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Mechanical Properties of Carbon Fiber/Epoxy Composites: Effects of Number of Plies, Fiber Contents, and Angle-Ply Layers

机译:碳纤维/环氧树脂复合材料的机械性能:层数,纤维含量和角层层的影响

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摘要

Multi-axial multi-ply fabric (MMF) composites are becoming increasingly popular as reinforcing materials in high-performance composites due to their high mechanical properties. This work aimed to study the effects of three variable parameters including fiber contents, numbers of plies, and layer orientations on the mechanical properties of MMF composites. Unidirectional carbon fibers and a two-part epoxy resin were employed to produce the composite laminates using the manual lay-up process. It was found that the mechanical properties of composites made with 5-ply were slightly greater than 3-ply composites. However, there was no highly significant difference between them. Generally, the angle-ply of the composites showed the greatest effect on the mechanical properties compared with number of plies and layer orientations. The significant improvements in mechanical properties of the composites were further supported using scanning electron microscopy (SEM). Morphologies of the tensile fracture surfaces of composites revealed that the presence of fiber pulled out results in the creation of voids between the fibers and matrix polymer. This causes the mechanical properties of the composites to be reduced.
机译:多轴多层织物(MMF)复合材料由于其高机械性能而日益成为高性能复合材料中的增强材料。这项工作旨在研究三个可变参数(包括纤维含量,层数和层取向)对MMF复合材料力学性能的影响。采用单向碳纤维和由两部分组成的环氧树脂,通过人工铺层工艺生产复合层压板。发现由5层复合材料制成的复合材料的机械性能略大于3层复合材料。但是,它们之间并没有高度显着的差异。通常,与层数和层取向相比,复合材料的层角对机械性能的影响最大。使用扫描电子显微镜(SEM)进一步支持了复合材料机械性能的显着改善。复合材料的拉伸断裂表面的形态表明,拉出的纤维的存在导致在纤维和基质聚合物之间形成空隙。这导致复合材料的机械性能降低。

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