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Methodology for Impact Modeling of Triaxial Braided Composites Using Shell Elements

机译:使用壳单元的三轴编织复合材料冲击建模的方法学

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摘要

In this paper, a two-dimensional triaxial braided composite model has been studied using the nonlinear explicit finite-element code LSDYNA. The unit cell consists of six subcells and material properties associated with shell element integration point simulate braiding architecture. The local material properties were selected by correlation of the global behavior of a coupon model with static specimen tests. By changing subcell size and orientation angle at integration points, different braids architectures were obtained. Panel ballistic models were performed with benefits of computation efficiency of shell elements. Mechanical properties, panel impact threshold velocities, and failure initiations for braids with bias angles of 75, 60, 45, and 30° were studied. Boundary effects were also investigated.
机译:本文使用非线性显式有限元代码LSDYNA研究了二维三轴编织复合材料模型。单位单元由六个子单元组成,材料属性与壳单元集成点模拟编织体系结构关联。通过将试样模型的整体行为与静态样本测试相关联来选择局部材料特性。通过改变积分点的子电池尺寸和方向角,可以获得不同的编织结构。面板弹道模型的执行具有壳元素的计算效率优势。研究了斜角为75、60、45和30°的编织物的机械性能,面板冲击阈值速度和破坏引发。还研究了边界效应。

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