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Free vibration analysis of composite sandwich panels with hierarchical honeycomb sandwich core

机译:具有分层蜂窝夹芯的复合夹芯板的自由振动分析

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The vibration characteristics of sandwich panels with a hierarchical composite honeycomb sandwich core were investigated in this study. An orthotropic constitutive model of the hierarchical composite honeycomb sandwich core was used to propose an equivalent model (two-dimensional model). Two-dimensional (2D) and the three-dimensional (3D) finite element models as well as modal tests were used to predict the natural frequencies and mode shapes of the sandwich panels. The prediction results obtained using the equivalent model were consistent with the experimental and 3D finite element analysis results. Subsequently, a redesigned sandwich panel, with a hierarchical cross-honeycomb sandwich core, was manufactured to implement the multifunctional characteristics such as fluid flow and installation of microelectronic devices. To compare the vibration characteristics of the panel with a hierarchical cross-honeycomb sandwich core with those of a panel with a hierarchical square-honeycomb sandwich core, a dimensionless frequency parameter, omega(1)/omega, was proposed. The frequency parameter had different sensitivities to the geometric parameters, i.e., the face-sheet thickness ratio, wall-sheet thickness ratio, and relative density of the filling foam.
机译:研究了具有分层复合蜂窝夹芯结构的夹芯板的振动特性。使用分层复合蜂窝夹芯的正交各向异性本构模型来提出等效模型(二维模型)。使用二维(2D)和三维(3D)有限元模型以及模态测试来预测夹芯板的固有频率和模态。使用等效模型获得的预测结果与实验和3D有限元分析结果一致。随后,经过重新设计的夹心板被制造出来,该夹心板具有分层的交叉蜂窝状夹心,以实现多功能特性,例如流体流动和微电子设备的安装。为了比较具有分层交叉蜂窝夹芯的面板的振动特性和具有分层正方形蜂窝夹芯的面板的振动特性,提出了无量纲的频率参数omega(1)/ omega。频率参数对几何参数具有不同的敏感性,即,面板厚度比,壁板厚度比和填充泡沫的相对密度。

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