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Experimental study and progressive failure analysis of stitched foam-core sandwich composites subjected to low-velocity impact

机译:低速撞击缝合泡沫芯夹层复合材料的实验研究与逐步故障分析

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摘要

The effects of the impact energy and stitch density on low-velocity impact (LVI) damage in sandwich structures composed of a stitched foam core and woven face sheets have been investigated both experimentally and numerically. In the LVI experiment, force-time curves are recorded and analyzed to study the impact response of stitched foam core sandwich structures. In the numerical investigation, a progressive damage model for the composite structures is developed based on the continuum damage mechanics (CDM) approach in which the damage forms of the composites are predicted by the strain-based Hashin criteria. The damage evolution is simulated by the stiffness degradation procedure in exponential form. Interface elements are established between the panels and foam core to simulate the initiation and propagation of inter-laminar damage. The stitching region is simplified as glass fiber reinforced resin columns, and its mechanical parameters are estimated by a mixed series-parallel model. The numerical and experimental results are in good agreement, which demonstrates the validity of the progressive failure analysis method. The energy absorption is discussed using a numerical method, and the results help to characterize the damage mechanisms of LVI on stitch foam-core sandwich composites. POLYM. COMPOS., 39:624-635, 2018. (c) 2016 Society of Plastics Engineers
机译:在实验和数值上研究了由缝合泡沫芯和编织面板组成的夹层结构对低速撞击(LVI)损伤的影响能量和针迹密度的影响。在LVI实验中,记录和分析力 - 时间曲线以研究缝合泡沫芯夹层结构的冲击响应。在数值研究中,基于连续损伤力学(CDM)方法开发了复合结构的渐进损伤模型,其中复合材料的损坏形式被基于应变的HASHIN标准预测。损伤进化是通过指数形式的刚度降解程序模拟的。在面板和泡沫芯之间建立接口元件,以模拟层间损坏的启动和传播。缝合区域被简化为玻璃纤维增​​强树脂柱,其机械参数由混合串联平行模型估计。数值和实验结果与良好的一致性,表明逐步失败分析方法的有效性。使用数值方法讨论能量吸收,结果有助于表征LVI对针脚泡沫芯夹层复合材料的损伤机制。聚合物。 Compos。,39:624-635,39:624-635,2018。(c)2016年塑料工程师协会

著录项

  • 来源
    《Polymer Composites》 |2018年第3期|共12页
  • 作者

    Han Fengyu; Yan Ying; Ma Jian;

  • 作者单位

    Beijing Univ Aeronaut &

    Astronaut Sch Aeronaut Sci &

    Engn Beijing 100191 Peoples R China;

    Beijing Univ Aeronaut &

    Astronaut Sch Aeronaut Sci &

    Engn Beijing 100191 Peoples R China;

    Beijing Inst Spacecraft Syst Engn Beijing 100094 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 增强塑料、填充塑料;
  • 关键词

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