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Defect formation during preforming of a bi-axial non-crimp fabric with a pillar stitch pattern

机译:在预成型带有柱式针迹图案的双轴不卷曲织物期间形成缺陷

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摘要

To capture the asymmetrical shear behaviour of a bi-axial NCF with a pillar stitch, a non-orthogonal constitutive model was developed and implemented in finite element forming simulations. Preforming experiments indicate that the local distribution of defects is significantly different on both sides of each bi-axial ply, with two different defect mechanisms observed. Correlation with simulation results indicates that one defect type is caused by excessive shear, inducing out-of-plane wrinkling in regions of positive shear (macro-scale wrinkling). The other defect type is caused by fibre compression, inducing in-plane wrinkling in regions of negative shear (meso-scale wrinkling). Local distributions of shear angle and wrinkling strain were used to determine the wrinkling mode and to confirm the corresponding defect mechanism. Results indicate that simulations based on the advanced constitutive model can predict local shear angles within ±5°of experimental values and that predicted wrinkling positions and defect types correlate well with the experiments.
机译:为了捕获带有柱缝的双轴NCF的不对称剪切行为,开发了非正交本构模型并将其应用于有限元成形仿真中。预成型实验表明,缺陷的局部分布在每个双轴层板的两侧均存在显着差异,并且观察到两种不同的缺陷机理。与模拟结果的相关性表明,一种缺陷类型是由过度剪切引起的,从而在正剪切区域中引起面外起皱(宏观起皱)。另一种缺陷类型是由纤维压缩引起的,在负剪切力的区域内引起面内起皱(中尺度起皱)。利用剪切角和起皱应变的局部分布确定起皱模式并确定相应的缺陷机理。结果表明,基于高级本构模型的仿真可以预测局部剪切角在实验值的±5°以内,并且预测的起皱位置和缺陷类型与实验相关性很好。

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