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Stiffness Optimization of Composite Wings with Aeroelastic Constraints

机译:气动弹性约束复合材料机翼的刚度优化

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摘要

The drive for ever more efficient aircraft structures stimulates the research to use the full potential of anlsotropy of composite materials. The stiffness optimization of the upper and lower skins of a composite wing is demonstrated in this paper. The wing was optimized taking into consideration the mass, strength, buckling, aerodynamic twist, and aileron effectiveness. The elements of the in-plane and bending stiffness matrices and laminate thicknesses were used as design variables. Static aeroelastic analysis was performed using nastran to find the responses of the structure and their sensitivities to the design variables. The results of aeroelastic finite element analysis were processed to create efficient structural approximations of the responses. The approximations were used by a gradient-based optimizer to update the design variables. The separable and continuous approximations in terms of the design variables allowed for the use of efficient parallel computing strategies, in which single or multimodal objective functions were minimized. The first numerical results for a generic wing confirmed a functional setup for multiload case stiffness optimizations with aeroelastic design responses. Stiffness-optimized unbalanced laminates demonstrated a clear advantage over balanced laminates for mass or aileron effectiveness optimizations, with constraints on strength and buckling.
机译:对更高效的飞机结构的追求激发了研究人员充分利用复合材料各向异性的潜力。本文展示了复合材料机翼上下蒙皮的刚度优化。考虑到质量,强度,屈曲,空气动力学扭曲和副翼效率,对机翼进行了优化。平面内和弯曲刚度矩阵以及层压板厚度的元素用作设计变量。使用nastran进行静态气动弹性分析,以发现结构的响应及其对设计变量的敏感性。对气动弹性有限元分析的结果进行处理,以创建有效的响应结构近似值。近似值由基于梯度的优化器用来更新设计变量。设计变量方面的可分离和连续近似值允许使用有效的并行计算策略,在该策略中,最小化了单峰或多峰目标函数。通用机翼的第一个数值结果证实了具有气动弹性设计响应的多载荷箱体刚度优化的功能设置。刚度优化的不平衡层压板在质量或副翼效率优化方面表现出明显优于平衡层压板的明显优势,但对强度和屈曲有约束。

著录项

  • 来源
    《Journal of Aircraft》 |2013年第4期|1159-1168|共10页
  • 作者单位

    Institute of Aeroelasticity, Bunsenstrasse 10,DLR, German Aerospace Center, 37073 Goettingen, Germany;

    Institute of Aeroelasticity, Bunsenstrasse 10,DLR, German Aerospace Center, 37073 Goettingen, Germany;

    Aerospace Structures, Kluyverweg 1,Delft University of Technology, 2629 HS Delft, The Netherlands;

    University of South Carolina, Columbia SC,Delft University of Technology, 2629 HS Delft, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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