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Development of partial hybrid finite elements for 3-D global/local analysis of laminated composite structures.

机译:开发用于层状复合结构的3-D全局/局部分析的局部混合有限元。

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摘要

The purpose of this work is to develop global/local finite element models using partial hybrid stress finite elements for stress analysis of laminated composite structures. Based on the composite variational principle, the general formulations of partial hybrid single-layer finite element and multilayer finite element are presented. These formulations can be used to develop a series of partial hybrid finite elements. A 4-node degenerated plate element, an 8-node degenerated plate element, a 3-D, 8-node solid element, a 3-D, 20-node solid element, a 6-node transition element, a 15-node transition element, a multilayer solid element, and a multilayer transition element are presented. The elements developed in this thesis are examined by the, eigenvalue test to detect zero-energy deformation modes and the absence of rigid-body motion capability. The results show that the elements do not have any kinematic deformation modes, and they have a desired capability for rigid-body displacement. In addition, the non-zero eigenvalues of the element stiffness matrices are real and positive.; In order to determine the optimal partial stress fields for the partial hybrid elements, a classification method of stress modes is presented. The method can be used to classify stress modes, select optimal stress modes, and set up an assumed stress matrix for a hybrid element. Also, the necessary and sufficient condition for avoiding spurious kinematic deformation mode is proposed and the optimal condition of an assumed stress field is presented.; A computer program COMSA is developed to implement the partial hybrid finite element method. The Global/Local finite element models are established using plate element, solid element, and transition element. In the thesis, a few numerical examples are presented to verify the accuracy and efficiency of the finite element models. It has been shown that the global/local models using partial hybrid element are efficient and accurate for stress analysis of laminated composites due to the fact that they take advantage of the capacity of both 3-D elements and 2-D elements.
机译:这项工作的目的是使用局部混合应力有限元来开发层状复合结构的应力分析的全局/局部有限元模型。基于复合变分原理,提出了部分混合单层有限元和多层有限元的通用公式。这些公式可用于开发一系列局部混合有限元。一个4节点退化的板单元,一个8节点退化的板单元,一个3D,8节点实体单元,一个3D,20节点实体单元,一个6节点过渡元素,一个15节点过渡提出了元素,多层固体元素和多层过渡元素。通过特征值检验对本文开发的元素进行了检验,以检测零能量变形模式和缺乏刚体运动能力。结果表明,这些单元没有任何运动学变形模式,并且具有理想的刚体位移能力。另外,单元刚度矩阵的非零特征值是实数和正数。为了确定局部混合单元的最优局部应力场,提出了一种应力模式的分类方法。该方法可用于对应力模式进行分类,选择最佳应力模式以及为混合元素建立假定的应力矩阵。提出了避免伪运动变形模式的充要条件,并给出了假定应力场的最佳条件。开发了计算机程序COMSA来实现部分混合有限元方法。全局/局部有限元模型是使用板单元,实体单元和过渡单元建立的。本文提出了一些数值算例,以验证有限元模型的准确性和有效性。已经表明,使用局部混合元素的全局/局部模型对于层压复合材料的应力分析是有效且准确的,这是因为它们利用了3-D元素和2-D元素的能力。

著录项

  • 作者

    Feng, Wei.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 306 p.
  • 总页数 306
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:48:37

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