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铺层效应对单向非卷曲织物纤维增强复合材料刚度和失效行为的影响

The Impact of Draping Effects on the Stiffness and Failure Behavior of Unidirectional Non-Crimp Fabric Fiber Reinforced Composites.

作者信息

Kunze Eckart, Galkin Siegfried, Böhm Robert, Gude Maik, Kärger Luise

机构信息

Institute of Lightweight Engineering and Polymer Technology, Technical University Dresden, Holbeinstrasse 3, D-01307 Dresden, Germany.

Karlsruhe Institute of Technology (KIT), Institute of Vehicle System Technology (FAST), Lightweight Technology (LBT), Rintheimer Querallee 2, D-76131 Karlsruhe, Germany.

出版信息

Materials (Basel). 2020 Jul 2;13(13):2959. doi: 10.3390/ma13132959.

Abstract

Unidirectional non-crimp fabrics (UD-NCF) are often used to exploit the lightweight potential of continuous fiber reinforced plastics (CoFRP). During the draping process, the UD-NCF fabric can undergo large deformations that alter the local fiber orientation, the local fiber volume content (FVC) and create local fiber waviness. Especially the FVC is affected and has a large impact on the mechanical properties. This impact, resulting from different deformation modes during draping, is in general not considered in composite design processes. To analyze the impact of different draping effects on the mechanical properties and the failure behavior of UD-NCF composites, experimental results of reference laminates are compared to the results of laminates with specifically induced draping effects, such as non-constant FVC and fiber waviness. Furthermore, an analytical model to predict the failure strengths of UD laminates with in-plane waviness is introduced. The resulting stiffness and strength values for different FVC or amplitude to wavelength configurations are presented and discussed. In addition, failure envelopes based on the PUCKmathsizesmall failure criterion for each draping effect are derived, which show a clear specific impact on the mechanical properties. The findings suggest that each draping effect leads to a "new fabric" type. Additionally, analytical models are introduced and the experimental results are compared to the predictions. Results indicate that the models provide reliable predictions for each draping effect. Recommendations regarding necessary tests to consider each draping effect are presented. As a further prospect the resulting stiffness and strength values for each draping effect can be used for a more accurate prediction of the structural performance of CoFRP parts.

摘要

单向无卷曲织物(UD-NCF)常用于挖掘连续纤维增强塑料(CoFRP)的轻量化潜力。在铺覆过程中,UD-NCF织物会发生大变形,从而改变局部纤维取向、局部纤维体积含量(FVC)并产生局部纤维波纹。特别是FVC会受到影响,并且对力学性能有很大影响。铺覆过程中不同变形模式产生的这种影响在复合材料设计过程中通常未被考虑。为了分析不同铺覆效果对UD-NCF复合材料力学性能和失效行为的影响,将参考层压板的实验结果与具有特定诱导铺覆效果(如非恒定FVC和纤维波纹)的层压板的结果进行比较。此外,还引入了一个分析模型来预测具有面内波纹的UD层压板的失效强度。给出并讨论了不同FVC或振幅与波长配置下的刚度和强度值。此外,还推导了基于PUCK小尺寸失效准则的每种铺覆效果的失效包络线,其对力学性能有明显的特定影响。研究结果表明,每种铺覆效果都会导致一种“新型织物”类型。此外,还引入了分析模型,并将实验结果与预测结果进行了比较。结果表明,这些模型对每种铺覆效果都能提供可靠的预测。提出了关于考虑每种铺覆效果所需测试的建议。作为进一步的展望,每种铺覆效果产生的刚度和强度值可用于更准确地预测CoFRP部件的结构性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31bb/7372389/a746f11a3c4f/materials-13-02959-g001.jpg

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