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A general and effective approach for the optimal design of fiber reinforced composite structures

机译:纤维增强复合材料结构优化设计的通用有效方法

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This paper presents a general and effective procedure based on a mathematical programming approach for composite structures optimal design, under weight, stiffness and strength criteria. Effective means that the developed approach is able to find a local optimum in few iterations, even with a large number of design variables. In addition, as the formulation may include strength constraints, it is shown that not only plies thickness but also fiber orientations should be considered as design variables. Besides this, it is explained how these angular variables can improve the structural performance. The generality of the approach is related to the fact that the developed optimization technique is not only dedicated to the design of particular laminates configurations, but is also reliable for general problems including isotropic and/or anisotropic materials, as well as other structural responses. The design problem formulation relies on a direct parameterization of the laminates in terms of the physical design variables, that is orientations and thicknesses, and not on alternative ones like the lamination parameters. Numerical applications, including a non-homogeneous composite membrane design problem and an industrial test case, are presented.
机译:本文提出了一种基于数学程序设计方法的常规有效方法,可根据重量,刚度和强度标准对复合结构进行最佳设计。有效意味着开发的方法即使有大量的设计变量,也能够在几次迭代中找到局部最优值。另外,由于该配方可能包括强度限制,因此表明不仅层厚度而且纤维取向也应被视为设计变量。除此之外,还将说明这些角度变量如何改善结构性能。该方法的普遍性与以下事实有关:已开发的优化技术不仅致力于特定层压板配置的设计,而且对于包括各向同性和/或各向异性材料以及其他结构响应在内的一般问题也很可靠。设计问题的公式化取决于层压板在物理设计变量(即方向和厚度)方面的直接参数化,而不依赖于诸如层压参数之类的替代参数。提出了数值应用,包括非均质复合膜设计问题和工业测试案例。

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