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首页> 外文期刊>International Journal for Numerical Methods in Engineering >The development of hybrid axisymmetric elements based on the Hellinger-Reissner variational principle
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The development of hybrid axisymmetric elements based on the Hellinger-Reissner variational principle

机译:基于Hellinger-Reissner变分原理的混合轴对称元件的开发

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摘要

We present a general procedure for the development of hybrid axisymmetric elements based on the Hellinger-Reissner principle within the context of linear elasticity. Similar to planar elements, the stress interpolation is obtained by an identification of the zero-energy modes. We illustrate our procedure by designing a lower-order (four-node) and a higher-order (nine-node) element. Both elements are of correct rank, and moreover use the minimum number of stress parameters, namely seven and 17. Several examples are presented to show the excellent performance of both elements under various demanding situations Such as when the material is almost incompressible, when the thickness to radius ratio is very small, etc. When the variation of the field variables is along the radial direction alone, when the mesh is uniform, and the loading is of pressure type, the developed elements are superconvergent. i.e. they yield the exact nodal displacement values. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:我们在线性弹性的背景下,提出了基于Hellinger-Reissner原理的混合轴对称元件开发的一般程序。类似于平面单元,应力插值是通过识别零能量模式获得的。我们通过设计一个低阶(四节点)和一个高阶(九节点)元素来说明我们的过程。两种元件的等级均正确,而且使用的应力参数最少,分别为7和17。通过几个示例说明了两种元件在各种苛刻条件下(例如,材料几乎不可压缩,厚度不等)的出色性能。当场变量的变化仅沿径向方向变化时,当网格是均匀的并且载荷是压力类型时,展开的元素是超收敛的。即它们产生确切的节点位移值。版权所有(c)2005 John Wiley&Sons,Ltd.

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