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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Parameterized unit-cell models for stiffness performance analyses of three-dimensional n-directional braided composites
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Parameterized unit-cell models for stiffness performance analyses of three-dimensional n-directional braided composites

机译:参数化的单元格模型,用于三维n向编织复合材料的刚度性能分析

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摘要

Parameterized unit-cell models of three-dimensional n-directional (n=5, full-5, 6, or 7) braided structures are established based on the internal structures of three-dimensional braided composites. Braiding structures are characterized by model parameters, and the relationships between fiber volume fraction and model parameters are analyzed in this study. A finite element stiffness prediction is conducted using the parameterized models, and the simulation results are found to be consistent with the experimental data. Model parameters' influence on elastic constants of the composites is studied through finite element method. The research shows that the models can describe braiding structures precisely and are applicable to stiffness performance analyses, and provides an available approach to mesoscopic mechanical analysis and structural optimization design of three-dimensional braided composites.
机译:基于三维编织复合材料的内部结构,建立了三维n方向(n = 5,全5、6或7)编织结构的参数化晶胞模型。通过模型参数对编织结构进行表征,并分析了纤维体积分数与模型参数之间的关系。使用参数化模型进行有限元刚度预测,发现仿真结果与实验数据一致。通过有限元方法研究了模型参数对复合材料弹性常数的影响。研究表明,该模型能够准确地描述编织结构,适用于刚度性能分析,为三维编织复合材料的介观力学分析和结构优化设计提供了一种可行的方法。

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