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An improved hybrid-stress element approach to torsion of shafts

机译:一种改进的混合应力元法来扭转轴

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A four-noded torsional element with only four stress parameters is developed based on the Hellinger-Reissner principle by optimizing element trial stresses through the introduction of incompatible displacements. Two boundary hybrid-stress elements with six stress parameters are also developed to meet the traction-free condition on one or two adjacent sides of a four-noded element, respectively. Numerical results shown that these elements give accurate results for the warping displacement, the angle of twist per unit length, as well as the shear stresses for shafts with a polygonal cross-section. Comparison with alternative displacement and stress elements shows that the present elements give results of the same accuracy with a coarser mesh. The elements are shown to be insensitive to mesh distortion and to exhibit rapid convergence with h-refinement.
机译:基于Hellinger-Reissner原理,通过引入不相容位移来优化单元试验应力,从而开发出仅具有四个应力参数的四节点扭转单元。还开发了具有六个应力参数的两个边界混合应力单元,分别满足四节点单元的一侧或两侧相邻的无牵引条件。数值结果表明,这些元件可以为翘曲位移,每单位长度的扭曲角度以及具有多边形横截面的轴的剪切应力提供准确的结果。与替代位移和应力元素的比较显示,当前的元素在使用较粗的网格时给出的结果相同。所示元素对网格变形不敏感,并且随着h细化表现出快速收敛。

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