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Analytical prediction of the elastic properties of 3D braided composites based on a new multiunit cell model with consideration of yarn distortion

机译:基于新的多单元胞模型并考虑纱线变形的3D编织复合材料弹性性能的分析预测

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摘要

A new analytical model based on a multiunit cell model (MCM) is developed to study the effects of the yarn distortion and the shell core structure feature on the elastic properties of 3D four-directional braided composites. An idealized yarn model with consideration of the yarn distortion is proposed to calculate its elastic properties by introducing an average twist angle. Combined with the MCM, the stiffness-volume averaging theory is applied to consider the contribution of all unit cells to the elastic properties of the overall specimen. The variation of the average twist angle for the interior and surface-corner yarns has been accounted for appraising the elastic properties. The predicted elastic properties are in good agreement with the available experimental data, demonstrating the applicability of the analytical model. In addition, the effect of the average twist angle on the elastic properties is discussed and the comparison between the predicted values and the experimental results are conducted. Then the elastic properties of unit cells with their unique microstructure are analyzed. Finally, the effects of the braiding angle, the fiber volume fraction, and the number of the yarn carriers on the elastic properties are discussed in detail. Discussion results have proved that the present analytical model can be utilized to predict the elastic properties of 3D braided composites. (C) 2015 Elsevier Ltd. All rights reserved.
机译:开发了一种基于多单元胞模型(MCM)的新分析模型,以研究纱线变形和壳芯结构特征对3D四向编织复合材料弹性性能的影响。提出了一种考虑纱线变形的理想纱线模型,通过引入平均捻角来计算其弹性性能。结合MCM,应用刚度-体积平均理论来考虑所有晶胞对整体试样弹性特性的影响。内部和表面转角纱线的平均捻角的变化已被用于评估弹性性能。预测的弹性特性与可用的实验数据高度吻合,证明了分析模型的适用性。此外,讨论了平均扭曲角对弹性性能的影响,并进行了预测值和实验结果的比较。然后分析具有其独特的微观结构的晶胞的弹性性能。最后,详细讨论了编织角度,纤维体积分数和纱线载体的数量对弹性性能的影响。讨论结果证明,该分析模型可用于预测3D编织复合材料的弹性性能。 (C)2015 Elsevier Ltd.保留所有权利。

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