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Analysis and design of lattice materials for large cord and curvature variations in skin panels of morphing wings

机译:变形机翼蒙皮面板中大帘线和曲率变化的格子材料的分析和设计

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In the past few decades, several concepts for morphing wings have been proposed with the aim of improving the structural and aerodynamic performance of conventional aircraft wings. One of the most interesting challenges in the design of a morphing wing is represented by the skin, which needs to meet specific deformation requirements. In particular when morphing involves changes of cord or curvature, the skin is required to undergo large recoverable deformation in the actuation direction, while maintaining the desired shape and strength in the others. One promising material concept that can meet these specifications is represented by lattice materials. This paper examines the use of alternative planar lattices in the embodiment of a skin panel for cord and camber morphing of an aircraft wing. We use a structural homogenization scheme capable of capturing large geometric nonlinearity, to examine the structural performance of lattice skin concepts, as well as to tune their mechanical properties in desired directions.
机译:在过去的几十年中,已经提出了几种使机翼变形的概念,目的是改善常规飞机机翼的结构和空气动力性能。变形机翼设计中最有趣的挑战之一是蒙皮,它需要满足特定的变形要求。特别是当变形涉及绳索或曲率的变化时,要求皮肤在致动方向上经历大的可恢复变形,同时在其他方向上保持期望的形状和强度。可以满足这些规格的一种有前途的材料概念是晶格材料。本文研究了在蒙皮面板实施例中替代平面格子在飞机机翼的帘线和外倾变形中的使用。我们使用一种结构均质化方案,该方案能够捕获较大的几何非线性,以检查晶格蒙皮概念的结构性能,以及在所需方向上调整其机械性能。

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