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On the modeling and design of composite multilayered structures using solid-shell finite element model

机译:基于固体有限元模型的多层复合结构建模与设计

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摘要

In this investigation a coupling between a 3D solid-shell element for the analysis of multilayered composite shell structures and a specific response surface method is proposed. The first part of the paper is dedicated to the finite element formulation of a developed composite 8-node solid-shell element called SCHSγ7, based only on translational degrees of freedom. The basis of the present finite element formulation is the standard 8-node brick element with tri-linear shape functions. A particular attention is given to alleviate shear, trapezoidal and thickness locking, without resorting to the classical plane-stress assumption. Assumed natural strain method and enhanced assumed strain method are used to improve the relative poor element behavior of a standard hexahedral displacement element. The anisotropic material behavior of layered shells is modeled using a fully three dimensional elastic orthotropic material law in each layer, including the thickness stress component. The second part of the paper will focus on an adaptive response surface method for the structural optimization problem. The response surfaces are built using moving least squares approximations and design of experiments by means of a specific method called Diffuse Approximation. Several numerical applications to composite multilayered shell structures are studied to show the applicability and effectiveness of the proposed procedure. Good results of analysis and optimization using the developed SCHγ7 solid-shell element have been obtained in comparison with reference analytical solutions and with those obtained using the SCSR solid-shell finite element available in ABAQUS code.
机译:在这项研究中,提出了一种用于分析多层复合壳结构的3D固体壳单元与特定响应面方法之间的耦合。本文的第一部分致力于仅基于平移自由度的已开发复合8节点固体壳单元SCHSγ7的有限元公式化。本有限元公式的基础是具有三线性形状函数的标准8节点砖单元。在不求助于经典平面应力假设的情况下,应特别注意减轻剪力,梯形和厚度锁定。假定的自然应变方法和增强的假定的应变方法用于改善标准六面体位移单元的相对不良单元性能。使用每层中的全三维弹性正交各向异性材料定律对层状壳的各向异性材料行为进行建模,包括厚度应力分量。本文的第二部分将重点介绍针对结构优化问题的自适应响应面方法。使用移动最小二乘近似和通过称为扩散近似的特定方法设计实验来构建响应表面。研究了对多层多层壳结构的几种数值应用,以证明所提出程序的适用性和有效性。与参考分析解决方案以及使用ABAQUS代码中的SCSR固态有限元获得的结果相比,使用开发的SCHγ7固态有限元获得了良好的分析和优化结果。

著录项

  • 来源
    《Finite Elements in Analysis and Design》 |2013年第augaasepa期|1-14|共14页
  • 作者单位

    Lab. LAMIH. UMR8201 CNRS, Universite Lille Nord de France, 59313 Valenciennes, France;

    Lab. 12M, UMR 5295 CNRS, Arts & Metiers ParisTech, Universite Bordeaux 1, 33607 Pessac, France;

    Lab. LAMIH. UMR8201 CNRS, Universite Lille Nord de France, 59313 Valenciennes, France;

    Lab. Roberval, UMR 6253 CNRS, Universite de Technologie de Compiegne, 60205 Compig'ne, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composite structures; Solid-shell; Optimization; Design of experiment;

    机译:复合结构;实心外壳优化;实验设计;

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