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Enhanced Buckling Performance of a Stiffened, Variable Angle Tow Thermoplastic Composite Panel

机译:增强的可变角度拖曳热塑性复合板的屈曲性能增强

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Variable stiffness composites are exciting emerging structures capable of improving structural performance through tailored load redistribution. This technology is particularly relevant to aerospace structures, such as aircraft wings, which rely on stressed skins to resist compressive, buckling loads. Variable Angle Tow (VAT) composite laminates manufactured via tow steering can increase buckling capacity of composite structures, leading to reduce material weight and costs. Numerical models have progressed to the point whereby this technology can be explored for complex aerospace structures. Further progress can be made through incorporating the latest manufacturing methods with simple and representative testing techniques to analyze buckling performance and benchmark numerical models. This work aims to analyze the buckling performance of a stiffened VAT panel using a novel test method. Laser assisted tape placement is used to manufacture the panel using thermoplastic composite tape, improving manufacturing accuracy and speed. The buckling response of this component is then tested using a newly developed three-point bending test method. The test method was designed using finite element models, experimentally validated, and the results were compared against a numerical model (based on the Ritz approach). It was found that the developed test can produce buckling in the skin, with the buckling mode matching that of the numerical model.
机译:变刚度复合材料是令人兴奋的新兴结构,能够通过量身定制的载荷重新分配来改善结构性能。该技术特别适用于航空结构,例如飞机机翼,该结构依靠应力蒙皮来抵抗压缩屈曲载荷。通过牵引操纵制造的可变角度牵引(VAT)复合层压板可以提高复合结构的屈曲能力,从而降低材料重量和成本。数值模型已经发展到可以探索该技术用于复杂航空结构的地步。通过将最新的制造方法与简单且具有代表性的测试技术相结合,以分析屈曲性能和基准数值模型,可以取得进一步的进展。这项工作旨在使用一种新颖的测试方法来分析加硬的增值税面板的屈曲性能。激光辅助胶带放置用于使用热塑性复合胶带制造面板,从而提高了制造精度和速度。然后使用新开发的三点弯曲测试方法测试该组件的屈曲响应。该测试方法是使用有限元模型设计的,并经过了实验验证,并将结果与​​数值模型(基于Ritz方法)进行了比较。发现开发的测试可以在皮肤中产生屈曲,并且屈曲模式与数值模型相匹配。

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