Three-Dimensional Effect in the Prediction of Flange Delamination in Composite Skin-Stringer Pull-off Specimens

Jian Li
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引用次数: 23

Abstract

Three-dimensional finite element modeling was used to analyze the delamination between the stiffener flange and the skin of a typical pull-off specimen representing a section of a stiffened skin panel. The finite element analysis results were used to calculate the total strain energy release rate and its Mode I, Mode II, and Mode III components along the delamination front through the width of the pull-off specimen. Three-dimensional modeling makes it possible to represent ply-by-ply lamina properties in the model. However, the ply-by-ply approach should not be used for highly angle ply laminates because of the strong transverse effect from adjacent plies. A smeared properties approach is more robust for the strain energy release rate analysis of delamination between ±45-degree angle ply laminates. The three-dimensional analysis indicates that delamination failure between the stiffener flange and the skin is dominated by Mode I and Mode II delamination modes. The three-dimensional analysis predicts delamination growth from the interior of the pull-off specimen width, and higher pull-off load is required to grow the delamination close to the free edges. The delamination initiation load along the interior of the pull-off specimen width does not change with the change of the width of the pull-off specimen. However, the wider specimen has stronger free edge effects than the narrower specimen. The lay-up of the skin and the flange can have significant effect on the delamination initiation load. Stiffening the skin and maintaining the compliant flange will increase the delamination initiation load.
三维效应在复合材料皮筋拉脱试样法兰分层预测中的应用
采用三维有限元模型分析了典型拉脱试件加筋翼缘与蒙皮之间的分层现象。利用有限元分析结果计算了沿脱层前沿沿拉脱试件宽度方向的总应变能释放率及其I、II、III型分量。三维建模使得在模型中逐层表示层的特性成为可能。然而,一层接一层的方法不应该用于大角度层压板,因为相邻层的横向效应很强。对于±45度夹角层合板脱层的应变能释放率分析,涂抹性能方法更为可靠。三维分析表明,加劲翼缘与蒙皮之间的分层破坏以I型和II型分层破坏为主。三维分析从拉脱试样宽度的内部预测分层生长,并且需要较高的拉脱载荷使分层生长靠近自由边缘。沿拉脱试件宽度方向的脱层起裂载荷不随拉脱试件宽度的变化而变化。然而,较宽的试样比较窄的试样具有更强的自由边缘效应。蒙皮和法兰的堆积对分层起裂载荷有显著影响。加固蒙皮和保持法兰的柔顺会增加脱层起裂载荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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