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Enhanced two-level optimization of anisotropic laminated composite plates with strength and buckling constraints

机译:具有强度和屈曲约束的各向异性层压复合板的两级优化

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In laminated composite design, ply orientations are often restricted to 0°, 90°, + 45 . However, studies have shown that an expanded set of ply orientations may lead to more efficient structures for specific problems. In particular, 60 plies are optimum for shear in buckling for long anisotropic composite laminated plates. A two-level optimization approach, using 0°, 90° , ±45, ±30°, ±60° plies, is presented. At the first level, lamination parameters and plate thicknesses are used to minimize the mass of the composite plate subject to strength and buckling constraints. At the second level, a new modified particle swarm is used to determine laminate stacking sequences. It is shown that mass savings of up to 7.2% can be achieved and that the modified particle swarm outperforms the standard particle swarm in terms of quality of design and efficiency.
机译:在层压复合材料设计中,板层方向通常限制为0°,90°,+ 45。但是,研究表明,扩展的层定向可以导致针对特定问题的更有效结构。特别地,对于各向异性长的复合层压板,屈曲剪切的最佳厚度为60层。提出了使用0°,90°,±45,±30°,±60°层的两级优化方法。在第一层,使用层压参数和板厚度来最小化受强度和屈曲约束的复合板的质量。在第二级,使用新的改良粒子群来确定层压板的堆叠顺序。结果表明,可以节省多达7.2%的质量,并且在设计质量和效率方面,改进的粒子群优于标准粒子群。

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