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Optimization of anisotropic composite panels with T-shaped stiffeners including transverse shear effects and out-of-plane loading

机译:具有T形加劲肋的各向异性复合板的优化,包括横向剪切效应和面外载荷

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摘要

A two-step method to optimize anisotropic composite panels with T-shaped stiffeners, including a new formulation of the transverse shear properties and an approximation of the ply contiguity (blocking) constraints as functions of the lamination parameters is provided. At the first step, a representative element of the stiffened panel (superstiffener) is optimized using mathematical programming and lamination parameters subjected to combined loading (in-plane and out-of-plane) under strength (laminate or ply failure), buckling and practical design constraints. Ply blocking constraints are imposed at this step to improve convergence towards practical laminates. At the second step, the actual superstiffener's laminates are obtained by using a genetic algorithm. Results, for the case considered, show that the inclusion of transverse shear effects has an associated 2.5% mass penalty and that neglecting its effects might invoke earlier buckling failure. In addition, the influence of designing for failure strength at laminate or ply level is assessed.
机译:提供了一种分两步的方法来优化带有T形加劲肋的各向异性复合板,包括横向剪切特性的新公式化以及作为层压参数函数的板层邻接(粘连)约束的近似值。第一步,使用数学编程优化层压板的代表元素(超强筋),并在强度(层压板或层板破坏),屈曲和实用的条件下,对组合参数(面内和面外)承受组合载荷进行优化设计约束。在此步骤中施加板层阻挡约束,以改善向实用层压板的收敛。第二步,通过使用遗传算法获得实际的超级增强剂层压板。对于所考虑的情况,结果表明,包含横向剪力效应的质量损失为2.5%,而忽略其影响可能会导致较早的屈曲破坏。此外,评估了设计层压板或板层破坏强度的影响。

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