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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Fracture and mechanical behavior of vacuum-assisted microwave cured unidirectional carbon woven fabric reinforced epoxy composite
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Fracture and mechanical behavior of vacuum-assisted microwave cured unidirectional carbon woven fabric reinforced epoxy composite

机译:真空辅助微波固化单向碳织物增强环氧复合材料的骨折和力学行为

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摘要

Woven fabric reinforced epoxy composite shown inherent favorable characteristics for aerospace industry applications. This paper comprehensively investigated the mechanical and fracture behavior of unidirectional carbon woven fabric reinforced epoxy composite using experimental and computational techniques. The composites were fabricated with two, four, and six ply laminates with cross-ply and inclined ply (45/-45) orientations. Laminates were fabricated using Vacuum-Assisted Resin Infusion Microwave Curing technique with a high fiber volume fraction of 50% for each laminate. Experimental analyses were performed to predict the behavior of composites under tensile, shear, and impact loading environment. Further, the mean-field homogenization technique coupled with the finite element method was employed to predict orthotropic material properties, fracture energy, and fracture parameters (K-IC and G(IC)) of the composite. The results showed that fracture energy obtained by the computational technique was in good agreement with experimental results. The values of G(IC) increased with the number of plies both for cross and inclined plies orientation composites. K-IC values were higher for cross plies laminates than the inclined plies laminates.
机译:编织织物增强环氧树脂复合材料显示了航空航天工业应用的固有良好特性。本文全面研究了使用实验和计算技术的单向碳织物增强环氧树脂复合材料的机械和断裂行为。复合材料用两种,六个层层层制成,具有交叉层和倾斜的帘布层(45 / -45)取向。使用真空辅助树脂输注微波固化技术制造层压材料,每个层压材料的纤维体积分数为50%。进行实验分析以预测拉伸,剪切和冲击载荷环境下复合材料的行为。此外,采用与有限元方法联接的平均场均化技术,以预测复合材料的正交材料性质,断裂能量和断裂参数(K-IC和G(IC))。结果表明,通过计算技术获得的裂缝能量与实验结果吻合良好。 G(IC)的值随着交叉和倾斜形状型取向复合材料的帘布层的数量而增加。 k-IC值对于层叠层叠层叠的k-ic值比倾斜层层压板更高。

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