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Bending and free vibration analysis of functionally graded graphene vs. carbon nanotube reinforced composite plates

机译:功能梯度石墨烯与碳纳米管增强复合板的弯曲和自由振动分析

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Carbon-based nanomaterials have drawn the attention of a large section of the scientific community in recent years. Most research has focused on carbon nanotubes after some experimental studies reported outstanding enhancements of the mechanical properties of polymeric matrices doped with small filler concentrations. Nevertheless, some limiting factors such as high manufacturing cost and difficulty in obtaining adequate uniform dispersions still remain an obstacle to the extensive manufacturing of these composites. Conversely, recent investigations demonstrate the superior properties of graphene, as well as better dispersion and relatively low manufacturing cost. Although these recent findings have begun to turn the attention towards graphene, the number of publications dealing with the theoretical analysis of graphene-reinforced structural elements is rather scant. In this context, the present work reports the bending and vibrational behavior of functionally graded graphene- and carbon nanotube-reinforced composite flat plates. The macroscopic elastic moduli of the composites are computed by means of the Mori-Tanaka model. The results demonstrate superior load bearing capacity of graphene-reinforced composite plates for both fully aligned and randomly oriented filler configurations. In addition, defects in the microstructure stemming from agglomeration and restacking of graphene sheets into graphite platelets are also analyzed.
机译:近年来,碳基纳米材料已引起了科学界的很大关注。在一些实验研究报道了掺杂低填料浓度的聚合物基体的机械性能得到显着提高之后,大多数研究都集中在碳纳米管上。然而,某些限制因素,例如高制造成本和难以获得足够的均匀分散体,仍然是这些复合材料广泛制造的障碍。相反,最近的研究证明了石墨烯的优越性能,以及更好的分散性和相对较低的制造成本。尽管这些最新发现已开始将注意力转向石墨烯,但有关石墨烯增强的结构元素的理论分析的出版物却很少。在这种情况下,本工作报道了功能梯度石墨烯和碳纳米管增强的复合平板的弯曲和振动行为。复合材料的宏观弹性模量通过Mori-Tanaka模型计算。结果表明,石墨烯增强的复合板在完全对齐和随机取向的填充料结构中均具有出色的承载能力。此外,还分析了由于石墨烯片的团聚和重新堆积成石墨片而产生的微观结构缺陷。

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