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Contributions to the process modelling of resin infusion under flexible tooling (RIFT) manufacturing for composite aerostructures

机译:对复合材料航空结构的柔性工具(RIFT)制造下的树脂灌注过程建模的贡献

摘要

The cost of manufacturing textile-reinforced composite aerostructures using Resin Infusion under Flexible Tooling (RIFT) can be reduced by computational modelling. This paper outlines the current progress and contributions made towards this goal. A continuum-based material model was incorporated into a finite element package to simulate the draping of a dry carbon fibre fabric. It accurately tracks the changes in the warp and weft fibre orientations and has been experimentally validated. Material characterisation was performed to determine the tensile and shear properties of a plain weave fabric reinforcement material. In support of bias extension shear testing, an accessible Digital Image Correlation (DIC) approach was developed for accurate optical strain measurement. A relationship between permeability and shear angle was also experimentally determined using a novel permeability measurement technique. Future work is planned to combine all these aspects in an infusion model and demonstrate the complete process model.
机译:可以通过计算建模来降低在柔性工具(RIFT)下使用树脂注入来制造织物增强复合材料航空结构的成本。本文概述了当前的进展以及为实现该目标所做的贡献。将基于连续体的材料模型合并到有限元程序包中,以模拟干燥碳纤维织物的悬垂性。它可以准确跟踪经纬纤维方向的变化,并已通过实验验证。进行材料表征以确定平纹织物增强材料的拉伸和剪切性能。为了支持斜度延伸剪切测试,开发了一种可访问的数字图像关联(DIC)方法来进行精确的光学应变测量。还使用新型渗透率测量技术通过实验确定了渗透率和剪切角之间的关系。计划将来的工作,将所有这些方面组合到输液模型中,并演示完整的过程模型。

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