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Analysis of microstructural, thermal and mechanical properties of unidirectional glass fiber fabrics exhibiting sizing migration

机译:表现出上浆迁移的单向玻璃纤维织物的微观结构,热学和力学性能分析

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摘要

Glass fibre/epoxy composites are widely used in construction, aerospace, automotive and wind turbine industries. During the manufacturing of glass fibres, they are surface-treated with an aqueous polymeric solution in a process called as sizing. This aqueous sizing composition protects the fibers, eases its handling and facilitates the interaction of fibres and matrix at the interface which affects the mechanical properties of the composites. The present study looks at the effect of a phenomenon called as 'sizing migration' on the strength, stiffness and failure mechanisms under tensile, compressive and inter-laminar shear loads in unidirectional glass fiber/epoxy composites. A detailed study has been performed to elucidate how sizing morphology underlying these glass fibers impact the stress-strain behaviour of the composite. Unidirectional glass fiber/epoxy composites were manufactured using vacuum assisted resin infusion molding process which exhibited a fiber volume fraction of similar to 58 +/- 2%. From the analysis of the relevant mechanical parameters, an intrinsic correlation between the strength and the sizing migration phenomenon has been deduced and explained on the basis of stress-strain curves under different loading conditions. The present study can help in defining the acceptance and rejection criteria in unidirectional fabrics with sizing migration issues.
机译:玻璃纤维/环氧树脂复合材料广泛用于建筑,航空航天,汽车和风力涡轮机行业。在玻璃纤维的制造过程中,将它们用聚合物水溶液在称为上浆的过程中进行表面处理。该含水上浆组合物保护纤维,使纤维易于处理并促进纤维和基体在界面处的相互作用,从而影响复合材料的机械性能。本研究着眼于单向玻璃纤维/环氧树脂复合材料在拉伸,压缩和层间剪切载荷下,一种称为“上浆迁移”的现象对强度,刚度和破坏机理的影响。已经进行了详细的研究,以阐明这些玻璃纤维背后的施胶形态如何影响复合材料的应力应变行为。单向玻璃纤维/环氧树脂复合材料是使用真空辅助树脂灌注成型工艺制造的,其纤维体积分数约为58 +/- 2%。通过对相关力学参数的分析,得出了强度与施胶迁移现象之间的内在联系,并根据不同载荷条件下的应力应变曲线进行了解释。本研究可以帮助确定具有迁移问题的单向结构中的接受和拒绝标准。

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