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Linear and Geometrically nonlinear analysis of plates and shells by a new refined non-conforming triangular plate/shell element

机译:新型精制不合格三角形板/壳单元对板和壳的线性和几何非线性分析

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A refined non-conforming triangular plate/shell element for linear and geometrically nonlinear analysis of plates and shells is developed in this paper based on the refined non-conforming element method (RNEM). A conforming triangle membrane element with drilling degrees of freedom in Cartesian coordinates and the refined non-conforming triangular plate-bending element RT9, in which Kirchhoff kinematic assumption was adopted, are used to construct the present element. The displacement continuity condition along the interelement boundary is satisfied in an average sense for plate analysis, and the coupled displacement continuity requirement at the interelement is satisfied in an average sense, thereby improving the performance of the element for shell analysis. Selectively reduced integration with stabilization scheme is employed in this paper to avoid membrane locking. Numerical examples demonstrate that the present element behaves quite satisfactorily either for the linear analysis of plate bending problems and plane problems or for the geometrically nonlinear analysis of thin plates and shells with large displacement, moderate rotation but small strain.
机译:基于改进的不合格元方法(RNEM),本文开发了一种用于板和壳线性和几何非线性分析的精制不合格三角形板/壳单元。使用在笛卡尔坐标中具有自由度的合格三角形膜元件和采用基尔霍夫运动学假设的精制不合格三角形板弯曲元件RT9来构造本发明元件。对于板分析,以平均的意义满足了沿元素边界的位移连续性条件,并且从平均的意义上满足了在元素间的耦合位移连续性要求,从而提高了用于壳分析的元素的性能。本文采用稳定化方案的选择性降低集成度来避免膜锁定。数值算例表明,对于板弯曲问题和平面问题的线性分析,或者对位移大,旋转适中但应变小的薄板和壳的几何非线性分析,本单元的性能都令人满意。

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