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Vibration analysis of rectangular plates resting on four rigid supports

机译:放置在四个刚性支架上的矩形板的振动分析

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Purpose - This paper aims to thoroughly investigate the free vibration characteristics of rectangular plates resting on symmetrically distributed four rigid supports by using a finite element (FE) method. Design/methodology/approach - ANSYS parametric design language was used to generate the FE models and to run the analysis. The FE models were initially validated and were then used to solve for the plate first natural frequency and mode shape. The effect of the plate aspect ratio and support location on the free vibration properties of the plate was thoroughly studied by conducting several FE runs. Finally, simple empirical formulas were developed to conveniently calculate the plate first natural frequency based on the geometric parameters and support type, as well as support locations. Those well-formulated equations were in a great match with the FE data. Findings - The results showed that the plate first natural frequency and mode shape are highly affected by the plate size and support locations. Specifically, the natural frequency deceases as the plates becomes larger. Also, the bending behavior of the first mode is highly affected by the support location, which results in a significant change in the natural frequency of the plate structure. In addition, the presently formulated empirical formulas are faithfully able to predict the natural frequency of the plate based on the geometric parameters and support location. Originality/value - This paper provides numerous new data on the vibration properties of the rectangular plate resting on rigid supports. Also, it provides a simple way to easily calculate the natural frequency of this plate problem, unlike the very limited and complicated analytical solutions available in literature.
机译:目的-本文旨在通过有限元(FE)方法彻底研究放置在对称分布的四个刚性支撑上的矩形板的自由振动特性。设计/方法/方法-ANSYS参数化设计语言用于生成有限元模型并运行分析。最初验证了有限元模型,然后将其用于求解板的第一个固有频率和振型。通过进行几次有限元分析,彻底研究了板的纵横比和支撑位置对板的自由振动性能的影响。最后,开发了简单的经验公式,以根据几何参数和支撑类型以及支撑位置方便地计算板的第一固有频率。这些结构合理的方程式与有限元数据非常匹配。研究结果-结果表明,板的第一固有频率和模态形状受板尺寸和支撑位置的影响很大。具体而言,随着板的增大,固有频率降低。同样,第一模式的弯曲行为受支撑位置的影响很大,这导致板结构的固有频率发生显着变化。此外,目前制定的经验公式能够根据几何参数和支撑位置忠实地预测板的固有频率。独创性/价值-本文提供了许多新数据,这些数据涉及放在刚性支撑板上的矩形板的振动特性。而且,它提供了一种简单的方法来轻松计算该板问题的固有频率,这与文献中非常有限且复杂的分析解决方案不同。

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