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Multi-scale modeling of triaxial braided composites for FE-based modal analysis of hybrid metal-composite gears

机译:三轴编织复合材料的多尺度建模,基于有限元的混合金属复合齿轮模态分析

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摘要

The paper presents a description of a methodology to accurately estimate the natural frequencies of a hybrid metal-composite gear, where the web is made of a polymer matrix reinforced with two-dimensional (2D) triaxial braided fabrics. The proposed approach is based on a multi-scale composite modeling starting from evaluation of homogenized material properties of the gear web at the meso-scale for a subsequent FE-based modal analysis. For this purpose, the mechanical behavior of a single Repetitive Unit Cell (RUC) at the meso-scale is analyzed with a FE procedure which takes into account the interweaving and cross-section geometry of the yarns, volume fraction and local fiber orientation. It is shown that the described modeling strategy allows to predict gear's natural frequencies that are close to the experimental results. Significant accuracy enhancement is achieved with respect to the model in which the web material is considered as perfectly isotropic.
机译:本文介绍了一种精确估算混合金属复合齿轮固有频率的方法的说明,其中,纤维网由聚合物基体制成,该聚合物基体由二维(2D)三轴编织织物增强。所提出的方法是基于多尺度复合模型的,该模型始于在中尺度上评估齿轮网的均质材料特性,以进行后续基于有限元的模态分析。为此,使用有限元程序分析单个重复单元格(RUC)在中尺度上的机械性能,该程序考虑了纱线的交织和横截面几何形状,体积分数和局部纤维取向。结果表明,所描述的建模策略可以预测接近实验结果的齿轮固有频率。相对于其中将网状材料视为完全各向同性的模型而言,可以显着提高精度。

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