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Dynamic effective equivalent stiffness analysis on the periodical honeycomb reinforced composite laminated structure filled with viscoelastic damping material

机译:填充粘弹性阻尼材料的周期性蜂窝增强复合材料层合结构的动态有效当量刚度分析

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摘要

In the present study, the composite laminated plate (CLP) with a honeycomb reinforcement core layer is established, the dynamic effective equivalent stiffness (DEES) of the CLP is obtained by using the homogenous asymptotic method (HAM). In order to improve the elastic wave energy dissipation and absorption properties of the laminated plate, the vacant place of the core (honeycomb reinforcement layer) is filled with viscoelastic damping material (VDM). As the VDM's physical parameters are frequency-and temperature-dependent, the dynamic properties of the composite structure are analyzed in frequency-and temperature-fields. The effects of geometry parameters including height, width and inner angle of the honeycomb reinforcements on the frequency- and temperature-dependent dynamic properties of the CLP are studied in detail. Results show that by choosing a proper thickness of the aluminum reinforcement and the honeycomb's inner angle, the equivalent stiffness of the composite laminate can reach to 3 to 10 times of the base material's stiffness. Finally, the results obtained through HAM are verified by using the finite element method (FEM).
机译:在本研究中,建立了具有蜂窝增强芯层的复合层压板(CLP),并通过均质渐近法(HAM)获得了CLP的动态有效等效刚度(DEES)。为了改善叠层板的弹性波能量的耗散和吸收特性,在芯(蜂窝增强层)的空白处填充粘弹性阻尼材料(VDM)。由于VDM的物理参数与频率和温度有关,因此在频率和温度场中分析了复合结构的动态特性。详细研究了蜂窝增强材料的几何参数(包括高度,宽度和内角)对CLP随频率和温度变化的动态特性的影响。结果表明,通过选择适当的铝增强材料厚度和蜂窝的内角,复合层压板的等效刚度可以达到母材刚度的3至10倍。最后,使用有限元方法(FEM)验证了通过HAM获得的结果。

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