首页> 外文会议>International Congress on Sound and Vibration >A NUMERICAL SIMULATION OF THE EFFECT OF CORE DENSITY AND PANEL THICKNESS ON VIBRATION OF THREE-LAYER HOURGLASS LATTICE SANDWICH STRUCTURE
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A NUMERICAL SIMULATION OF THE EFFECT OF CORE DENSITY AND PANEL THICKNESS ON VIBRATION OF THREE-LAYER HOURGLASS LATTICE SANDWICH STRUCTURE

机译:芯孔厚度与三层沙漏格子夹层结构振动效果的数值模拟

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The traditional steel structure has many disadvantages, including excessive mass and high density. Owing to the characteristics of low density, high strength-to-weight ratio and excellent energy absorption, metallic sandwich structures with cellular core have attracted tremendous attention in recent years and become significant protective structure in transportation industry, aerospace structures and marine structures fields. The design of the core layer plays an important role in damping and noise reduction of the overall structure, and the panel thickness variation of the structure also has an important effect. In this paper, the effects of core density and panel thickness are considered. The configuration of three-layer hourglass lattice sandwich structure is designed. The relative density of each core layer is changed with sectional dimension of core truss members to establish four gradient models; three thickness ratios are employed for the front and rear panels of four gradient models in order to compare when keeping the total thickness of the front and rear panels of the model constant. The commercial software ABAQUS was used to simulate the vibration of 12 models to obtain the first to sixth natural frequencies of each model, and the results were compared to probe the influence of core density and thickness ratio of the front and rear panels on overall structural vibration.
机译:传统的钢结构有许多缺点,包括过度的质量和高的密度。由于密度低,强度高,重量比和优良的能量吸收的特性,蜂窝芯的金属夹层结构已经引起极大的关注,近年来成为显著保护结构在交通运输行业,航空航天结构和海上结构域。核心层的设计在阻尼和整体结构的噪声降低了重要的作用,并且该结构的面板厚度变化也具有重要的作用。在本文中,芯密度和面板厚度的影响被考虑。三层沙漏晶格夹层结构的配置的设计。每个核心层的相对密度与核心桁梁部件的横截面尺寸改变建立4个梯度模型; 3个厚度比被用于四个梯度模型中的前,后面板,以便保持前和模型恒定的后面板的总厚度时比较。商业软件ABAQUS被用来模拟的12种型号的振动,以获得第一到每个模型的第六固有频率,并且将结果进行比较,以探测芯密度对整体结构振动的影响和前的厚度比面板和后面板。

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