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Analytical Model and Numerical Analysis of the Elastic Behavior of Triaxial Braided Composites

机译:三轴编织复合材料弹性行为的分析模型和数值分析

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This paper is concerned with elastic behavior of a triaxial braided composite by using a three-dimensional analytical model and mesoscale finite-element (FE) analysis, in conjunction with experimental observations. The analytical method and FEM take into account the actual fabric structure by considering the fiber undulation and actual architecture parameters. A representative unit cell model of the triaxial braided architecture is first identified based on fiber volume ratio, specimen thickness, and microscopic image analysis. Detailed geometric parameters for axial and bias fiber bundles are obtained, which provide precise information to enable the development of analytical and FE models. A general three-dimensional analytical model based on realistic architecture is developed with consideration of axial and bias fiber undulation. A typical study on the effect of axial fiber undulation is presented through the analytical model and axial tensile test. The prediction of effective elastic constants of the composite are presented and are compared with the experimental data. Edge damage, which is identified through FE simulation and experiments, is found to occur periodically along the free edge and to result in reduced transverse properties. The edge effect on the elastic modulus is studied through FE simulation with various numbers of unit cells. The axial fiber undulation and edge effect explains the discrepancy between the analytical and computational predictions and the experimental results.
机译:本文通过三维分析模型和中尺度有限元(FE)分析,并结合实验观察,来研究三轴编织复合材料的弹性行为。分析方法和有限元分析通过考虑纤维的起伏和实际的结构参数来考虑实际的织物结构。首先根据纤维体积比,样品厚度和显微图像分析确定三轴编织体系的代表性晶胞模型。获得了轴向和斜向纤维束的详细几何参数,这些参数提供了精确的信息,从而能够开发分析模型和有限元模型。考虑到轴向和偏置光纤的起伏,建立了基于实际结构的通用三维分析模型。通过分析模型和轴向拉伸试验,对轴向纤维起伏的影响进行了典型研究。给出了复合材料有效弹性常数的预测,并与实验数据进行了比较。通过有限元模拟和实验确定的边缘损坏会沿着自由边缘周期性发生,并导致横向性能降低。通过有限元模拟,在不同数量的晶胞下研究了边缘对弹性模量的影响。轴向纤维的起伏和边缘效应解释了分析和计算预测与实验结果之间的差异。

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