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A simple assumed strain method for enhancing the accuracy of the cubic triangular C degree plate bending element

机译:一种简单的假设应变方法,用于提高立方三角形C度板弯曲元件的精度

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摘要

The conventional cubic triangular Mindlin/Reissner plate bending element, DISP10, is in general too stiff. To reduce the element stiffness, three of the strain sampling points are shifted from the integration stations to the element corners so as to reduce the number of shear constraints in the global level. The strain field is then obtained by interpolation. In this way, the constraint ratio of the element increases from 1.125 to 1.5 which is exactly equal to a postulated optimal value. However, the element does not appear to be more accurate than its conventional counterpart. While keeping the constraint ratio and interpolation pivots unchanged, two different ways of refining the sampled strains at the element corners are attempted and the pertinent elements are consistently more accurate than DISP10
机译:传统的立方三角形Mindlin / Reissner平板弯曲元件DISP10通常太硬。为了降低单元刚度,将应变采样点中的三个从积分站移到单元角,以减少整体水平上的剪切约束数量。然后通过内插获得应变场。这样,元素的约束比从1.125增加到1.5,这恰好等于假定的最佳值。然而,该元件似乎没有比其常规对应元件更精确。在保持约束比和内插轴不变的情况下,尝试了两种不同的方法来细化单元角处的采样应变,并且相关单元始终比DISP10更准确

著录项

  • 作者

    Sze KY; Zhu D;

  • 作者单位
  • 年度 1998
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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