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Applicability of two-step homogenization to high-crimp woven composites

机译:两步均质化对高卷曲机织复合材料的适用性

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This paper examines applicability of a two-step homogenization approach to carbon/epoxy 3D woven composites. The first step of this approach involves microscale homogenization of the reinforcement consisting of wavy bundles of fibers. Finite Element Analysis (FEA) is used to obtain homogenized properties of explicitly modeled and homogenized wavy tows with fiber volume fraction of 70%. Two geometric parameters are investigated: crimp ratio and wavelength normalized by fiber diameter. Effective elastic properties are shown to be sensitive to the normalized wavelength parameter up to the value 50 at which point they reach asymptotic values and the separation of scales can be claimed.The resulting homogenized properties of the wavy tows are used to calculate the effective elastic properties of one high-crimp and two low-crimp 3D woven composites using FEA. The results of the numerical two-step homogenization are compared with experimental data and a simple Voigt model. Good correlation is observed between experimental results and the homogenization based on direct FEA. The considered Voigt approximation may be used as a reasonable first order estimate for Young's moduli in low-crimp woven composites.
机译:本文研究了两步均质化方法对碳/环氧3D编织复合材料的适用性。此方法的第一步涉及由波浪状纤维束组成的增强材料的微观均匀化。有限元分析(FEA)用于获得纤维体积分数为70%的明确建模和均质波浪状丝束的均质性能。研究了两个几何参数:卷曲比和通过光纤直径归一化的波长。有效弹性特性对归一化波长参数敏感,直到值50达到最大值为止,在该点处它们达到渐近值,并且可以要求分离鳞片。由此产生的波浪状丝束的均质特性用于计算有效弹性特性使用有限元分析的一种高卷曲和两种低卷曲3D编织复合材料。将数值两步均化的结果与实验数据和简单的Voigt模型进行比较。在实验结果和基于直接有限元分析的均质化之间观察到良好的相关性。所考虑的Voigt近似可以用作低卷曲机织复合材料中杨氏模量的合理一阶估计。

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