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STRESS ANALYSES OF COMPOSITE LAMINATE WITH DELAMINATION USING X-FEM

机译:基于X-FEM的复合材料层合板脱层应力分析

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摘要

The extended finite element method (X-FEM) is applied to the stress analysis of composite laminates having interlaminar planar delamination. In X-FEM analysis, the geometry of such delaminations can be modeled independent of the finite elements. The domain form of the contour integral can be used to compute the energy release rate in conjunction with X-FEM. As numerical examples, three-dimensional analyses for DCB and ENF test specimens were performed by X-FEM with various enrichment nodes, and the obtained results were examined. In addition, a model of the no-friction-contact condition by X-FEM was proposed and applied to ENF test analysis. Moreover, eigenvalue buckling analyses of a CFRP plate with delamination were performed by X-FEM as a practical example related to Compression After Impact (CAI) problems of composite materials. The numerical results show that X-FEM is an effective method for analyzing stress in composite laminates with delamination.
机译:扩展有限元方法(X-FEM)应用于具有层间平面分层的复合材料层板的应力分析。在X-FEM分析中,可以独立于有限元建模此类分层的几何形状。轮廓积分的域形式可以与X-FEM一起用于计算能量释放率。作为数值示例,通过X-FEM在各种富集节点上对DCB和ENF试样进行了三维分析,并检验了获得的结果。此外,提出了X-FEM的无摩擦接触条件模型,并将其应用于ENF测试分析。此外,通过X-FEM对具有分层的CFRP板进行特征值屈曲分析,作为与复合材料的冲击后压缩(CAI)问题相关的实例。数值结果表明,X-FEM是一种有效的分析分层复合层压板中应力的方法。

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