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On the accuracy of localised 3D stress fields in tow-steered laminated composite structures

机译:牵引层压复合结构局部3D应力场的准确性

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摘要

Variable Angle Tow (VAT) composites offer increased freedom for tailoring material properties compared to traditional straight-fibre composites. This increased freedom leads to greater design flexibility for enhanced structural performance but comes at the cost of more complex, spatially-varying displacement, strain and stress fields. To maximise the utility of VAT composites, a computationally efficient, yet accurate, numerical framework is needed. To this end, we employ a modelling approach that builds upon the recently developed, hierarchical Serendipity Lagrange finite elements. Three-dimensional (3D) stress distribution is obtained using the present modelling technique and verified against 3D finite element solutions, as well as other formulations available in the literature. A key advantage of the present approach is the ability to predict accurate 3D stress fields efficiently, i.e. with reduced computational effort, including around local features such as geometric, kinematic or constitutive boundaries. Moreover, the present work concerns the peculiarities of commonly used mathematical expressions for describing spatially varying fibre orientations across VAT laminates. The presence of an absolute value in the function used to describe fibre orientation can lead to discontinuities in fibre angle slope and curvature. In turn, these discontinuities lead to mathematical singularities in the constitutive relations along the laminate. If this singularity is not appropriately modelled as a boundary of the continuum, but rather as an interior point of the continuum, stresses may be predicted inaccurately. Compared to other models in the literature, our method is capable of unveiling detailed 3D stresses readily and accurately also in the vicinity of this singularity.
机译:与传统的直纤维复合材料相比,可变角度丝束(VAT)复合材料提供了剪裁材料性能的增加自由度。这种增加的自由度导致更大的设计灵活性,以提高结构性能,但是以更复杂,空间不同的位移,应变和应力场的成本为本。为了最大化增值税复合材料的效用,需要计算效率,但准确,数值框架。为此,我们采用了一个建模方法,该方法在最近开发的分层Serencipity Lagrange有限元件上构建。使用本发明建模技术获得三维(3D)应力分布,并验证3D有限元件,以及文献中可用的其他配方。本方法的一个关键优点是能够有效地预测精确的3D应力场,即通过减少计算工作,包括围绕局部特征,例如几何,运动或构成边界。此外,本工作涉及常用数学表达式的特性,用于描述跨增值税层压板的空间变化的纤维方向。用于描述纤维取向的功能中的绝对值的存在可能导致光纤角度斜率和曲率的不连续性。反过来,这些不连续性导致沿着层压板的组成关系中的数学奇点。如果这种奇点不适当地建模为连续uum的边界,而且作为连续内的内部点,可能会以不准确的方式预测应力。与文献中的其他模型相比,我们的方法在该奇点附近也能够易于揭示详细的3D应力。

著录项

  • 来源
    《Composite Structures》 |2019年第10期|111034.1-111034.23|共23页
  • 作者单位

    Univ Bristol Dept Aerosp Engn Bristol Composites Inst ACCIS Queens Bldg Bristol BS8 1TR Avon England;

    Univ Bristol Dept Aerosp Engn Bristol Composites Inst ACCIS Queens Bldg Bristol BS8 1TR Avon England;

    Univ Bristol Dept Aerosp Engn Bristol Composites Inst ACCIS Queens Bldg Bristol BS8 1TR Avon England;

    Univ Bristol Dept Aerosp Engn Bristol Composites Inst ACCIS Queens Bldg Bristol BS8 1TR Avon England;

    Univ Bristol Dept Aerosp Engn Bristol Composites Inst ACCIS Queens Bldg Bristol BS8 1TR Avon England|Univ Limerick Sch Engn Bernal Inst Castletroy 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

    Variable angle tow composites; 3D stress fields; Unified formulation;

    机译:可变角度牵引复合材料;3D应力场;统一配方;

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