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Optimal Design of General Stiffened Composite Circular Cylinders for Global Buckling with Strength Constraints

机译:具有强度约束的整体屈曲通用加劲复合圆柱的优化设计

摘要

A design strategy for optimal design of composite grid-stiffened cylinders subjected to global and local buckling constraints and strength constraints was developed using a discrete optimizer based on a genetic algorithm. An improved smeared stiffener theory was used for the global analysis. Local buckling of skin segments were assessed using a Rayleigh-Ritz method that accounts for material anisotropy. The local buckling of stiffener segments were also assessed. Constraints on the axial membrane strain in the skin and stiffener segments were imposed to include strength criteria in the grid-stiffened cylinder design. Design variables used in this study were the axial and transverse stiffener spacings, stiffener height and thickness, skin laminate stacking sequence and stiffening configuration, where stiffening configuration is a design variable that indicates the combination of axial, transverse and diagonal stiffener in the grid-stiffened cylinder. The design optimization process was adapted to identify the best suited stiffening configurations and stiffener spacings for grid-stiffened composite cylinder with the length and radius of the cylinder, the design in-plane loads and material properties as inputs. The effect of having axial membrane strain constraints in the skin and stiffener segments in the optimization process is also studied for selected stiffening configurations.
机译:利用基于遗传算法的离散优化器,设计了一种承受整体和局部屈曲约束和强度约束的复合网格加筋圆柱体优化设计的设计策略。改进的涂抹加劲肋理论用于整体分析。使用考虑材料各向异性的瑞利-里兹方法评估皮肤节段的局部屈曲。还评估了加劲肋段的局部屈曲。对蒙皮和加劲肋段中的轴向膜应变施加约束,以在网格加劲圆柱设计中包括强度标准。本研究中使用的设计变量是轴向和横向加劲肋间距,加劲肋高度和厚度,蒙皮层压板堆叠顺序和加劲构型,其中加劲构型是一个设计变量,表示网格加劲肋中轴向,横向和对角加劲肋的组合圆筒。设计优化过程适用于以网格的长度和半径,设计面内载荷和材料特性作为输入来确定最适合网格加筋复合材料圆柱体的加劲结构和加劲肋间距。在优化过程中,还研究了在蒙皮和加劲肋段中具有轴向膜应变约束的效果,以用于选定的加劲结构。

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