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首页> 外文期刊>Acta astronautica >Ply level failure prediction of carbon fibre reinforced laminated composite panels subjected to low velocity drop-weight impact using adaptive meshing techniques
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Ply level failure prediction of carbon fibre reinforced laminated composite panels subjected to low velocity drop-weight impact using adaptive meshing techniques

机译:利用自适应网格技术预测低速落锤冲击下碳纤维增强复合材料板的层级破坏

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摘要

This work is concerned with physical testing and numerical simulations of flat and round nose drop-weight impact of carbon fibre-reinforced laminate composite panels to predict ply level failure. Majority of the existing studies on impact of composites by spherical nose impactors are experimental, computational models are simplified, and based on classical laminated plate theories where contributions of through-thickness stresses are neglected. Present work considers flat nose impact and contributions from through-thickness stresses and is mainly simulation based. A computational model was developed in ABAQUS™ software using adaptive meshing techniques. Simulation produced (2D model) stresses were numerically integrated using MATALB™ code to predict through-thickness (3D) stresses. Through-the-thickness stresses were then utilised in advanced failure criteria coded in MATLAB™ software to predict ply level failures. Simulation produced results demonstrate that the computational model can efficiently and effectively predict ply-by-ply failure status of relatively thick laminates.
机译:这项工作涉及物理测试和碳纤维增强层压复合板的扁平和圆形鼻头落锤重量冲击的数值模拟,以预测层级破坏。现有的关于球形鼻冲击器对复合材料的冲击的研究大多是实验性的,简化了计算模型,并且基于忽略了整个厚度应力贡献的经典层压板理论。目前的工作考虑了扁平鼻子的影响以及整个厚度应力的影响,并且主要基于仿真。使用自适应网格技术在ABAQUS™软件中开发了一个计算模型。使用MATALB™代码对产生的模拟(2D模型)应力进行数值积分,以预测厚度(3D)应力。然后,在MATLAB™软件中编码的高级失效准则中利用了整个厚度的应力,以预测层级失效。仿真产生的结果表明,该计算模型可以有效地预测相对较厚的层压板的逐层破坏状态。

著录项

  • 来源
    《Acta astronautica》 |2014年第sepaaocta期|169-177|共9页
  • 作者

    Umar Farooq; Peter Myler;

  • 作者单位

    Faculty of Engineering and Advanced Sciences, University of Bolton, Bolton, BL3 5AB, United Kingdom;

    Faculty of Engineering and Advanced Sciences, University of Bolton, Bolton, BL3 5AB, United Kingdom,Head of Engineering and Design Department, University of Bolton, Bolton BL3 5AB UK;

  • 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

    A. Carbon fibre; B. Impact behaviour; C. Computational modelling; D. Mechanical testing Adaptive meshing;

    机译:A.碳纤维;B.影响行为;C.计算建模;D.机械测试自适应网格划分;

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