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Shape optimisation of composite corrugated morphing skins

机译:复合瓦楞纸变形皮的形状优化

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One of the challenging parts of the morphing wing is the anisotropic skin, which must be flexible enough to allow the wing to change its shape and at the same time being stiff enough to withstand the aerodynamic loads. Composite corrugated skins have exceedingly anisotropic behaviour as they are stiff along the corrugation direction but flexible in transverse direction. Hence, elastomeric coated composite corrugated panels have been proposed as a candidate for application in morphing wings. This paper presents the shape optimisation of the corrugation with respect to better performance of the morphing skin and manufacturing constraints. The shape of the skin is optimised by minimising the in-plane stiffness and weight of the skin and maximising its flexural out-of-plane stiffness. The objective functions were obtained from homogenised model that depends on geometric and mechanical properties of the coated corrugated panel by means of finite element method for thin beams. A few methods of optimisation were considered: aggregated and genetic algorithm methods as representative of two major categories of multi-objective solving methods. A number of different approaches are proposed in order to solve the problem, such as corrugated skin with and without elastomer coating. The advantages of the new optimised shape of the corrugated skin over the typical shapes are discussed. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:变形机翼的挑战性部分之一是各向异性蒙皮,各向异性蒙皮必须足够柔韧性以允许机翼改变其形状,同时又要足够坚硬以承受空气动力载荷。复合波纹皮具有非常各向异性的特性,因为它们沿波纹方向坚硬但在横向方向上具有柔韧性。因此,已经提出了弹性体涂覆的复合波纹板作为变型机翼中应用的候选。本文针对波纹蒙皮的更好性能和制造约束条件,提出了瓦楞纸的形状优化。通过最小化皮肤的平面内刚度和重量并最大化其弯曲平面外刚度来优化皮肤的形状。目标函数是从均质化模型中获得的,该均质化模型依赖于涂层瓦楞纸板的几何和机械特性,通过薄梁的有限元方法获得。考虑了几种优化方法:聚集和遗传算法方法代表多目标求解方法的两个主要类别。为了解决该问题,提出了许多不同的方法,例如带有和不带有弹性体涂层的皱皮。讨论了波纹状蒙皮新优化形状相对于典型形状的优点。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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