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Computational analysis of deep-drawing for composite materials considering the microstructure -proposition of analytical method-

机译:考虑微观结构的复合材料深冲计算分析-分析方法的提出-

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摘要

In order to simulate the deep-draw forming process for composite materials with complex microstructure. a novel computational method that takes the microscopic large deformation into consideration is proposed. The microstructure of compositematerials affects the deep-draw forming process. The proposed method decouples this complicated problem into macro- and microscopic problems by means of homogenized nonlinear material properties, which contributes much to the computational costeffectiveness. First, using the large deformation analysis and homogenization, the homogenized nonlinear properties considering the microstructural geometrical nonlinearity are obtained by microscopic analyses. Secondly, the deep-draw forming analysis iscarried out macroscopically with pre calculated material database. This material database consists of 21 independent parameters given by microscopic analyses, and is referred with respect to three macroscopic strain parameters. An example of deep-drawforming simulation for a formed core is shown.
机译:为了模拟具有复杂微观结构的复合材料的深冲成型过程。提出了一种考虑微观大变形的新型计算方法。复合材料的微观结构影响深冲成型过程。所提出的方法通过均匀化的非线性材料特性将这个复杂的问题分解为宏观和微观问题,这在很大程度上提高了计算成本。首先,使用大变形分析和均质化,通过微观分析获得考虑了微观结构几何非线性的均质化非线性特性。其次,利用预先计算的材料数据库对拉深成形进行宏观分析。该材料数据库由微观分析给出的21个独立参数组成,并针对三个宏观应变参数进行引用。显示了成型芯的深冲成型仿真示例。

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