预成形件形状对准各向同性热塑性复合材料层合板成形屈曲的影响

G.B. McGuinness, C.M. ÓBrádaigh
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引用次数: 18

摘要

连续纤维增强热塑性复合材料板料成形中的一个重要问题是在快速成形条件下,层合板有脱离平面的弯曲趋势。本文概述了一种用于预测屈曲应力模式的方法,并给出了与预测相对应的实验结果。采用了具有材料不可压缩性和纤维不可扩展性双重运动约束的理想纤维增强牛顿流体的有限元公式。采用混合惩罚有限元法,张力解场和速度解场独立插值。采用了与平面应力假设相一致的分析模型。对于多层叠层,对每一层进行了单独分析,并在此基础上得到了层合板的平均应力预测。对圆形单向、交叉铺层和准各向同性预制体的中心压痕进行了数值应力预测和实验屈曲模式的详细比较。影响切向应力峰值大小和位置的参数包括切向纤维长度和膜片/复合材料粘度比。采用数值和实验两种方法研究了不同形状的准各向同性层合板的板宽和板形对层合板失稳模式的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of preform shape on buckling of quasi-isotropic thermoplastic composite laminates during sheet forming

An important issue in sheet forming of continuous fibre-reinforced thermoplastic composites is the tendency of the laminates to buckle out of plane under rapid forming conditions. This paper outlines a method used to predict the stress patterns responsible for buckling, and presents experimental results that correspond with the predictions. A finite element formulation for ideal fibre-reinforced Newtonian fluids, featuring the twin kinematic constraints of material incompressibility and fibre inextensibility, is used. A mixed penalty finite element approach is adopted, with independent interpolation of tension and velocity solution fields. An analysis model consistent with an assumption of plane stress is used. For multi-ply lay-ups, each ply is analysed individually, and average stress predictions for the laminate are obtained on this basis. A detailed comparison between numerical stress predictions and experimental buckling patterns is presented for central indentation of circular unidirectional, cross-ply and quasi-isotropic preforms. Parameters influencing the magnitude and location of peak tangential stresses include tangential fibre lengths and diaphragm/composite viscosity ratios. The effect of sheet width and shape on the instability patterns is investigated for quasi-isotropic laminates of different shapes, using both numerical and experimental techniques.

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