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Uncertainty in geometry of fibre preforms manufactured with Automated Dry Fibre Placement (ADFP) and its effects on permeability

机译:使用自动干纤维铺放(ADFP)生产的纤维预成型坯的几何形状不确定性及其对渗透性的影响

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摘要

Resin transfer moulding is one of several processes available for manufacturing fibre-reinforced composites from dry fibre reinforcement. Recently, dry reinforcements made with Automated Dry Fibre Placement have been introduced into the aerospace industry. Typically, the permeability of the reinforcement is assumed to be constant throughout the dry preform geometry whereas in reality it possesses inevitable uncertainty due to variability in geometry. This uncertainty propagates to the uncertainty of the mould filling and the fill time, one of the important variables in resin injection. It makes characterisation of the permeability and its variability an important task for design of the resin transfer moulding process. In this study, variability of the geometry of a reinforcement manufactured using Automated Dry Fibre Placement is studied. Permeability of the manufactured preforms is measured experimentally and compared to stochastic simulations based on an analytical model and a stochastic geometry model. The simulations showed that difference between the actual geometry and the designed geometry can result in 50% reduction of the permeability. The stochastic geometry model predicts results within 20% of the experimental values.
机译:树脂传递模塑是从干纤维增强制造纤维增强复合材料的几种方法之一。最近,用自动干纤维铺放制成的干增强材料已被引入航空航天工业。通常,假定增强物的渗透性在整个干燥的预成型坯的几何形状中是恒定的,但实际上,由于几何形状的可变性,其具有不可避免的不确定性。这种不确定性会传播到模具填充和填充时间的不确定性,这是树脂注入中的重要变量之一。它使渗透率及其可变性的表征成为树脂传递模塑工艺设计的重要任务。在这项研究中,研究了使用自动干纤维铺放制造的增强材料的几何形状的可变性。通过实验测量制造的预成型坯的渗透性,并将其与基于分析模型和随机几何模型的随机模拟进行比较。仿真表明,实际几何形状与设计几何形状之间的差异可能导致渗透率降低50%。随机几何模型可预测结果在实验值的20%以内。

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