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In-plane vibration of laminated curved beams with variable curvature by dynamic stiffness analysis

机译:动态刚度分析的变曲率叠层曲线梁的面内振动

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Based on the Timoshenko-type curved beam theory, the free vibration of composite laminated beams of variable curvature is studied. The effects of shear deformation and rotary inertia are both considered. By incorporating the dynamic stiffness method and the series solution, an analytical solution is developed. The arch is decomposed into as many elements as needed for the accuracy of solution. In each element, a series solution is formulated in terms of polynomials, the coefficients of which are related to each other through recurrence formulas. As a result, in order to obtain an accurate solution, one does not need a lot of terms in series solution and in Taylor expansion series for the variable coefficients in the governing equations. Compared to the previous iterate, the accuracy and efficiency of he present formulation are validated. This methodology can be applied to ammoniated curved beams of complex arch structures without any difficulty.
机译:基于Timoshenko型弯曲梁理论,研究了变曲率复合层合梁的自由振动。均考虑了剪切变形和旋转惯性的影响。通过结合动力刚度法和级数解,开发了解析解。为了解决精度问题,将拱形分解为所需的尽可能多的元素。在每个元素中,用多项式来表示级数解,这些多项式的系数通过递归公式相互关联。结果,为了获得精确的解,不需要对于控制方程中的可变系数的级数解和泰勒展开级数的大量项。与之前的迭代相比,该公式的准确性和效率得到了验证。该方法可以毫无困难地应用于复杂拱形结构的氨化弯曲梁。

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