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Design Optimization of Blade Stiffened Laminated Composite Plates for MaximumBuckling Load

机译:最大屈曲载荷下叶片加筋复合材料板的设计优化

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The buckling load of a blade stiffened laminated composite plate having midplanesymmetry is maximized for a given total weight. The thickness of the layers and the width and height of the stiffener are taken as the design variables. Buckling analysis is carried out using a finite element method. The optimization problem is solved using commercially available optimization packages. Due to the highly nonlinear nature of the optimality equations, several local optimum solutions are found. To examine the relationship between the number of local optimums and their relative magnitudes, various combinations of fiber orientation for the laminate layers and the blade stiffener are investigated.

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