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Experimental evaluation of a morphing leading edge concept

机译:变形前沿概念的实验评估

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This article presents an experimental evaluation of a morphing leading edge demonstrator by investigating its morphed shape, the level of induced strains in the airfoil skin, the actuation force, and the morphing mechanism's capability to lock and transfer the applied loads. In addition, a finite element model of the demonstrator is assembled comprising an elastic morphing skin and a kinematic morphing mechanism. The obtained results are used to assess whether the demonstrator performs according to the design objectives, such as the target shape, the character of the morphing deformation and the morphing mechanism locking, applied during the design process. The comparison between experimental and numerical results yielded a good agreement in terms of observed morphed shape and pertaining strains. The average difference in morphed shape was less than 0.08% chord at the maximum actuator extension. The observed difference in the respective strains was less than 400 micro-strains. A significant difference, up to 70%, was observed in the actuation force, which was attributed to the modelling assumptions and to the force measurement technique employed in the experiment. Nevertheless, both results show good qualitative agreement showing similar trends.
机译:本文通过研究变形前沿演示器的变形形状,翼型蒙皮中的诱发应变水平,驱动力以及变形机制锁定和转移施加载荷的能力,对变形前沿演示器进行了实验评估。另外,组装了演示器的有限元模型,该模型包括弹性变形蒙皮和运动变形机制。获得的结果用于评估演示程序是否按照设计目标执行,例如在设计过程中应用的目标形状,变形变形的特征和变形机构锁定。实验结果和数值结果之间的比较在观察到的变形形状和相关应变方面取得了很好的一致性。在最大促动器伸出时,变形形状的平均差小于0.08%。在各个菌株中观察到的差异小于400个微菌株。在驱动力上观察到高达70%的显着差异,这归因于建模假设和实验中使用的力测量技术。然而,两个结果都显示出良好的定性一致性,并显示出相似的趋势。

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