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Cross-section optimal design of composite laminated thin-walled beams

机译:复合材料叠合薄壁梁截面优化设计

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摘要

This paper aims to perform optimal design of cross-section properties of thin-walled laminated composite beams. These properties are expressed as integrals based on the cross-section geometry, on the warping functions for torsion, shear bending and shear warping, and on the individual stiffness of the laminates constituting the cross-section. The finite element method is used in discretizing the theory. For design sensitivity calculations, the cross-section is modelled throughout design elements. Geometrically, these elements may coincide with the laminates that constitute the cross-section. The developed formulation is based on the concept of adjoint structure. After a warping function is calculated for the cross-section, an adjoint problem may be formulated for each of the properties and a corresponding adjoint warping is determined. It can be applied in a unified way to open, closed or hybrid cross-sections. Design optimization is performed by nonlinear programming techniques. Laminate thickness and lamina orientations are considered as design variables.
机译:本文旨在对薄壁层合复合梁的截面特性进行优化设计。这些特性表示为基于截面几何形状,基于扭转,剪切弯曲和剪切翘曲的翘曲函数以及构成截面的层压板的单个刚度的积分。有限元法用于离散化理论。为了进行设计灵敏度计算,在整个设计元素中对横截面进行建模。在几何上,这些元件可以与构成横截面的层压件重合。制定的公式是基于伴随结构的概念。在为横截面计算翘曲函数之后,可以为每个特性制定伴随问题,并确定相应的伴随翘曲。它可以以统一的方式应用于开放,封闭或混合横截面。通过非线性编程技术来执行设计优化。层压板的厚度和薄板取向被视为设计变量。

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