Unveiling the Influential Factors and Heavy Industrial Applications of Graphene Hybrid Polymer Composites

Zulfiqar Ali, Saba Yaqoob, Jinhong Yu, Alberto D’Amore
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Abstract

Graphene hybrid-filler polymer composites have emerged as prominent materials that revolutionize heavy industries. This review paper encapsulates an in-depth analysis of different influential factors, such as filler/graphene type, aspect ratios, dispersion methods, filler-matrix compatibility, fiber orientation, synergistic effects, different processing techniques, and post-curing conditions, which affect the processing and properties of graphene hybrid polymer composites, as well as their resultant applications. Additionally, it discusses the substantial role of graphene reinforcement with other fillers, such as carbon nanotubes, silica, nano-clays, and metal oxides, to produce functionalized hybrid polymer composites with synergistically enhanced tailored properties, offering solutions for heavy industries, including aerospace, automotive, electronics, and energy harvesting. This review concludes with some suggestions and an outlook on the future of these composite materials by emphasizing the need for continued research to fully optimize their potential.
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揭示石墨烯混合聚合物复合材料的影响因素和重工业应用
石墨烯混合填料聚合物复合材料已成为重工业的重要革新材料。本综述论文深入分析了不同的影响因素,如填料/石墨烯类型、长宽比、分散方法、填料与基体的兼容性、纤维取向、协同效应、不同的加工技术和后固化条件等,这些因素都会影响石墨烯混合聚合物复合材料的加工和性能,以及由此产生的应用。此外,本综述还讨论了石墨烯与其他填料(如碳纳米管、二氧化硅、纳米粘土和金属氧化物)在增强功能化杂化聚合物复合材料方面的重要作用,这些复合材料具有协同增强的定制特性,可为航空航天、汽车、电子和能源采集等重工业提供解决方案。本综述最后提出了一些建议,并对这些复合材料的未来进行了展望,强调需要继续开展研究,以充分发挥其潜力。
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