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Local Instability and Free Vibration of Supported Plates Using the Basic Plate Triangle

机译:使用基本板三角形的支撑板的局部不稳定性和自由振动

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This paper extends the numerical method, originally developed by Onate and his colleagues for the static analysis of plates, to enable modal (vibration) and bifurcative (buckling) analyses of plates to be undertaken. The procedure uses a rotation-free triangular element, and is based on combining the finite element method and the finite volume method so as to produce a triangular element with only three displacement degrees of freedom. Elastic stiffness, stability (geometric stiffness) and mass matrices are developed using the mixed formulation, and these are implemented in routine computer coding in order to demonstrate the validity and efficacy of the solution technique when compared with results reported by independent investigators. Natural frequencies and local buckling coefficients are given for plates with interior line supports, and these are used to illustrate the prowess of the numerical technique for the analysis of a wide class of plate buckling and vibration problems, whose analysis by non-discretisation techniques has found favour recently in deference to general finite element modelling which tends to introduce some inaccuracies. The element developed in this paper, however, is both accurate and has the attractive meshing characteristics of the finite element method for analysing more arbitrary geometric structural topologies.
机译:本文扩展了最初由Onate和他的同事开发的用于板的静态分析的数值方法,以便能够进行板的模态(振动)和分叉(屈曲)分析。该过程使用无旋转的三角形元素,并且基于有限元方法和有限体积方法的组合,从而生成仅具有三个位移自由度的三角形元素。弹性刚度,稳定性(几何刚度)和质量矩阵是使用混合配方开发的,并且通过常规计算机编码实现,以证明与独立研究人员报告的结果相比,该溶液技术的有效性和有效性。给出了具有内部线支撑的板的固有频率和局部屈曲系数,它们用于说明数值技术的能力,用于分析各种板屈曲和振动问题,通过非离散化技术对其进行了分析最近,人们倾向于遵循一般的有限元建模,这往往会带来一些不准确性。但是,本文开发的元素既准确又具有有限元方法吸引人的网格特征,可用于分析更多任意的几何结构拓扑。

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