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Design of Extendable Chord Sections for Morphing Helicopter Rotor Blades

机译:直升机旋翼桨叶变形的可伸缩弦段设计

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Chord extension morphing of helicopter rotors has recently been shown to be highly beneficial for stall alleviation, with the ability to reduce power near the envelope boundaries and increase maximum gross weight, altitude, and speed capability of the aircraft. This article presents a morphing mechanism to extend the chord of a section of the helicopter rotor blade. The region aft of the leading-edge spar contains a morphing cellular structure. In the compact state, the edge of the cellular structure aligns with the trailing edge of the rest of the blade. When the morphing cellular structure is in the extended state, the chord of that section of the blade is increased by 30%. In transitioning from compact to extended states, the cellular structure slides along the ribs which define the boundaries of the morphing section in the spanwise direction. The cellular section has mini-spars running along the spanwise direction to attach the flexible skin and provide stiffness against camber-like deformations due to aerodynamic loads. This article presents a finite element analysis and design of the morphing cellular structure, ensuring that the local strains in the elastic ligaments of the cellular structure do not exceed the maximum allowable, even as the section undergoes a large global strain. The morphing cellular structure itself is designed to be stiff enough to support the pre-stretched skin attached to its surfaces. Various methods of flexible skin attachment to the morphing substructure, and their ramifications, are considered. A model of a blade section is fabricated and shown to undergo chord morphing, as designed.
机译:最近显示,直升机旋翼的弦延展变形对于减轻失速非常有利,它具有减小包络线边界附近的功率并增加飞机的最大总重量,高度和速度的能力。本文提出了一种变形机制,以扩展直升机旋翼桨叶的一部分的弦。前缘翼梁的后部区域包含变形的细胞结构。在紧凑状态下,蜂窝状结构的边缘与叶片其余部分的后缘对齐。当变形蜂窝结构处于伸展状态时,叶片那部分的弦长增加了30%。在从致密状态过渡到延伸状态时,蜂窝状结构沿肋滑动,肋在展展方向上限定了变形部分的边界。蜂窝状部分具有沿翼展方向延伸的小翼梁,以附接柔性蒙皮,并提供刚度以抵抗由于空气动力载荷而导致的弯度状变形。本文介绍了变形蜂窝结构的有限元分析和设计,以确保蜂窝结构弹性韧带中的局部应变不超过最大允许值,即使该截面承受较大的整体应变。变形细胞结构本身被设计成足够坚硬以支撑附着在其表面上的预拉伸皮肤。考虑了将皮肤柔性附接到变形子结构的各种方法及其后果。如设计的那样,制造了叶片截面的模型并显示出其经过了弦变形。

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