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Eigenvibration Analysis Method for Honeycomb Sandwich Panels

机译:蜂窝夹芯板的本征振动分析方法

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摘要

The honeycomb sandwich panel (HSP) is constructed by two facing plates and honeycomb core. It has been said that the HSP has high specific modulus and strength because of the light core. Nowadays the HSP is applied to structural components in various industrial fields. HSP has lots of geometric parameters, facing thickness, core thickness, wall thickness and cell size and so only for application of the HSP to structural components, the prediction of its mechanical properties would mechanical properties would be very important procedure. In order to investigate influences of the parameters on the mechanical properties of the whole HSP, a simple numerical modeling method is proposed. A modeling method of honeycomb core will be an important key to the numerical modeling of the HSP. Considered the periodicity of honeycomb core, the core and adhesive layer are modeled by two kinds of beam elements. The facing plate is represented by shell elements. In this modeling, a use of the proposed model, eigenvibration analyzes are performed and compared with experimental results. After checking the validity of the proposed model, the influences of geometric parameters upon the eigenvibration properties are quantitatively discussed.
机译:蜂窝夹芯板(HSP)由两个面板和蜂窝芯构成。据说由于轻芯,HSP具有高的比模量和强度。如今,HSP已应用于各种工业领域的结构部件。 HSP具有许多几何参数,面厚度,芯厚度,壁厚和孔尺寸,因此仅将HSP应用于结构部件,对其机械性能的预测对机械性能将是非常重要的过程。为了研究参数对整个热电偶力学性能的影响,提出了一种简单的数值模拟方法。蜂窝芯的建模方法将是HSP数值建模的重要关键。考虑到蜂窝芯的周期性,通过两种梁单元对芯层和粘结层进行建模。面板由壳体元素表示。在此建模中,使用建议的模型进行本征振动分析,并将其与实验结果进行比较。在检查了所提出模型的有效性之后,定量讨论了几何参数对本征振动特性的影响。

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