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Manufacturable insight into modelling and design considerations in fibre-steered composite laminates: State of the art and perspective

机译:生产纤维转向复合材料层压板中的建模和设计考虑因素:现有技术和观点

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The advent of novel robot-assisted composite manufacturing techniques has enabled steering of fibre paths in the plane of the lamina, leading to the emergence of the so-called variable angle tow (VAT) composite laminates. These laminates, with spatially varying fibre angle orientations, provide the designer with the ability to tailor the point-wise stiffness properties of VAT composites with substantially more efficient structural performance over conventional straight fibre laminates. As the application of fibre-steered composite laminates has reached an unprecedented scale in both academia and industry in recent years, a reflection upon the state-of-the-art advancements in the modelling, design, and analysis of these advanced structures becomes vital for successfully shaping the future landscape. Motivated by the gap and shortcomings in the available review works, in the present paper, we first summarize and discuss underlying fibre placement technologies including tailored fibre placement (TFP), continuous tow shearing (CTS), and automated fibre placement (AFP). Afterwards, mathematical models of reference fibre path in fibre-steering technology will be reviewed, followed by a detailed discussion on the manufacturing limitations and constraints of the AFP process. Then, design considerations in constructing a ply with multiple courses are elaborated, and key techniques to fill the entire layer with several courses are reviewed. This review is then followed by an introduction to the continuity and smoothness of fibre paths. Furthermore, a description on the material and geometric uncertainties is elaborated. Last but not least, the plate and shell laminate theories, which serve as the fundamental core of the modelling and design of VAT composite structures, are discussed. (C) 2021 Elsevier B.V. All rights reserved.
机译:新型机器人辅助复合材料制造技术的出现在薄层的平面中具有使纤维路径的转向,导致所谓的可变角度丝束(VAT)复合层压板的出现。这些层压板具有空间变化的光纤角度取向,提供了设计者能够通过传统的直纤维层压材料来定制增夫复合材料的点明显刚度特性,其具有基本更有效的结构性能。由于近年来,纤维转向复合层压板的应用达到了学术界和工业的前所未有的规模,这反映了这些先进结构的建模,设计和分析中的最先进的进步变得至关重要成功塑造未来的景观。在本文中,我们首先在现有审查中的差距和缺点的动机,我们首先总结并讨论了底层光纤放置技术,包括量身定制的纤维放置(TFP),连续拖曳剪切(CTS)和自动纤维放置(AFP)。之后,将审查光纤转向技术中参考光纤路径的数学模型,然后详细讨论AFP过程的制造限制和约束。然后,详细阐述了构造具有多个课程的层层的设计考虑,并综述了用几个课程填充整个层的关键技术。然后,此述评随后是对光纤路径的连续性和平滑度的介绍。此外,详细说明了材料和几何不确定性的描述。最后但并非最不重要的是,讨论了板材和壳层层压理论,其作为增值税复合结构的建模和设计的基本核心。 (c)2021 Elsevier B.v.保留所有权利。

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