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Effect of micro-randomness on macroscopic properties and fracture of laminates

机译:微观随机性对层压板宏观性能和断裂的影响

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摘要

Composite materials demonstrate a considerable extent of heterogeneity. A non-uniform spatial distribution of reinforcement results in variations of local properties of fibrous laminates. This non-uniformity not only affects effective properties of composite materials but is also a crucial factor in initiation and development of damage and fracture processes that are also spatially non-uniform. Such randomness in microstructure and in failure evolution is responsible for non-uniform distributions of stresses in composite specimens even under externally uniform loading, resulting, for instance, in a random distribution of matrix cracks in cross-ply laminates. The paper deals with statistical features of a distribution of carbon fibres in a transversal cross-sectional area in a unidirectional composite with epoxy matrix, based on various approaches used to quantify its microscopic randomness. A random character of the fibres’ distribution results in fluctuations of local elastic moduli in composites, the bounds of which depend on the characteristic length scale. A lattice model to study damage and fracture evolution in laminates, linking randomness of microstructure with macroscopic properties, is discussed. An example of simulations of matrix cracking in a carbon fibre/epoxy cross-ply laminate is given.
机译:复合材料表现出相当程度的异质性。增强材料的空间分布不均匀会导致纤维层压板的局部性能发生变化。这种不均匀不仅影响复合材料的有效性能,而且还是引发和发展在空间上也不均匀的损伤和断裂过程的关键因素。即使在外部均匀载荷下,这种微观结构和破坏演化的随机性也可导致复合材料试样中应力的不均匀分布,例如,导致交叉层压板中基体裂纹的随机分布。本文基于用于量化其微观随机性的各种方法,研究了具有环氧基质的单向复合材料中碳纤维在横截面上的分布特征。纤维分布的随机特性会导致复合材料中局部弹性模量的波动,其范围取决于特征长度尺度。讨论了研究层压板损伤和断裂演变的晶格模型,将微观结构的随机性与宏观性能联系起来。给出了模拟碳纤维/环氧树脂交叉层板中基体开裂的示例。

著录项

  • 来源
    《Journal of Materials Science》 |2006年第20期|6768-6776|共9页
  • 作者

    Vadim V. Silberschmidt;

  • 作者单位

    Wolfson School of Mechanical and Manufacturing Engineering Loughborough University;

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  • 原文格式 PDF
  • 正文语种 eng
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