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Free and forced vibration analysis of laminated composite plates and shells using a 9-node assumed strain shell element

机译:使用9节点假定应变壳单元的层合复合板和壳的自由和强迫振动分析

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The natural frequencies of isotropic and composite laminates are presented. The forced vibration analysis of laminated composite plates and shells subjected to arbitrary loading is investigated. In order to overcome membrane and shear locking phenomena, the assumed natural strain method is used. To develop a laminated shell element for free and forced vibration analysis, the equivalent constitutive equation that makes the computation of composite structures efficient was applied. The Mindlin-Reissner theory which allows the shear deformation and rotary inertia effect to be considered is adopted for development of nine-node assumed strain shell element. The present shell element offers significant advantages since it consistently uses the natural co-ordinate system. Results of the present theory show good agreement with the 3-D elasticity and analytical solutions. In addition the effect of damping is investigated on the forced vibration analysis of laminated composite plates and shells.
机译:介绍了各向同性和复合层合板的固有频率。研究了层合复合板和壳体在任意载荷下的强迫振动分析。为了克服膜和剪切锁定现象,使用了假定的自然应变方法。为了开发用于自由振动和强迫振动分析的叠层壳单元,应用了使本构结构的计算有效的等效本构方程。 Mindlin-Reissner理论考虑了剪切变形和旋转惯性效应,被用于开发九节点假定的应变壳单元。本壳元素提供了显着的优势,因为它始终使用自然坐标系。本理论的结果表明与3-D弹性和解析解具有良好的一致性。另外,研究了阻尼对层压复合板和壳的强迫振动分析的影响。

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