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Characterization and analysis of carbon fibre-reinforced polymer composite laminates with embedded circular vasculature

机译:嵌入式圆形脉管系统的碳纤维增强聚合物复合材料层压板的表征和分析

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摘要

A study of the influence of embedded circular hollow vascules on structural performance of a fibre-reinforced polymer (FRP) composite laminate is presented. Incorporating such vascules will lead to multi-functional composites by bestowing functions such as self-healing and active thermal management. However, the presence of off-axis vascules leads to localized disruption to the fibre architecture, i.e. resin-rich pockets, which are regarded as internal defects and may cause stress concentrations within the structure. Engineering approaches for creating these simple vascule geometries in conventional FRP laminates are proposed and demonstrated. This study includes development of a manufacturing method for forming vascules, microscopic characterization of their effect on the laminate, finite element (FE) analysis of crack initiation and failure under load, and validation of the FE results via mechanical testing observed using high-speed photography. The failure behaviour predicted by FE modelling is in good agreement with experimental results. The reduction in compressive strength owing to the embedding of circular vascules ranges from 13 to 70 per cent, which correlates with vascule dimension.
机译:提出了对嵌入式圆形中空血管对纤维增强聚合物(FRP)复合层压板结构性能的影响的研究。通过赋予诸如自我修复和主动热管理等功能,掺入此类血管将产生多功能复合材料。然而,偏轴血管的存在导致纤维结构的局部破坏,即富含树脂的囊袋,其被认为是内部缺陷,并且可能导致结构内的应力集中。提出并证明了在常规FRP层压板中创建这些简单的血管几何形状的工程方法。这项研究包括开发用于形成血管的制造方法,对其在层压板上的作用进行微观表征,在载荷作用下裂纹萌生和破坏的有限元(FE)分析,以及通过使用高速摄影观察的机械测试对FE结果进行验证。有限元建模预测的失效行为与实验结果吻合良好。由于圆形脉管的嵌入,抗压强度降低了13%至70%,这与脉管的尺寸有关。

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