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首页> 外文期刊>Composite Structures >Failure prediction of a new sandwich panels based on flax fibres reinforced epoxy bio-composites
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Failure prediction of a new sandwich panels based on flax fibres reinforced epoxy bio-composites

机译:基于亚麻纤维增强环氧生物复合材料的新型夹层板的故障预测

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摘要

Flax fibres reinforced polymer composites are more and more used in various fields such as transportation due to the low density of flax paired up with good mechanical properties. This calls for a better understanding and prediction of the mechanical behaviour of such composites. In this study, the mechanical behaviour of flax fibres fabric reinforced polymer composites has been studied experimentally and numerically for composite laminates and for Omega stiffened Sandwich Panels. Composites laminates plies exhibited a strong nonlinear mechanical behaviour due to the particular structure of flax fibres which is investigated. Likewise, the omega sandwich panels presented the same behaviour and high strength making them competitive with conventional glass fibres reinforced polymer composite sandwich panels used in aeronautics. A material model is proposed to describe the four phases non-linear behaviour that has been implemented to get a predictive finite element model (FE) .Different damage laws have been identified calibrated and implemented as a UMAT routine to get a predictive finite element model (FE). The composite flax ply model includes diffuse damage, failure damage and residual strain. The material model has been validated for many stacking sequences. The finite element model including the four phase behaviour up to damage and failure is demonstrate to reproduce the crack locations and buckling zones and amplitudes of the omega panel under tension and three points bending.
机译:亚麻纤维增强的聚合物复合材料越来越多地用于各种领域,例如由于亚麻的低密度配对具有良好的机械性能而导致的各种领域。这次要求更好地理解和预测这种复合材料的机械行为。在这项研究中,已经通过实验和数值研究了亚麻纤维织物增强聚合物复合材料的机械性能,用于复合层压板和ω加强夹层板。由于研究的亚麻纤维的特定结构,复合材料层压材料表现出强烈的非线性机械行为。同样,欧米茄三明治面板呈现了相同的行为和高强度,使其与航空使用的传统玻璃纤维增​​强聚合物复合夹芯板具有竞争力。提出了一种材料模型来描述已经实施的四个阶段非线性行为,以获得预测有限元模型(FE)。已经识别了各种损害法则校准并实施为UMAT例程以获得预测有限元模型( Fe)。复合亚麻帘布层模型包括漫反射损伤,破坏损伤和残留应变。材料模型已被验证用于许多堆叠序列。将包括四相行为的有限元模型达到损坏和失败,以在张力和三个点弯曲下再现ω面板的裂缝位置和屈曲区域和振幅。

著录项

  • 来源
    《Composite Structures》 |2021年第2期|113361.1-113361.14|共14页
  • 作者单位

    Univ Toulouse Inst Clement Ader ICA CNRS UMR 5312 INSA ISAE Mines Albi UPS Toulouse France;

    Univ Toulouse Inst Clement Ader ICA CNRS UMR 5312 INSA ISAE Mines Albi UPS Toulouse France|Univ Toulouse Lab Chim Agroind INRA LCA Toulouse France|VESO Concept 1620 Route Bellevue F-31530 Merenvielle France;

    Univ Toulouse Inst Clement Ader ICA CNRS UMR 5312 INSA ISAE Mines Albi UPS Toulouse France;

    VESO Concept 1620 Route Bellevue F-31530 Merenvielle France;

  • 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

    Flax Fibre; Woven composite; Sandwich composite; Failure model; Damage model; Cohesive zone model;

    机译:亚麻纤维;编织复合材料;三明治复合材料;失败模型;损伤模型;凝聚区模型;
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