在玻璃环氧树脂复合材料中交织碳-玻璃纱以提高模态 I 断裂韧性--一种混合方法

Vinayak Uppin, Shivakumar Gouda, I. Sridhar, U. M. A., Aravind Muddebihal, A. Edacherian
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摘要

本研究调查了使用玻璃和碳纱的混合交错技术对提高玻璃环氧层压板模态 I 断裂韧性的影响。研究人员使用市面上不同等密度的无纺碳纱和玻璃纱来开发混合交错复合材料。在使用手糊技术制造交织复合材料层压板时,采用了两种交织方法,即层间交织和纱间交织。对双悬臂梁(DCB)样品进行了测试,以估算层间断裂韧性(IFT)。测试结果表明,层间交错复合材料(I-C30G30)的初始断裂韧性和扩展断裂韧性分别提高了约 16.98% 和 3.08%。与普通样品相比,I-C15G30 和 I-C20G30 在初始断裂韧性和扩展断裂韧性方面都有所下降。与普通样品相比,W-C15G30 样品的断裂韧性(GIC 和 GIP)分别提高了约 7.96% 和 12.94%,而 W-C20G30 和 W-C30G30 的断裂韧性(GIC)分别下降了约 12.15% 和 9.22%,断裂韧性(GIP)分别提高了约 12.37% 和 13.82%。裂纹层压板的扫描电子照片(SEPI)见证了混合层交错和非交错复合材料层压板的断裂机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interleaving Carbon-Glass Veil in Glass Epoxy Composite for Improved Mode-I Fracture Toughness – A Hybrid Approach
The present study investigates the influence of hybrid interleaving technique using Glass and Carbon veils to improve the mode-I fracture toughness in Glass epoxy laminates. Commercially available non-woven Carbon and Glass veils with different areal densities were used to develop hybrid interleaved composites. Two approaches of interleaving, namely inter-ply and inter-weaved veils, were followed to manufacture the interleaved composite laminates using the hand layup technique. Double Cantilever Beam (DCB) samples were tested to estimate the interlaminar fracture toughness (IFT). Test results indicate that the inter-ply interleaved composite (I-C30G30) exhibited an improved initial and propagation fracture toughness of about 16.98% and 3.08%, respectively. A decreased IFT during initiation and propagation was observed for I-C15G30 and I-C20G30 when compared to plain samples. In case of inter-weaved veil interleaving approach, an improved fracture toughness (GIC and GIP) of about 7.96% and 12.94%, respectively, was observed for W-C15G30 sample, nevertheless W-C20G30 and W-C30G30 showed a drop in fracture toughness (GIC) of an about 12.15% and 9.22%, respectively, and an improvement in fracture toughness (GIP) of about 12.37% and 13.82%, respectively, when compared to plain sample. Scanning electron photo images (SEPI) of cracked laminates witnessed the fracture mechanisms involved in hybrid ply interleaved and non-interleaved composite laminates.
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