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Multi-objective optimization of a composite stiffened panel for hybrid design of stiffener layout and laminate stacking sequence

机译:加强筋布局和层压堆叠混合设计复合硬化板的多目标优化

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This paper presents a two-level approximation method for multi-objective optimization of a composite stiffened panel. The purpose is to seek the minimum structural mass and maximum fundamental frequency subject to given displacement constraints and manufacturing limitations. The design variables are the stiffener layout, and laminate stacking sequences for stiffeners and the panel skin. By introducing the concept of ground structure in both stiffener layout and laminate stacking sequence, the design problem is formulated with mixed discrete and continuous variables. Two types of discrete variables represent the existence of each stiffener and the existence of each ply in the laminate, respectively, with continuous ones for ply thicknesses. Considering the objectives are of different dimensions, a weighted min-max objective function is defined and minimized. The problem is firstly made explicit with branched multipoint approximate functions. Genetic algorithm (GA) is then adopted to optimize two types of discrete variables, determining which stiffeners/layers are deleted or retained. For fitness calculation in GA, a second-level approximation is built to optimize continuous ply thicknesses of the necessary layers that are retained. By giving different initial designs of stiffener layout and laminate stacking sequences, reasonable optimization results, which are tradeoffs between the considered two objectives, are obtained as design options. From the number of required structural analysis, it shows that the proposed method has a good efficiency in seeking rational solutions, which are tradeoffs between conflicting objectives and also feasible designs satisfying all considered constraints.
机译:本文介绍了复合硬化板的多目标优化的两级近似方法。目的是寻求最小的结构质量和最大基频,以给定的位移约束和制造限制。设计变量是加强件布局,以及用于加强筋和面板皮肤的层压堆叠序列。通过在加强筋布局和层压堆叠序列中引入地面结构的概念,设计问题用混合离散和连续变量配制。两种类型的离散变量代表每个加强件的存在,并且分别在层压板中的每个层的存在,其具有连续的帘布层厚度。考虑到目标具有不同的尺寸,定义和最小化了加权最小目标函数。首先用分支多点近似函数明确地进行问题。然后采用遗传算法(GA)来优化两种类型的离散变量,确定删除或保留的加强件/层。为了在GA中进行健身计算,建立了第二级近似以优化所保留的必要层的连续帘布层。通过为加强件布局和层压堆叠序列提供不同的初始设计,获得了合理的优化结果,即被认为是两个目标之间的权衡,作为设计选项。从所需结构分析的数量来看,该方法在寻求合理解决方案方面具有良好的效率,这些解决方案是相互冲突目标与满足所有被认为的约束的可行设计之间的权衡。

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