models are discussed regarding the thermal mismatch, Orowan and fine-grain strengthening mechanisms. It is found that the thermal mismatch strengthening is the dominant mechanism among them, followed by the Orowan strengthening and the fine-grain strengthening to be the last. While comparing the effects of two different types of graphene, we find that sheet graphene makes more strengthening contributions to both thermal mismatch and Orowan strengthening mechanisms compared with encapsulating graphene. Finite element simulations are employed to investigate the variation patterns of these effects with varies particle sizes and volume fractions. A better enhancing effect of encapsulating graphene can be achieved with a larger volume fraction and a smaller particle size.
机译:这项工作旨在揭示封装石墨烯在SiC颗粒基复合材料的拉伸强度中的强化效果。 关于热失配,砧座和细粒强化机制讨论了修改的理论模型。 结果发现,热不匹配强化是其中的主要机制,其次是orowan强化和粒子加强成为最后一个。 在比较两种不同类型的石墨烯的效果的同时,与包封石墨烯相比,薄片石墨烯对热失配和奥罗瓦仑的强化机制进行了更强的贡献。 采用有限元模拟来研究这些效果的变化模式,具有变化的颗粒尺寸和体积级分。 可以通过较大的体积分数和较小的粒度来实现封装石墨烯的更好增强效果。

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