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Generalized mixed variational methods for Reissner plate and its applications

机译:Reissner板的广义混合变分方法及其应用

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摘要

Based on the mechanism of shear locking phenomenon and potential functional of Reissner plate bending problem, the generalized mixed variational principle for Reissner plate analysis is presented by parameterized Lagrange multiplier method. The proposed variational functional contains splitting factors which are able to adjust the shear potential energy and shear complementary energy components in it. The generalized mixed finite element formulation of bilinear quardrilateral element for Reissner plate bending analysis is established in terms of the new variational principle. The stiffness of the finite element model can be changed by the alteration of the splitting factors. Thus both the free of shear locking and higher accuracy are obtained by the choice of appropriate splitting factors. The most important is that this paper gives one self-adaptative way to choose the splitting factors for thin and moderately thick plates. This results in the comparative order of magnitude between the bending stiffness and shear stiffness for the arbitrary thickness. In the application of two-by-two exact Gaussian integration scheme to the proposed mixed element model, numerical examples show that free of locking is obtained even in the thin plate limit and high accuracy is given for moderately thick plate.
机译:基于剪切锁定现象的机理和Reissner板弯曲问题的潜在功能,通过参数化Lagrange乘数法给出了Reissner板分析的广义混合变分原理。所提出的变分函数包含分裂因子,该分裂因子能够调整其中的剪切势能和剪切互补能分量。根据新的变分原理,建立了用于Reissner板弯曲分析的双线性四边形单元的广义混合有限元公式。有限元模型的刚度可以通过分裂因子的改变来改变。因此,通过选择合适的分裂因子,既可以实现无剪切锁定,又可以实现更高的精度。最重要的是,本文提供了一种自适应方法来选择薄板和中厚板的分裂因子。对于任意厚度,这导致弯曲刚度和剪切刚度之间的比较量级。在将二乘二精确高斯积分方案应用到所提出的混合单元模型中时,数值示例表明,即使在薄板极限内也可以获得无锁定,并且对于中等厚度的板也具有较高的精度。

著录项

  • 来源
    《Computational Mechanics》 |2002年第1期|29-37|共9页
  • 作者

    L. Cai; T. Rong; D. Chen;

  • 作者单位

    Department of Instrumentation Engineering Shanghai Jiaotong University Shanghai 200030 PR China e-mail: lbcai@mail.sjtu.edu.cn;

    Department of Engineering Mechanics Southwest Jiaotong University Chengdu Sichuan 610031 PR China;

    Department of Instrumentation Engineering Shanghai Jiaotong University Shanghai 200030 PR China e-mail: lbcai@mail.sjtu.edu.cn;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Keywords Reissner plate; GMVP; GMFEM; Shear locking; Splitting factor;

    机译:Reissner板;GMVP;GMFEM;剪切锁定;分裂因子;

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