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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >A node-based smoothed finite element method with stabilized discrete shear gap technique for analysis of Reissner-Mindlin plates
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A node-based smoothed finite element method with stabilized discrete shear gap technique for analysis of Reissner-Mindlin plates

机译:Reissner-Mindlin板分析的基于节点的光滑有限元法和稳定的离散剪切间隙技术

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摘要

In this paper, a node-based smoothed finite element method (NS-FEM) using 3-node triangular elements is formulated for static, free vibration and buckling analyses of Reissner-Mindlin plates. The discrete weak form of the NS-FEM is obtained based on the strain smoothing technique over smoothing domains associated with the nodes of the elements. The discrete shear gap (DSG) method together with a stabilization technique is incorporated into the NS-FEM to eliminate transverse shear locking and to maintain stability of the present formulation.Aso-called node-based smoothed stabilized discrete shear gap method (NS-DSG) is then proposed. Several numerical examples are used to illustrate the accuracy and effectiveness of the present method.
机译:本文提出了一种使用三节点三角单元的基于节点的平滑有限元方法(NS-FEM),用于Reissner-Mindlin板的静态,自由振动和屈曲分析。 NS-FEM的离散弱形式是基于应变平滑技术在与元素节点相关的平滑域上获得的。离散剪切间隙(DSG)方法和稳定化技术被结合到NS-FEM中,以消除横向剪切锁定并保持本配方的稳定性。所谓的基于节点的平滑稳定离散剪切间隙法(NS-DSG) ),然后提出。使用几个数值示例来说明本方法的准确性和有效性。

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