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Numerical analysis of low-velocity rigid-body impact response of composite panels

机译:复合材料板低速刚体冲击响应的数值分析

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摘要

This paper investigates various modelling strategies to identify the most suitable approach for modelling the low-velocity impact response of laminated composite panels. The purpose of this paper is to thoroughly investigate a dropped tool scenario or a ground vehicle impact on an aircraft fuselage panel using detailed numerical models. Three-dimensional meso-scale finite element models have been developed and implemented with user-defined material subroutines in ABAQUS/Standard. The models predict the simultaneous evolution of inter-laminar and intra-laminar damage mechanisms that occur in composite panels during impact. The paper describes the implementation of the combined inter/ intra-laminar models and assesses their performance. User-defined material models developed in previous work for quasi-static problems have been further developed in this paper for damage analysis under impact loading. Experimental drop-weight impact tests, representative of low-velocity high-energy rigid-body impacts, have been carried out for model validation. Impact energy levels were varied from 10 to 40 J to evaluate the damage threshold and damage area that develops within the laminate. The results of the combined inter/intra-laminar model are in excellent agreement with experimental data, especially in terms of energy absorbed during impact. Numerical results provide an accurate description of the threshold at which a significant change in laminate stiffness occurs. It is shown conclusively that the combined inter/ intra-laminar damage model developed in this work can be employed as an accurate predictive tool for low-velocity impact events.
机译:本文研究了各种建模策略,以确定最合适的方法来对层压复合板的低​​速冲击响应进行建模。本文的目的是使用详细的数值模型来彻底研究掉落工具的情况或地面车辆对飞机机身面板的影响。已经开发了3维中尺度有限元模型,并使用ABAQUS / Standard中的用户定义的材料子例程来实现。该模型预测在冲击过程中复合板中发生的层间和层内损伤机制的同时演变。本文描述了层间/层内组合模型的实现并评估了它们的性能。本文针对准静态问题在先前的工作中开发的用户定义材料模型已得到进一步开发,用于冲击载荷下的损伤分析。为了验证模型,已经进行了代表低速高能刚体冲击的实验性落锤冲击试验。冲击能级从10到40 J不等,以评估层压板内部形成的损伤阈值和损伤区域。层间/层内组合模型的结果与实验数据非常吻合,特别是在冲击过程中吸收的能量方面。数值结果提供了阈值的准确描述,在该阈值处层压板刚度发生了显着变化。结论性地表明,在这项工作中开发的组合的层间/层内损伤模型可以用作低速撞击事件的准确预测工具。

著录项

  • 来源
    《International journal of crashworthiness》 |2015年第2期|27-43|共17页
  • 作者单位

    Department of Mechanical, Aeronautical and Biomedical Engineering, Irish Centre for Composites Research, Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

    Department of Mechanical, Aeronautical and Biomedical Engineering, Irish Centre for Composites Research, Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

    Department of Mechanical, Aeronautical and Biomedical Engineering, Irish Centre for Composites Research, Materials and Surface Science Institute, University of Limerick, Limerick, Ireland,Energy Harvesting and Storage Research Group, Efficient Energy Transfer (ηET) Department, Bell Labs Research, Dublin, Ireland;

    Department of Mechanical, Aeronautical and Biomedical Engineering, Irish Centre for Composites Research, Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

  • 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

    composite; low-velocity impact; in-plane damage; delamination; finite element analysis;

    机译:综合;低速冲击;面内损坏;分层有限元分析;

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