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Symmetrical and Antisymmetrical Sequenced Fibers with Epoxy Resin on Rectangular Reinforced Structures Under Axial Loading

机译:轴向载荷作用下矩形增强结构上带有环氧树脂的对称和非对称有序纤维

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In this study, Finite element Method (FEM) evaluation is performed for the compressive failure of reinforced structures with layered composite shells under axial loading. In addition, embeddeddelamination between the reinforcing layered composite shells and the core is considered as a defect. The layered composite shells are made of 12 plies of equal thickness of Kevlar, CFC, and E-Glass with epoxy resin. Considering the orientation and laminate, three different layered composite shells, (0°/90°/0°/90°/0°/90°), (45°/-45°/0°/90°/60°/-30°), and (60°/-30°/90°/0°/30°/90°), are considered for symmetrical and antisymmetrical sequences. These results are obtained through ABAQUSsimulations and subsequent analysis. The results show that symmetrical and antisymmetrical sequences can be used as an index for quality control and as a safety factor of composite shells produced by the hand lay-up technique in certain industrial processes. The delamination growth is also investigated with the help of cohesive elements. Buckling phenomenon occurred abruptly due to the fast propagation of delamination, having face/core debond.
机译:在该研究中,对轴向负载下的分层复合壳的增强结构的压缩失效进行了有限元方法(FEM)评估。另外,嵌入式 增强层状复合壳和芯之间的分层被认为是缺陷。层状复合壳由12个等厚度的Kevlar,CFC和具有环氧树脂的E-玻璃制成。考虑到方向和层压板,三种不同的层状复合壳,(0°/ 90°/ 0°/ 90°/ 0°/ 90°)(45°/ -45°/ 0°/ 90°/ 60°/ - 30°)和(60°/ -30°/ 90°/ 90°/ 0°/ 0°/ 0°/ 0°/ 90°),被认为是对称和防静脉序列。这些结果通过ABAQUS获得 模拟和随后的分析。结果表明,对称和防逆对称序列可用作质量控制的指标,也可作为由某些工业过程中的手放置技术产生的复合壳的安全系数。在粘性元素的帮助下也调查分层生长。由于分层的快速传播,弯曲现象突然发生,具有面部/核心借方。

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