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New exact series solutions for transverse vibration of rotationally-restrained orthotropic plates

机译:旋转约束正交各向异性板横向振动的新精确级数解

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The exact series solutions of plates with general boundary conditions have been derived by using various methods such as Fourier series expansion, improved Fourier series method, improved superposition method and finite integral transform method. Although the procedures of the methods are different, they are all Fourier-series based analytical methods. In present study, the foregoing analytical methods are reviewed first. Then, an exact series solution of vibration of orthotropic thin plate with rotationally restrained edges is obtained by applying the method of finite integral transform. Although the method of finite integral transform has been applied for vibration analysis of orthotropic plates, the existing formulation requires of solving a highly non-linear equation and the accuracy of the corresponding numerical results can be questionable. For that reason, an alternative formulation was proposed to resolve the issue. The accuracy and convergence of the proposed method were studied by comparing the results with other exact solutions as well as approximate solutions. Discussions were made for the application of the method of finite integral transform for vibration analysis of orthotropic thin plates.
机译:通过使用傅立叶级数展开,改进的傅立叶级数方法,改进的叠加法和有限积分变换法等各种方法,得出了具有一般边界条件的板的精确级数解。尽管这些方法的步骤不同,但它们都是基于傅立叶级数的分析方法。在本研究中,首先对上述分析方法进行了综述。然后,通过应用有限积分变换的方法,获得了具有旋转约束边缘的正交各向异性薄板振动的精确级数解。尽管有限积分变换的方法已经应用于正交各向异性板的振动分析,但是现有的公式要求求解高度非线性方程,并且相应数值结果的准确性可能会受到质疑。因此,提出了一种替代的表达方式来解决该问题。通过将结果与其他精确解和近似解进行比较,研究了所提方法的准确性和收敛性。讨论了有限积分变换方法在正交各向异性薄板振动分析中的应用。

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