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On the capability of micromechanics models to capture the auxetic behavior of fibers/particles reinforced composite materials

机译:关于微力学模型捕获纤维/颗粒增强复合材料的拉力行为的能力

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摘要

This work investigates the possibility to predict the auxetic behavior of composites consisting of non-auxetic phases by means of micromechanical models based on Eshelby's inclusion concept. Two specific microstructures have been considered: (i) the three-layered hollow-cored fibers-reinforced composite and (ii) a microstructure imitating the re-entrant honeycomb micro-architecture. The micromechanical analysis is based on kinematic integral equations as a formal solution of the inhomogeneous material problem. The interaction tensors between the inhomogeneities are computed thanks to the Fourier's transform. The material anisotropy due to the morphological and topological textures of the inhomogeneities was taken into account thanks to the multi-site approximation of these tensors. In both cases, the numerical results show that auxetic behavior cannot be captured by such models at least in the case of elastic and isotropic phases. This conclusion is supported by corresponding finite element investigations of the second microstructure that indicate that auxetic behavior can be recovered by introducing joints between inclusions. Otherwise, favorable issues are only expected with auxetic components.
机译:这项工作探讨了通过基于埃舍尔比的包含概念的微力学模型来预测由非膨胀相组成的复合材料的膨胀行为的可能性。已经考虑了两个特定的微观结构:(i)三层空心纤维增强复合材料,以及(ii)模仿凹角蜂窝状微结构的微观结构。微观力学分析基于运动学积分方程,是非均匀材料问题的形式化解。由于傅立叶变换,计算了不均匀性之间的相互作用张量。由于这些张量的多点逼近,考虑了由于不均匀性的形态和拓扑结构而引起的材料各向异性。在这两种情况下,数值结果均表明,至少在弹性和各向同性相的情况下,此类模型无法捕捉到拉力行为。该结论得到第二个微结构的相应有限元研究的支持,该研究表明,可以通过在夹杂物之间引入接缝来恢复拉力行为。否则,只有发胀成分会带来有利的问题。

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  • 来源
    《Composite Structures》 |2011年第1期|p.156-165|共10页
  • 作者单位

    Centre de Recherche Public Henri Tudor, 29 Avenue John F. Kennedy, t-1855 Luxembourg, Luxembourg,Laboratoire de mecanique, Biomecanique, Polymere, Structures (LaBPS), ENIM, 1 route d'Ars Laquenexy, CS65820, 57078 Metz Cedex, France;

    Centre de Recherche Public Henri Tudor, 29 Avenue John F. Kennedy, t-1855 Luxembourg, Luxembourg;

    Laboratoire de mecanique, Biomecanique, Polymere, Structures (LaBPS), ENIM, 1 route d'Ars Laquenexy, CS65820, 57078 Metz Cedex, France;

    Laboratoire de mecanique, Biomecanique, Polymere, Structures (LaBPS), ENIM, 1 route d'Ars Laquenexy, CS65820, 57078 Metz Cedex, France;

    Centre de Recherche Public Henri Tudor, 29 Avenue John F. Kennedy, t-1855 Luxembourg, Luxembourg;

  • 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

    microstructure; auxetic materials; interaction tensor; multi-site version; mori-tanaka scheme;

    机译:微观结构膨胀材料;相互作用张量多站点版本;森田中计划;

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