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首页> 外文期刊>Journal of Materials Science >Preform permeability variation with porosity of fiberglass and carbon mats
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Preform permeability variation with porosity of fiberglass and carbon mats

机译:预制棒的渗透性随玻璃纤维和碳纤维毡的孔隙率而变化

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摘要

An experimental investigation on fiber bed permeability variation with porosity for three types of reinforcement mats is performed. The reinforcements consist of plain-weave carbon, plain-weave fiberglass, and chopped fiberglass mats. Resin flow experiments are performed in a rectangular cavity with different fiber volume fractions. RL 440 epoxy resin is used as the working fluid in the experiments. Several layers of mats are laid inside the mold in each experiment and resin is injected at a constant pressure. The effects of reinforcement type and porosity on fiber bed permeability are investigated. Fiber mat permeability of woven mats show large degrees of anisotropy. Resin flow in chopped fiberglass mats is circular, suggesting an isotropic permeability tensor. In all the three cases, preform permeability increases with fiber bed porosity in a non-linear fashion. The results of this investigation could be employed in optimization of liquid composite molding manufacturing processes.
机译:对三种类型的增强垫进行了纤维床渗透率随孔隙率变化的实验研究。增强材料包括平纹碳纤维,平纹玻璃纤维和短切玻璃纤维垫。在具有不同纤维体积分数的矩形腔中进行树脂流动实验。实验中使用RL 440环氧树脂作为工作流体。在每个实验中,在模具内部放置几层垫子,并在恒定压力下注入树脂。研究了增强类型和孔隙率对纤维床渗透性的影响。编织垫的纤维垫渗透性表现出很大的各向异性。切碎的玻璃纤维毡中的树脂流动是圆形的,表明各向同性的渗透张量。在这三种情况下,瓶坯的渗透率都随着纤维床孔隙率的增加而呈非线性增长。研究的结果可用于优化液体复合材料成型工艺。

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