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Comparison of periodic and free mesh on the mechanical properties prediction of 3D braided composites

机译:周期和自由网格对三维编织复合材料力学性能预测的比较

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摘要

Periodic unit-cells are the premises for applying the periodic boundary conditions in the meso-scale finite element analysis of textile composites. However, due to the extremely complicated microstructure, there is a conflict between high-quality quick mesh generation and efficient application of periodic boundary conditions. A freely generated mesh of the unit-cell combined with more general periodic boundary conditions is assumed to be a more practical approach. In this paper, the general periodic boundary conditions are imposed by establishing linear constraint equations between master surface nodes and slave surface nodes of the unit-cell on ABAQUS software platform. For the same unit-cell model of 3D braided composites with periodic mesh and free mesh, the deformation, stress distribution and the predicted stiffness and strength properties under typical loadings are compared. The numerical results obtained by means of free mesh unit-cell agree well with those using periodic mesh proving the effectiveness and practicability of the new approach. It can be remarked that the general periodic boundary conditions are suitable for the free mesh generation of unit-cells for a complicated microstructure reducing the difficulty of meshing and improving the quality of mesh generation.
机译:周期性单位单元是在纺织品复合材料的中尺度有限元分析中应用周期性边界条件的前提。但是,由于微观结构极其复杂,因此在高质量的快速网格生成和有效应用周期性边界条件之间存在冲突。单元格的自由生成的网格与更一般的周期性边界条件相结合被认为是一种更实用的方法。本文通过在ABAQUS软件平台上建立单位单元的主表面节点和从表面节点之间的线性约束方程来施加一般的周期性边界条件。对于具有周期性网格和自由网格的3D编织复合材料的相同单元模型,比较了典型载荷下的变形,应力分布以及预测的刚度和强度特性。通过自由网格单元格获得的数值结果与使用周期性网格的数值结果非常吻合,证明了该新方法的有效性和实用性。可以注意到,一般的周期性边界条件适合于单元格的自由网格生成,因为其复杂的微观结构降低了网格划分的难度并提高了网格生成的质量。

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