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Parametric Study on Compression Deformation Behavior of Conformal Load-bearing Smart Skin Antenna Structure

机译:共形承重智能蒙皮天线结构压缩变形行为的参数研究

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摘要

In this paper, a simple conformal load-bearing antenna structure smart skin with a multi-layer sandwich structure composed of carbon/epoxy, glass/epoxy, and a dielectric polymer was designed and fabricated. The mechanical properties of each material in the designed smart skin were obtained from experiments. Tests and analyses were conducted to study the behavior of the smart skin under compressive loads. The designed smart skin failed due to buckling before compression failure. The stresses of each layer and the first failed layer of the smart skin were predicted using MSC/NASTRAN. The finite element model was verified by comparing the numerical results from geometrical linearonlinear analyses with the measured data. The numerically predicted structural behavior of the smart skin agreed well with the experimental data. The results showed that the carbon/epoxy layer took charge of most of the compressive load, and the first failure occurred in the dielectric layer while the other layers remained safe. A numerical model was used to obtain design data from the parametric study. The effect of changing the design variables on the buckling and compressive behavior of the smart skin was also investigated. As a result, it was confirmed that the transverse shear moduli of the honeycomb core had a serious impact on the buckling load of the smart skin when the shear deformation was considerable.
机译:本文设计并制造了一种简单的保形天线结构智能蒙皮,该蒙皮具有由碳/环氧树脂,玻璃/环氧树脂和介电聚合物组成的多层三明治结构。通过实验获得了设计的智能皮肤中每种材料的机械性能。进行测试和分析以研究智能皮肤在压缩载荷下的行为。设计的智能蒙皮因压缩失败前的弯曲而失败。使用MSC / NASTRAN预测了智能皮肤的每一层和第一失效层的应力。通过将几何线性/非线性分析的数值结果与测量数据进行比较,验证了有限元模型。智能皮肤的数值预测结构行为与实验数据吻合良好。结果表明,碳/环氧树脂层承担了大部分的压缩载荷,并且第一个失效发生在介电层中,而其他层则保持安全。使用数值模型从参数研究中获得设计数据。还研究了更改设计变量对智能皮肤的屈曲和压缩行为的影响。结果,证实了当剪切变形相当大时,蜂窝芯的横向剪切模量对智能蒙皮的屈曲载荷具有严重影响。

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