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Vibration Characteristics Analysis of Moderately Thick Laminated Composite Plates with Arbitrary Boundary Conditions

机译:具有任意边界条件的中厚层压复合板的振动特性分析

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摘要

In this study, an improved Fourier series method is presented for the vibration modeling and analysis of moderately thick laminated composite plates with arbitrary boundary conditions, in which the vibration displacements are sought as the linear combination of a double Fourier cosine series and auxiliary series functions. The vibration model was established using the Hamilton energy principle. To study the vibration characteristics of laminated composite plates more comprehensively, firstly, the accuracy of the current results were validated via comparison with previous results and finite element method data. A parametric study was conducted on the effects of several key parameters, such as the h/b ratio, orientation and number of layers. In this section, both solutions are applicable to various combinations of boundary constraints, including classical boundary conditions and elastic-supported boundary conditions. Secondly, in order to identify the action position of vibration and the transmission of vibration energy, the response analysis of laminated plates was studied, and the power flow field for laminated plates was analyzed. Finally, a modal test was introduced to further verify the accuracy of the method in this paper.
机译:在这项研究中,提出了一种改进的傅里叶级数方法,用于在任意边界条件下对中厚板层合板的振动建模和分析,其中振动位移是双傅里叶余弦级数和辅助级数函数的线性组合。利用汉密尔顿能量原理建立了振动模型。为了更全面地研究层压复合板的振动特性,首先,通过与先前的结果和有限元方法数据进行比较,验证了当前结果的准确性。对几个关键参数的影响进行了参数研究,例如h / b比率,方向和层数。在本节中,两种解决方案都适用于边界约束的各种组合,包括经典边界条件和弹性支撑的边界条件。其次,为了确定振动的作用位置和振动能量的传递,研究了叠层板的响应分析,并分析了叠层板的功率流场。最后,引入模态测试以进一步验证本文方法的准确性。

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