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Extremely deformable morphing leading edge: Optimization, design and structural testing

机译:极不易变形的变形前沿:优化,设计和结构测试

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The future generation of high-lift devices needs to be improved to reduce the noise footprint and increase the performance for takeoff and landing of transport aircraft. To contribute to these goals, an active blown Coand flap-based high-lift system is being investigated within the German national Collaborative Research Center 880 as an alternative to the state-of-the-art flaps. A key part of this system is an adaptive gapless droop nose with extremely large morphing deformation. The design and construction of this component are based on a structural optimization framework. The framework consists of two hierarchical design steps: an optimization of the hybrid composite skin layout with integral T-stringers, acting as joints to the inner actuation mechanism, and the kinematic optimization of the latter. A hybrid skin structure allows a large curvature to rupture in the morphing direction, while providing high stiffness in the transverse direction. This article describes a full-scale hybrid composite morphing droop nose and its structural tests. The results of these tests are finally compared to the finite element simulation and applied for validation of the optimization framework. A sensitivity analysis is provided to evaluate the influence of modelling and manufacturing uncertainties to the shape quality.
机译:需要改进下一代的高升力设备,以减少噪声足迹并提高运输飞机的起降性能。为了实现这些目标,德国国家合作研究中心880正在研究一种基于主动吹气式Coand襟翼的高升力系统,以替代最新的襟翼。该系统的关键部分是具有极大变形变形的自适应无间隙下垂鼻梁。该组件的设计和构建基于结构优化框架。该框架包括两个分层设计步骤:使用整体T形梁优化混合复合材料蒙皮布局(充当内部致动机构的关节),并对其进行运动学优化。混合蒙皮结构允许大的曲率在变形方向上破裂,同时在横向方向上提供高的刚度。本文介绍了一个全面的混合复合变形下垂鼻及其结构测试。最后将这些测试的结果与有限元模拟进行比较,并将其用于优化框架的验证。提供敏感性分析以评估建模和制造不确定性对形状质量的影响。

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