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A unified procedure for free transverse vibration of rectangular and annular sectorial plates

机译:矩形和环形扇形板自由横向振动的统一程序

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摘要

A unified solution procedure applicable for analyzing the free transverse vibration of both rectangular and annular sectorial plates is presented in this study. For the annular sectorial plate, the basic theory is simplified by a variable transformation in the radial direction. The analogies of coordinate system, geometry and potential energy between the two different shapes are drawn and then unified in one framework by introducing the shape parameter. A generalized solving procedure for the two shapes becomes feasible under the unified framework. The solution adopts the spectro-geometric form that has the advantage of describing the geometry of structure by mathematical or design parameters. The assumed displacement field and its derivatives are continuous and smooth in the entire domain, thereby accelerating the convergence. In this study, the admissible functions are formulated in simple trigonometric forms of the mass and stiffness matrices for both rectangular and annular sectorial plates can be obtained, thereby making the method computationally effective, especially for analyzing annular sectorial plates. The generality, accuracy and efficiency of the unified approach for both shapes are fully demonstrated and verified through benchmark examples involving classical and elastic boundary conditions.
机译:本研究提出了适用于分析矩形和环形扇形板的自由横向振动的统一求解程序。对于环形扇形板,通过在径向方向上进行变量转换来简化基本理论。绘制了两个不同形状之间的坐标系,几何形状和势能的类比,然后通过引入形状参数将它们统一在一个框架中。在统一框架下,针对这两种形状的通用求解程序变得可行。该解决方案采用光谱几何形式,其优点是可以通过数学或设计参数描述结构的几何形状。假定的位移场及其导数在整个域中是连续且平滑的,从而加速了收敛。在这项研究中,对于矩形和环形扇形板,质量和刚度矩阵的简单三角函数形式表示了可允许的函数,从而使该方法在计算上有效,特别是对于分析环形扇形板。通过涉及经典边界条件和弹性边界条件的基准示例,充分证明和验证了这两种形状统一方法的通用性,准确性和效率。

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