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An accurate solution method for the static and dynamic deflections of orthotropic plates with general boundary conditions

机译:具有一般边界条件的正交异性板的静,动态挠度的精确求解方法

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Extending the previous work on isotropic beams and plates by the second author [Li WL, et al. An exact series solution for the transverse vibration of rectangular plates with general elastic boundary supports. J Sound Vib 2009;321:254-69], this paper describes an accurate analytical method for calculating the static deflections and modal characteristics of orthotropic plates with general elastic boundary supports. The displacement function is expressed as a 2-D Fourier cosine series supplemented with several terms in the form of 1-D series. The series expansions for all the relevant derivatives can be directly obtained through term-by-term differentiations of the displacement series. Thus, a classical solution can be derived by letting the series exactly satisfy the governing differential equation at every field point and all the boundary conditions at every boundary point, respectively. Several numerical examples are presented to demonstrate the excellent accuracy and convergence of the current solutions.
机译:第二作者[Li WL,et al。具有一般弹性边界支撑的矩形板的横向振动的精确级数解。 J Sound Vib 2009; 321:254-69],本文介绍了一种精确的解析方法,用于计算具有一般弹性边界支撑的正交各向异性板的静挠度和模态特性。位移函数表示为二维傅里叶余弦级数,并以一维序列的形式补充了多项。所有相关导数的级数展开可以通过位移序列的逐项微分直接获得。因此,可以通过让该系列分别分别满足每个场点处的控制微分方程和每个边界点处的所有边界条件,来得出经典解。给出了几个数值示例,以证明当前解决方案的出色准确性和收敛性。

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