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Cylindrical bending of multilayered plates with multi-delamination via a layerwise stress approach

机译:通过分层应力方法多层分层的多层板的圆柱弯曲

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摘要

Three-dimensional finite element simulations of delamination propagation in multilayered plates are usually expensive in computational time and memory. In this paper, a two-dimensional layerwise model, called the LSI model, is introduced as an accurate and effective alternative to the finite element method. The LSI model is extended to the analysis of delamination growth in multilayered plates subjected to cylindrical bending loading. To this end, a general multilayered plate with arbitrary boundary conditions is investigated. By imposing the unilateral contact conditions at delaminated interfaces, analytical LSI solutions to a general multi-delamination problem are obtained. As application examples, two classical mode I (Double Cantilever) and mode II (End Notched Flexure) delamination tests are investigated. By considering two types of crack resistance curve, the delamination propagation in composite laminates is studied. The LSI results are found and compared to those of a finite element model. Very good agreements between the results of the two models prove the efficiency and accuracy of the LSI model for the simulation of delamination propagation in laminates subjected to cylindrical bending.
机译:多层板中分层传播的三维有限元模拟通常在计算时间和内存上都很昂贵。在本文中,引入了二维分层模型,称为LSI模型,作为有限元方法的一种精确有效的替代方法。 LSI模型扩展到承受圆柱弯曲载荷的多层板中分层生长的分析。为此,研究了具有任意边界条件的普通多层板。通过在分层界面上施加单边接触条件,可以获得针对一般多分层问题的解析LSI解决方案。作为应用示例,研究了两种经典的I型(双悬臂)和II型(端部弯曲挠性)分层测试。通过考虑两种类型的抗裂曲线,研究了复合材料层合板中的分层传播。找到LSI结果并将其与有限元模型的结果进行比较。两种模型的结果之间的很好的一致性证明了LSI模型在圆柱弯曲下层压板中分层传播模拟的效率和准确性。

著录项

  • 来源
    《Composite Structures》 |2013年第1期|728-739|共12页
  • 作者单位

    Universiti Paris-Est, Laboratoire Navier (Ecole des Fonts ParisTech, IFSTTAR, CNRS), tcole des Fonts Paristech, 6 et 8 avenue Blaise Pascal, 77455 Marne-la-Vallee, France;

    Universiti Paris-Est, Laboratoire Navier (Ecole des Fonts ParisTech, IFSTTAR, CNRS), tcole des Fonts Paristech, 6 et 8 avenue Blaise Pascal, 77455 Marne-la-Vallee, France;

    Universiti Paris-Est, Laboratoire Navier (Ecole des Fonts ParisTech, IFSTTAR, CNRS), tcole des Fonts Paristech, 6 et 8 avenue Blaise Pascal, 77455 Marne-la-Vallee, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multilayer; layerwise model; multi-delamination; cylindrical bending; energy release rate;

    机译:多层分层模型多层次圆柱弯曲能量释放率;

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