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Finite Element Analysis of Mechanical Properties of 3D Four-directional Rectangular Braided Composites—Part 2: Validation of the 3D Finite Element Model

机译:3D四向矩形编织复合材料力学性能的有限元分析-第2部分:3D有限元模型的验证

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摘要

In the first part of the work, we have established a new parameterized three-dimensional (3D) finite element model (FEM) which precisely simulated the spatial configuration of the braiding yarns and considered the cross-section deformation as well as the surface contact relationship between the yarns. This paper presents a prediction of the effective elastic properties and the meso-scale mechanical response of 3D braided composites to verify the validation of the FEM. The effects of the braiding parameters on the mechanical properties are investigated in detail. By analyzing the deformation and stress nephogram of the model, a reasonable overall stress field is provided and the results well support the strength prediction. The results indicate it is convenient to predict all the elastic constants of 3D braided composites with different parameters simultaneously using the FEM. Moreover, the FEM can successfully predict the meso-scale mechanical response of 3D braided composites containing periodical structures.
机译:在工作的第一部分中,我们建立了一个新的参数化三维(3D)有限元模型(FEM),该模型可以精确模拟编织纱线的空间配置,并考虑横截面变形以及表面接触关系在纱线之间。本文对3D编织复合材料的有效弹性性能和中观机械响应进行了预测,以验证FEM的有效性。详细研究了编织参数对机械性能的影响。通过分析模型的变形和应力海图,提供了合理的总应力场,其结果很好地支持了强度预测。结果表明,使用有限元方法同时预测具有不同参数的3D编织复合材料的所有弹性常数很方便。此外,FEM可以成功地预测包含周期性结构的3D编织复合材料的细观机械响应。

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