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Mechanical analysis of 3-D braided composites by the finite multiphase element method

机译:有限元多相单元法分析3-D编织复合材料的力学性能

摘要

A finite multiphase element method (FMEM), in which the element comprises more than one kind of material, has been proposed to predict the effective elastic properties of 3-D braided composites. This method is based on the variational principle and our previous geometric model that assumes the existence of different types of unit cells in the three regions in a 3-D braided composite, i.e. the interior, surface and corner. The numerical procedure involved two steps. First, a fine local mesh at the unit cell level is used to analyze the stress/strain of each unit cell. Then, a relatively coarse global mesh is used to obtain the overall responses of the composite at macroscopic level. By using the stress volume averaging method, the effective elastic properties of the composite can be calculated under the prescribed uniform strain boundary conditions. Finally, the predicted stress/strain curves are compared with experimental results, demonstrating the applicability of the FME method.
机译:提出了一种有限多相元素方法(FMEM),其中元素包含多种材料,以预测3-D编织复合材料的有效弹性。该方法基于变分原理和我们先前的几何模型,该模型假设3-D编织复合材料的三个区域(即内部,表面和角落)中存在不同类型的晶胞。数值过程包括两个步骤。首先,在晶胞水平上使用精细的局部网格来分析每个晶胞的应力/应变。然后,使用相对粗糙的整体网格在宏观水平上获得复合材料的整体响应。通过使用应力体积平均法,可以在规定的均匀应变边界条件下计算复合材料的有效弹性性能。最后,将预测的应力/应变曲线与实验结果进行了比较,证明了FME方法的适用性。

著录项

  • 作者

    Chen L; Tao XM; Choy CL;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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