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Effect of Hybrid Reinforcements on the Mechanical Properties of Copper Nanocomposites

机译:杂化增强材料对铜纳米复合材料力学性能的影响

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摘要

Copper (Cu) composites hybridized with nano-sized reinforcing material are gathering attraction in several fields such as automobile, aerospace, and power transmission due to their better strength. Unlike conventional reinforcing materials, extraordinary mechanical properties and high electrical and thermal conductivity make nanomaterials highly useful reinforcement materials to improve the properties of pristine metals. Over the last two decades, several kinds of research have been conducted to study the effect of distinctive 2D nanomaterials, such as silicon carbide, aluminium oxide, copper nanotube and graphene as reinforcement on the properties of metal matrices. This study comprehensively reviews the effect of hybrid reinforcements on the mechanical properties of Cu composites having graphene as one of the reinforcements. Also, the contribution of these reinforced nanomaterials composition and their dispersion in the pure Cu matrices have also been explained in detail. In comparison with Cu composites fabricated with a single 2D reinforcement material, composites incorporating hybrid nano reinforcement, exhibit better mechanical behaviour. Additionally, the improvement in mechanical strength would enhance their capability to withstand altering thermal and surrounding environmental conditions.
机译:与纳米级增强材料杂化的铜(Cu)复合材料因其更好的强度而在汽车、航空航天和电力传输等多个领域受到关注。与传统的增强材料不同,非凡的机械性能和高导电性和导热性使纳米材料成为非常有用的增强材料,可以改善原始金属的性能。在过去的二十年中,已经进行了多种研究来研究独特的二维纳米材料(如碳化硅、氧化铝、铜纳米管和石墨烯)作为增强材料对金属基体性能的影响。本文综述了混合增强材料对石墨烯作为增强材料之一的Cu复合材料力学性能的影响。此外,还详细解释了这些增强纳米材料成分的贡献及其在纯Cu基质中的分散性。与使用单一二维增强材料制备的铜复合材料相比,采用混合纳米增强材料的复合材料表现出更好的机械性能。此外,机械强度的提高将增强它们承受不断变化的热和周围环境条件的能力。

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