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Design of compliant mechanism-based variable camber morphing wing with nonlinear large deformation

机译:基于机制的柔性弧形变形设计的设计与非线性大变形

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The morphing wing with large deformation can benefit its flight performance a lot in different conditions. In this study, a variable camber morphing wing with compliant leading and trailing edges is designed by large-displacement compliant mechanisms. The compliant mechanisms are carried out by a hyperelastic structure topology optimization, based on a nonlinear meshless method. A laminated leading-edge skin is designed to fit the curvature changing phenomenon of the leading edge during deformation. A morphing wing demonstrator was manufactured to testify its deformation capability. Comparing to other variable camber morphing wings, the proposal can realize larger deflection of leading and trailing edges. The designed morphing wing shows great improvement in aerodynamic performance and enough strength to resist aerodynamic and structural loadings.
机译:具有大变形的变形翼可以在不同的条件下有很多飞行性能。在这项研究中,通过大排量柔顺机构设计了一种具有柔顺前缘和后缘的可变弯曲变形翼。柔顺机构是通过基于非线性无网格方法的超弹性结构拓扑优化进行。叠层前缘皮肤旨在在变形期间拟合前缘的曲率变化现象。制造了变形翼示范器以证明其变形能力。与其他变量弧形变形翼相比,该提案可以实现领先和后缘的更大偏转。设计的变形翼在空气动力学性能和足够的力量方面具有巨大的改善,以抵抗空气动力学和结构性载荷。

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