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Free Vibration Analysis of Curved Laminated Composite Beams with Different Shapes, Lamination Schemes, and Boundary Conditions

机译:具有不同形状,层压方案和边界条件的弯曲层压复合梁的自由振动分析

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A general formulation is considered for the free vibration of curved laminated composite beams (CLCBs) with alterable curvatures and diverse boundary restraints. In accordance with higher-order shear deformation theory (HSDT), an improved variational approach is introduced for the numerical modeling. Besides, the multi-segment partitioning strategy is exploited for the derivation of motion equations, where the CLCBs are separated into several segments. Penalty parameters are considered to handle the arbitrary boundary conditions. The admissible functions of each separated beam segment are expanded in terms of Jacobi polynomials. The solutions are achieved through the variational approach. The proposed methodology can deal with arbitrary boundary restraints in a unified way by conveniently changing correlated parameters without interfering with the solution procedure.
机译:考虑弯曲层压复合梁(CLCBS)的自由振动,具有可改变曲率和不同的边界限制的一般配方。根据高阶剪切变形理论(HSDT),引入了改进的改性方法,用于数值建模。此外,多段分区策略被利用运动方程的推导,其中CLCB被分成多个段。惩罚参数被认为是处理任意边界条件。根据Jacobi多项式扩展每个分离光束段的可允许功能。通过变分方法实现解决方案。该方法可以通过方便地改变相关参数而不干扰解决方案程序,以统一的方式处理任意边界限制。

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