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Higher order approximate dynamic models for layered composites

机译:层状复合材料的高阶近似动力学模型

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Based on a higher order dynamic approximate theory developed in the present study for anisotropic elastic plates, two dynamic models, discrete and continuum models (DM and CM), are proposed for layered composites. Of the two models, CM is more important, which is established in the study of periodic layered composites using smoothing operations. CM has the properties: it contains inherently the interface and Floquet conditions and facilitates the analysis of the composite, in particular, when the number of laminae in the composite is large; it contains all kinds of deformation modes of the layered composite; its validity range for frequencies and wave numbers may be enlarged by increasing, respectively, the orders of the theory and interface conditions. CM is assessed by comparing its prediction with the exact for the spectra of harmonic waves propagating in various directions of a two-phase periodic layered composite, as well as, for transient dynamic response of a composite slab induced by waves propagating perpendicular and parallel to layering. A good comparison is observed in the results and it is found that the model predicts very well the periodic structure of spectra with passing and stopping bands for harmonic waves propagating perpendicular to layering. In view of the results, the physical significance of Floquet wave number is also discussed in the study.
机译:基于本研究针对各向异性弹性板开发的高阶动态近似理论,提出了层状复合材料的两个动力学模型,即离散模型和连续模型(DM和CM)。在这两个模型中,CM更重要,这是在研究使用平滑操作的周期性分层复合材料时建立的。 CM具有以下特性:它固有地包含界面和Floquet条件,并有助于分析复合材料,特别是在复合材料中的层流数量较大时;它包含了层状复合材料的各种变形模式。可以通过分别增加理论和界面条件的阶数来扩大其对频率和波数的有效范围。通过将其预测值与在两相周期性层状复合材料的各个方向上传播的谐波频谱的精确度进行比较,以及对垂直和平行于层状传播的波引起的复合板的瞬态动态响应进行比较,来评估CM 。在结果中观察到很好的比较,并且发现该模型很好地预测了垂直于分层传播的谐波具有通带和阻带的频谱的周期性结构。根据结果​​,在研究中还讨论了浮子波数的物理意义。

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