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Development and applications of a flat triangular element for thin laminated shells.

机译:用于薄层压壳的扁平三角形元件的开发和应用。

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摘要

Finite element analysis of thin laminated shells using a three-noded flat triangular shell element is presented. The flat shell element is obtained by combining the Discrete Kirchhoff Theory (DKT) plate bending element and a membrane element similar to the Allman element, but derived from the Linear Strain Triangular (LST) element.; The major drawback of the DKT plate bending element is that the transverse displacement is not explicitly defined within the interior of the element. In the present research, free vibration analysis is performed both by using a lumped mass matrix and a so called consistent mass matrix, obtained by borrowing shape functions from an existing element, in order to compare the performance of the two methods.; Several numerical examples are solved to demonstrate the accuracy of the formulation for both small and large rotation analysis of laminated plates and shells. The results are compared with those available in the existing literature and those obtained using the commercial finite element package ABAQUS and are found to be in good agreement. The element is employed for two main applications involving large flexible structures.; The first application is the control of thermal deformations of a spherical mirror segment, which is a segment of a multi-segmented primary mirror used in a space telescope. The feasibility of controlling the surface distortions of the mirror segment due to arbitrary thermal fields, using discrete and distributed actuators, is studied.; The second application is the analysis of an inflatable structure, being considered by the US Army for housing vehicles and personnel. The updated Lagrangian formulation of the flat shell element has been developed primarily for the nonlinear analysis of the tent structure, since such a structure is expected to undergo large deformations and rotations under the action of environmental loads like the wind and snow loads. The follower effects of the pressure load have been included in the updated Lagrangian formulation of the flat shell element and have been validated using standard examples in the literature involving deformation-dependent pressure loads. The element can be used to obtain the nonlinear response of the tent structure under wind and snow loads. (Abstract shortened by UMI.)
机译:提出了使用三节点平面三角形壳单元对薄壳的有限元分析。扁平壳单元是通过组合离散基尔霍夫理论(DKT)板弯曲单元和类似于Allman单元但源自线性应变三角形(LST)单元的膜单元获得的。 DKT板弯曲元件的主要缺点是,在元件内部未明确定义横向位移。在本研究中,通过使用集总质量矩阵和所谓的一致质量矩阵来执行自由振动分析,该质量矩阵是通过从现有元素中借用形状函数而获得的,以便比较这两种方法的性能。求解了几个数值示例,以证明该配方对层压板和壳体的大小旋转分析的准确性。将结果与现有文献中的结果以及使用商业有限元软件包ABAQUS获得的结果进行了比较,发现结果吻合良好。该元件用于涉及大型柔性结构的两个主要应用中。第一个应用是控制球面镜段的热变形,球面镜段是空间望远镜中使用的多段主镜的一部分。研究了使用离散和分布式致动器控制由于任意热场而引起的镜段表面变形的可行性。第二个应用是对充气结构的分析,这是美国陆军考虑用于容纳车辆和人员的。扁平壳单元的更新拉格朗日公式主要是针对帐篷结构的非线性分析而开发的,因为这种结构在风和雪荷载等环境荷载作用下有望发生较大的变形和旋转。压力载荷的跟随效应已包含在扁平壳单元的更新拉格朗日公式中,并且已使用涉及变形相关压力载荷的文献中的标准示例进行了验证。该元素可用于获得在风雪荷载下帐篷结构的非线性响应。 (摘要由UMI缩短。)

著录项

  • 作者

    Mohan, P.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Aerospace.; Engineering Mechanical.; Applied Mechanics.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;机械、仪表工业;应用力学;
  • 关键词

  • 入库时间 2022-08-17 11:49:04

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