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首页> 外文期刊>Composites Science and Technology >Simulating damage and delamination in fibre metal laminate joints using a three-dimensional damage model with cohesive elements and damage regularisation
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Simulating damage and delamination in fibre metal laminate joints using a three-dimensional damage model with cohesive elements and damage regularisation

机译:使用具有内聚元素和损伤正则化的三维损伤模型模拟纤维金属层压板接头中的损伤和分层

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摘要

This paper investigates the capability of a three-dimensional finite element model with damaging material behaviour, cohesive elements and damage regularisation to simulate complex damage patterns in fibre metal laminate (FML) joints. The model incorporates a three-dimensional continuum damage mechanics approach for the composite plies, a plasticity model for the aluminium layers, and a delamination model between layers. A nonlocal averaging scheme is implemented to mitigate the mesh sensitivity that occurs with strain-softening material models. Bearing stress-strain responses and variations in stiffness are calculated, and damage progression is described in detail for all plies and interfaces. Microscopy and stress-strain data from a parallel series of experimental tests are presented, and damage and failure phenomena observed in the tests are compared with the model. Generally, good agreement between model and tests was achieved but certain limitations of the numerical model were observed and are discussed. The combined numerical and experimental information provide a detailed understanding of the failure sequence of FML joints.
机译:本文研究了具有破坏性材料行为,内聚性元素和损伤正则化的三维有限元模型模拟纤维金属层压板(FML)接头中复杂损伤模式的能力。该模型包含用于复合层的三维连续介质破坏力学方法,用于铝层的可塑性模型以及层之间的分层模型。实施了非局部平均方案以减轻因应变软化材料模型而引起的网格敏感性。计算轴承的应力-应变响应和刚度变化,并详细描述所有层和界面的损伤进程。提出了来自一系列并行实验测试的显微镜和应力应变数据,并将测试中观察到的损坏和破坏现象与模型进行了比较。通常,模型和测试之间达到了良好的一致性,但是观察到并讨论了数值模型的某些局限性。组合的数值和实验信息提供了对FML接头失效顺序的详细了解。

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  • 来源
    《Composites Science and Technology》 |2011年第9期|p.1225-1235|共11页
  • 作者单位

    Composites Research Centre, Materials and Surface Science Institute, Dept. of Mechanical & Aeronautical Engineering, University of Limerick, Limerick, Ireland;

    Composites Research Centre, Materials and Surface Science Institute, Dept. of Mechanical & Aeronautical Engineering, University of Limerick, Limerick, Ireland;

    Composites Research Centre, Materials and Surface Science Institute, Dept. of Mechanical & Aeronautical Engineering, University of Limerick, Limerick, Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Joints; A. Hybrid composites; C. Computational mechanics; C. Modelling;

    机译:关节;A.杂化复合材料;C.计算力学;C。造型;

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