首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Natural vibration analysis of stiffened panels with arbitrary edge constraints using the assumed mode method
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Natural vibration analysis of stiffened panels with arbitrary edge constraints using the assumed mode method

机译:使用假定模态方法对带有任意边约束的加劲板的固有振动分析

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摘要

Natural vibration analysis of stiffened panels represents an important issue in different kinds of engineering applications. In this article, a procedure for the vibration analysis of stiffened panels with arbitrary edge constraints is presented. It is based on the assumed mode method, where natural frequencies and modes are determined by solving an eigenvalue problem of a multi-degree-of-freedom system matrix equation derived by using Lagrange's equations of motion. The Mindlin thick plate theory is applied for a plate, while the effect of stiffeners having the properties of Timoshenko beams is accounted for by adding their strain and kinetic energies to the corresponding plate energies. The accuracy of the proposed procedure is justified by several numerical examples which include the natural vibration analysis of stiffened panels with different framing sizes, their lengths and orientations, plate thicknesses and different combinations of boundary conditions. A comparison of results with those obtained by the finite element method is provided, and good agreement is achieved.
机译:加筋板的自然振动分析代表了各种工程应用中的重要问题。在本文中,提出了一种具有任意边缘约束的加劲板振动分析的程序。它基于假定的模态方法,其中自然频率和模态是通过求解使用拉格朗日运动方程式得出的多自由度系统矩阵方程的特征值问题来确定的。 Mindlin厚板理论适用于板,而具有Timoshenko梁特性的加劲肋的作用是通过将应变和动能加到相应的板能量中来解决的。几个数值示例证明了所提出程序的准确性,其中包括具有不同框架尺寸,长度和方向,板厚以及边界条件不同组合的加劲板的自然振动分析。将结果与通过有限元方法获得的结果进行了比较,并取得了良好的一致性。

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