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Mesh generation and geometrical modelling of 3D woven composites with variable tow cross-sections

机译:具有可变丝束横截面的3D编织复合材料的网格生成和几何建模

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摘要

The modelling of 3D woven composites represents a key part in both material and component design. Current modelling techniques can struggle to mesh correctly accurate unit cell models and apply the complex but necessary periodic boundary conditions required, often with sacrifices made in idealisation of the weave architecture. An automated voxel meshing technique suitable for modelling failure in 3D woven composite unit cells has been developed, which is generic in nature and allows incorporation of architectural deformities within weaves, including tow rotations and misalignments. The model requires node points with only five independent variables to define the unit cell geometry. Application of a smoothing algorithm to the tow/matrix interface voxels produces a suitable surface for modelling tow/matrix debonding, leading to a more accurate representation of the stress field.
机译:3D编织复合材料的建模代表了材料和组件设计中的关键部分。当前的建模技术可能难以正确地划分正确的晶胞模型并应用所需的复杂但必要的周期性边界条件,通常会在组织结构的理想化中做出牺牲。已经开发了一种适用于对3D编织复合材料单元中的故障进行建模的自动体素网格化技术,该技术本质上是通用的,并允许将结构变形并入编织中,包括丝束旋转和错位。该模型要求只有五个自变量的节点才能定义晶胞的几何形状。将平滑算法应用到丝束/基体界面体素上会产生一个合适的表面,用于建模丝束/基体脱粘,从而更准确地表示应力场。

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