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Buckling of hybrid nanocomposites with embedded graphene and carbon nanotubes

机译:嵌入石墨烯和碳纳米管的杂化纳米复合材料的屈曲

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摘要

With the aid of atomistic multiscale modelling and analytical approaches, buckling strength has been determined for carbon nanofibres/epoxy composite systems. Various nanofibres configurations considered are single walled carbon nano tube (SWCNT) and single layer graphene sheet (SLGS) and SLGS/SWCNT hybrid systems. Computationally, both eigen-value and non-linear large deformation-based methods have been employed to calculate the buckling strength. The non-linear computational model generated here takes into account of complex features such as debonding between polymer and filler (delamination under compression), nonlinearity in the polymer, strain-based damage criteria for the matrix, contact between fillers and interlocking of distorted filler surfaces with polymer. The effect of bridging nanofibres with an interlinking compound on the buckling strength of nano-composites has also been presented here. Computed enhancement in buckling strength of the polymer system due to nano reinforcement is found to be in the range of experimental and molecular dynamics based results available in open literature. The findings of this work indicate that carbon based nanofillers enhance the buckling strength of host polymers through various local failure mechanisms.
机译:借助原子多尺度建模和分析方法,已经确定了碳纳米纤维/环氧复合材料系统的屈曲强度。考虑的各种纳米纤维配置为单壁碳纳米管(SWCNT)和单层石墨烯片(SLGS)和SLGS / SWCNT混合系统。在计算上,特征值和基于非线性大变形的方法都已被用来计算屈曲强度。此处生成的非线性计算模型考虑到了复杂的功能,例如聚合物与填料之间的脱粘(压缩下分层),聚合物中的非线性,基体基于应变的损伤准则,填料之间的接触以及变形的填料表面互锁与聚合物。此处还介绍了用交联化合物桥接纳米纤维对纳米复合材料屈曲强度的影响。发现基于纳米增强的聚合物系统的屈曲强度的计算增强在开放文献中可得的基于实验和分子动力学的结果的范围内。这项工作的发现表明,基于碳的纳米填料通过各种局部破坏机制增强了主体聚合物的屈曲强度。

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