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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Morphing structures and fatigue: The case of an unmanned aerial vehicle wing leading edge
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Morphing structures and fatigue: The case of an unmanned aerial vehicle wing leading edge

机译:变形结构和疲劳:无人机机翼前缘的情况

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摘要

With the emergence of novel aircraft structural concepts, which make use of large-scale shape deflections to achieve improved flight performance across significantly different flight regimes and missions, unusual crack paths and mixed-mode crack propagation situations may take place. Consequently, morphing concepts require a full understanding of the materials' behaviour in primary or secondary structures to reliably withstand unusual and demanding operating conditions. A case study of a morphing leading edge developed for the wings of an unmanned aerial vehicle is presented in this paper. Leading edges are subjected to damage originated by bird strike or other events, and those damages can compromise the structural integrity and stability of the flight. Due to the deflections during the morphing structure actuation, cracks will propagate eventually until critical sizes. Possible crack propagation scenarios are presented, considering the service operation of the morphing leading edge.
机译:随着新颖的飞机结构概念的出现,这些概念利用大规模的形变来实现明显不同的飞行状态和任务的改进的飞行性能,可能会出现异常的裂纹路径和混合模式裂纹扩展情况。因此,变形概念需要全面了解材料在一级或二级结构中的行为,以可靠地承受异常和苛刻的工作条件。本文以无人驾驶飞机机翼的变形前缘为例进行了研究。前缘会受到鸟击或其他事件造成的损坏,这些损坏会损害飞行的结构完整性和稳定性。由于变形结构致动期间的挠曲,裂纹将最终传播直至临界尺寸。考虑了变形前沿的服务操作,提出了可能的裂纹扩展方案。

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