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Trim and Structural Optimization of Subsonic Transport Wings using Nonconventional Aeroelastic Tailoring

机译:使用非常规气动弹性剪裁的亚音速运输机翼的修整和结构优化

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Several minimum-mass aeroelastic optimization problems are solved to evaluate the effectiveness of a variety of novel tailoring schemes for subsonic transport wings. Aeroelastic strength and panel buckling constraints are imposed across several trimmed maneuver loads. Tailoring with metallic thickness variations, functionally graded materials, composite laminates, tow steering, and distributed trailing edge control effectors are all found to provide reductions in structural wing mass with varying degrees of success. The question as to whether this wing mass reduction will offset the increased manufacturing cost is left unresolved for each case.
机译:解决了几个最小质量的空气弹性优化问题,以评估亚音速运输机翼的各种新颖剪裁方案的有效性。气动弹性强度和面板屈曲约束被施加在一些调整后的机动载荷上。具有金属厚度变化,功能梯度材料,复合材料层压板,牵引控制和分布的后缘控制效应器的裁缝,都可以减少结构性机翼质量,并获得不同程度的成功。关于这种机翼质量的减少是否将抵消制造成本的增加的问题,在每种情况下都没有解决。

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