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A Novel Shape-Free Plane Quadratic Polygonal Hybrid Stress-Function Element

机译:一种新颖的无形状平面二次多边形混合应力函数元

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A novel plane quadratic shape-free hybrid stress-function (HS-F) polygonal element is developed by employing the principle of minimum complementary energy and the fundamental analytical solutions of the Airy stress function. Without construction of displacement interpolation function, the formulations of the new model are much simpler than those of the displacement-based polygonal elements and can be degenerated into triangular or quadrilateral elements directly. In particular, it is quite insensitive to various mesh distortions and even can keep precision when element shape is concave. Furthermore, the element does not show any spurious zero energy modes. Numerical examples show the excellent performance of the new element, denoted by HSF-AP-19β, in both displacement and stress solutions.
机译:利用最小互补能原理和艾里应力函数的基本解析解,开发了一种新颖的平面二次无杂化混合应力函数(HS-F)多边形单元。如果不构造位移插值函数,则新模型的公式比基于位移的多边形元素的公式简单得多,并且可以直接退化为三角形或四边形元素。特别是,它对各种网格变形不敏感,甚至在元素形状为凹形时也可以保持精度。此外,该元素没有显示任何杂散的零能量模式。数值示例表明,在位移和应力求解中,用HSF-AP-19β表示的新元件均具有出色的性能。

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