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Modal analysis of a Variable Stiffness Composite Laminated plate with diverse boundary conditions: Experiments and modelling

机译:具有不同边界条件的可变刚度复合材料层合板的模态分析:实验和建模

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摘要

The modes of vibration of a Variable Stiffness Composite Laminate were obtained by experimental modal analysis and compared with the ones resulting from theoretical/mathematical models. Three types of boundary condition were considered: CFFF, CFCF and FFFF, where C stands for clamped and F for free edges. Frequency response functions were experimentally obtained and employed to identify natural frequencies, modal damping ratios and mode shapes of vibration, using methods known as CMIF - Peak picking and circle-fit. The identified natural frequencies and mode shapes of vibration were compared with the ones resulting from models based on Classical Plate Theory and on First-order Shear Deformation Theory. Although two massive, stiff, steel blocks were bolted with the plate in-between in order to approach a clamped boundary, the modal properties are still significantly influenced by the flexibility of the resulting fixture. After introducing springs along the boundaries in the mathematical model, to better represent a "real clamped" boundary, quite good agreement between theoretical and experimental results was obtained. The experimental results here presented can be used to validate theoretical models of Variable Stiffness Composite Laminated plates.
机译:通过实验模态分析获得了可变刚度复合材料层压板的振动模式,并将其与理论/数学模型得出的振动模式进行了比较。考虑了三种类型的边界条件:CFFF,CFCF和FFFF,其中C表示夹紧,F表示自由边缘。实验获得了频率响应函数,并使用称为CMIF的方法-峰值拾取和圆拟合,来识别固有频率,模态阻尼比和振动的模态。将确定的振动固有频率和振型与基于经典板理论和一阶剪切变形理论的模型的固有频率和振型进行了比较。尽管将两个块状,坚固的钢块用螺栓固定在其间,以便接近夹紧的边界,但是模态特性仍然受所得夹具的柔韧性的显着影响。在沿数学模型中的边界引入弹簧之后,为了更好地表示“实际夹紧”边界,理论和实验结果之间取得了很好的一致性。这里介绍的实验结果可用于验证可变刚度复合材料层压板的理论模型。

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