首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Modeling compressive response of 3D woven textile composites accounting for microscale geometric uncertainties
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Modeling compressive response of 3D woven textile composites accounting for microscale geometric uncertainties

机译:3D编织纺织复合材料的模拟压缩响应核算微观几何不确定性

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摘要

The compressive response of 3D woven textile composites (3DWTC), that consist of glass fiber tows and an epoxy matrix material, is studied using a finite element (FE)-based mechanics model. A parametric Representative Unit Cell (RUC) model is developed in a fully three-dimensional setting with geometry and textile architecture for modeling the textile microstructure. The RUC model accounts for the nonlinear behavior of the fiber tows and matrix. The computational model is utilized to predict the compressive strength of 3DWTC and its dependence on various geometrical and material parameters. The finite element model is coupled with a probabilistic analysis tool to provide probabilistic estimates for 3DWTC compressive strength. The reported results are found to be in good agreement with experimental data.
机译:使用有限元(Fe)的力学模型研究了由玻璃纤维丝束和环氧基质材料组成的3D编织织物复合材料(3DWTC)的压缩响应。 参数代表性单元电池(RUC)模型是以完全三维设置开发的,具有几何和纺织架构,用于建模纺织微观结构。 RUC模型占光纤及矩阵的非线性行为。 计算模型用于预测3DWTC的压缩强度及其对各种几何和材料参数的依赖性。 有限元模型与概率分析工具耦合,以提供3DWTC抗压强度的概率估计。 据报道,据报道的结果与实验数据吻合良好。

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