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Composite flexible skin with large negative Poisson's ratio range: Numerical and experimental analysis

机译:泊松比负范围较大的复合柔性皮层:数值和实验分析

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摘要

This paper describes the manufacturing, characterization and parametric modeling of a novel fiber-reinforced composite flexible skin with in-plane negative Poisson's ratio (auxetic) behavior. The elastic mechanical performance of the auxetic skin is evaluated using a three-dimensional analytical model based on the classical laminate theory (CLT) and Sun's thick laminate theory. Good agreement is observed between in-plane Poisson's ratios and Young's moduli of the composite skin obtained by the theoretical model and the experimental results. A parametric analysis carried out with the validated model shows that significant changes in the in-plane negative Poisson's ratio can be achieved through different combinations of matrix and fiber materials and stacking sequences. It is also possible to identify fiber-reinforced composite skin configurations with the same in-plane auxeticity but different orthotropic stiffness performance, or the same orthotropic stiffness performance but different in-plane auxeticity. The analysis presented in this work provides useful guidelines to develop and manufacture flexible skins with negative Poisson's ratio for applications focused on morphing aircraft wing designs.
机译:本文描述了具有面内负泊松比(膨胀)行为的新型纤维增强复合柔性蒙皮的制造,表征和参数化建模。使用基于经典层压理论(CLT)和Sun的厚层压理论的三维分析模型,可以评估肿胀性皮肤的弹性力学性能。理论模型和实验结果表明,复合材料蒙皮的面内泊松比与杨氏模量之间吻合良好。用已验证的模型进行的参数分析表明,通过不同的基质和纤维材料组合以及堆叠顺序,可以实现面内负泊松比的显着变化。还可以识别出具有相同平面内膨胀性但正交异性刚度性能不同,或相同正交异性刚度性能但具有不同面内粘性的纤维增强复合表皮。这项工作中提供的分析为开发和制造具有负泊松比的柔性蒙皮提供了有用的指导,适用于侧重于飞机机翼设计变形的应用。

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