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Aeroelastic analysis of foam-filled composite corrugated sandwich plates using a higher-order layerwise model

机译:高阶层模型使用高阶模型泡沫填充复合瓦楞夹层板的空气弹性分析

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摘要

Due to the versatility of load bearing and heat insulation, foam-filled composite corrugated sandwich plates have a broad application in aerospace industry as thermal insulation structures for hypersonic vehicles. In this paper, a C-0 higher-order layerwise finite element model is presented for aeroelastic analysis of foam-filled composite corrugated sandwich plates in supersonic flow with equivalent properties. The homogenization method for the foam-filled corrugated core is formulated by force and energy equivalence under different assumptions of force or moment distributions. In the proposed layerwise model, the composite sandwich plate is divided into three sections through thickness, while a higher-order displacement field is assumed for the single-layer orthotropic core section and a first-order displacement field for the two face-sheet sections made of multi layer laminates. The effect of transverse normal strain is also taken into consideration. The unsteady aerodynamic pressure is evaluated by the first-order Piston theory. An eight-noded isoparametric element with 16 degrees of freedom per node is used for finite element method. The accuracy of the present model is verified with existing results in the literature. The influence of geometric parameters and material properties on critical dynamic pressure are discussed.
机译:由于承载和隔热的多功能性,泡沫填充的复合瓦楞三明治板在航空航天工业中具有广泛的应用,作为超音速车辆的保温结构。本文提出了一种C-0高阶层有限元模型,用于在超声波流动中泡沫填充复合瓦楞夹芯板的空气弹性分析,具有等效性能。泡沫填充瓦楞芯的均化方法通过力和能量等效地制定了不同于力或力矩分布的不同假设。在所提出的层状模型中,复合夹层板通过厚度分成三个部分,而制造的两个面板部分的单层正交芯部分和一阶位移场假设高阶位移场多层层压板。还考虑了横向正常菌株的效果。不稳定的空气动力学压力由一阶活塞理论评估。每个节点具有16度自由度的八点点异戊酰胺元件用于有限元方法。本模型的准确性通过文献中的现有结果进行了验证。讨论了几何参数和材料特性对临界动态压力的影响。

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