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Computational continua method and multilevel-multisite mesh refinement method for multiscale analysis of woven composites laminates

机译:用于织造复合材料层压材料多尺度分析的计算连续型方法和多级 - 多电机网格化方法

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摘要

Three-scale computational continua (C-2) method and multilevel-multisite (M-2) mesh refinement method are developed for the multiscale analysis of woven composite laminates in this paper. Firstly, in order to carried out the full multiscale analysis of woven composite laminate, a three-scale C-2 model is established. The cell with matrix and fiber, tow or yarn and laminated plate are considered as the microscopic, mesoscopic computational unit cells (CUC) and macroscopic problem, respectively. And then, a three-dimensional M-2 method is developed to analyze the local displacements and stresses in the woven composite laminate. The refined meshes in the every scale unit cells are regarded as the super elements, and their contributions on the macroscopic stiffness are smeared into the total stiffness matrix of macroscopic problem. The displacement continuity and internal force equilibrium at the interface between two different scale CUCs are ensured by a continuity equation set, in which the requirement of meshing consistency between different CUCs is unnecessary, and the large scale effect can be considered between different CUCs. Several numerical examples are carried out to validate the proposed C-2 and M-2 methods by comparing with the direct numerical simulations (DNS) models.
机译:三尺寸计算连续(C-2)方法和多级 - 多电位(M-2)网眼细化方法是开发的,用于本文编织复合层压材料的多尺度分析。首先,为了进行编织复合材料层的全部度多尺度分析,建立了三种C-2模型。具有基质和纤维,丝束或纱线和层压板的电池被认为分别为微观,介相计算单元电池(CUC)和宏观问题。然后,开发了三维M-2方法以分析编织复合层压板中的局部位移和应力。每个刻度单元细胞中的精制网格被认为是超级元素,它们对宏观刚度的贡献被涂在宏观问题的总刚度基质中。通过连续性等式集确保了两个不同刻度CUCS之间的界面处的位移连续性和内部力平衡,其中不需要在不同CUCS之间的啮合一致性的要求,并且可以在不同的CUCS之间考虑大规模效果。执行几个数值示例以通过与直接数值模拟(DNS)模型进行比较来验证所提出的C-2和M-2方法。

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