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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Mesh superposition applied to meso-FE modelling of fibre-reinforced composites: Cross-comparison of implementations
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Mesh superposition applied to meso-FE modelling of fibre-reinforced composites: Cross-comparison of implementations

机译:应用于纤维增强复合材料的Meso-Fe建模的网眼叠加:实现的交叉比较

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The most used method for calculation of mechanical properties of the fibre-reinforced composites on the scale of unit cell of the reinforcement consists in continuous meshing of the reinforcement and matrix volumes. Often, this leads to bad quality or large size of the generated mesh. Mesh superposition (MSP) techniques allow overcoming these issues by independent meshing of both components while coupling them together based on constraint equations. In the present work, two different implementations of MSP techniques are investigated in detail, and results are compared with a common method and experiment for a simple unidirectional reinforcement geometry and a complex 3D weave composite. An MSP formulation for large deformations case is described. Results show good agreement in local strain distributions and in prediction of the homogenized mechanical properties. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:最常用的用于计算纤维增强复合材料的机械性能的方法,在加强件的单元电池的等级中,包括加强和基质体积的连续啮合。 通常,这导致生成的网眼的质量差或大尺寸。 网格叠加(MSP)技术允许通过独立网格覆盖两个组件的同时克服这些问题,同时基于约束方程耦合在一起。 在本作工作中,详细研究了两种不同的MSP技术实现,并将结果与简单的单向增强几何形状和复合3D编织复合材料进行了常见的方法和实验。 描述了大变形情况的MSP配方。 结果显示在局部应变分布中的良好一致性,并预测均质机械性能。 版权所有(c)2016 John Wiley&Sons,Ltd。

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