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首页> 外文期刊>Journal of Composite Materials >Modeling of composite laminates with multiple delaminations under compressive loading
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Modeling of composite laminates with multiple delaminations under compressive loading

机译:压缩载荷下具有多个分层的复合材料层板的建模

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摘要

Multiple delaminations are more realistic damage types in the laminated composite structures. In this study, buckling and postbuckling analysis was conducted for the composite laminates with multiple delaminations under compressive loading. In anonlinear finite element formulation, the updated Lagrangian description and modified arc-length method were adopted. For a finite element modeling of composite laminates, the eight-node degenerated shell element was used. To avoid the overlapping between delaminated layers, which is a physically inadmissible buckling mode, the contact node pair was defined by use of virtual beam element It employed constraints at the overlapped region in the load incremental procedure. Using this modeling of multipledelaminations. accurate results were obtained for the buckling and postbuckling behavior of composite laminates. Numerical results showed that multiple delaminations lower buckling loads and load carrying capacities in the postbuckling region.
机译:在层压复合结构中,多次分层是更实际的损伤类型。在这项研究中,对在压缩载荷下具有多个分层的复合层压板进行了屈曲和后屈曲分析。在非线性有限元公式中,采用了更新的拉格朗日描述和改进的弧长方法。对于复合材料层压板的有限元建模,使用了八节点简并壳单元。为了避免分层层之间的重叠(这在物理上是不允许的屈曲模式),使用虚拟梁单元定义了接触节点对。在载荷增量过程中,在重叠区域采用了约束。使用多重分层建模。获得了复合材料层压板的屈曲和后屈曲行为的准确结果。数值结果表明,多次分层降低了后屈曲区域的屈曲载荷和承载能力。

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