首页> 外文会议>International Conference on Composite Materials >PREDICTING THE CONSTITUTIVE BEHAVIOR OF BIAXIAL BRAIDED COMPOSITES USING BEAM UNIT CELLS
【24h】

PREDICTING THE CONSTITUTIVE BEHAVIOR OF BIAXIAL BRAIDED COMPOSITES USING BEAM UNIT CELLS

机译:使用梁单元电池预测双轴编织复合材料的组成行为

获取原文

摘要

Braided composites have a complex internal geometry with two or more sets of intertwined and undulated yarns. The internal geometry strongly depends on the shape of the desired component and on process parameters. This increases the demand for material characterization and constitutive modeling for structural analysis. This paper presents an approach for the prediction of the nonlinear material behavior of biaxial braided composites using finite element (FE) unit cells. A repeating unit cell (RUC) with beam elements representing the yarns is used for the prediction of the constitutive behavior. The approach, based on Cox's binary model [1], yields several advantages: a fast and automated model generation and meshing process in combination with numerical efficiency due to the decreased number of degrees of freedom (DOFs). Main goal of the unit cell calculations is to predict the influence of the internal geometry of the braided composite onto the elastic, nonlinear and failure behavior. Two biaxial braided composites with 45° and 60° braiding angle are modeled in this paper. Elastic and nonlinear predictions match the experimental results and the stress field obtained correlates well with a classical continuum unit cell.
机译:编织复合材料具有复杂的内部几何形状,具有两组或更多组交织和波状纱线。内部几何形状强烈取决于所需部件的形状和过程参数。这增加了对结构分析的材料表征和本构模拟的需求。本文介绍了使用有限元(Fe)单元细胞预测双轴编织复合材料的非线性材料行为的方法。具有表示纱线的光束元件的重复单元电池(RUC)用于预测本构行为。该方法基于Cox的二进制模型[1],产生了几个优点:由于自由​​度(DOF)的数量降低而结合数值效率的快速和自动化的模型生成和啮合过程。单位细胞计算的主要目标是预测编织复合材料的内部几何形状对弹性,非线性和故障行为的影响。本文建模了具有45°和60°编织角的两种双轴编织复合材料。弹性和非线性预测匹配实验结果,并且应力场与经典连续单位单元相比很好地相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号