首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Maximization of fundamental frequency and buckling load for the optimal stacking sequence design of laminated composite structures
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Maximization of fundamental frequency and buckling load for the optimal stacking sequence design of laminated composite structures

机译:叠层复合结构最优叠层顺序设计的基频和屈曲载荷最大化

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The paper illustrates the application of a two-level approximation method to the lay-up design of laminated structures for maximization of fundamental frequency and buckling load with design constraints. Previously developed for the mass-minimization design, the approximation method was achieved by starting from an initial design of stacking sequence. Benchmark examples have verified its efficacy in dealing with the mass-reduction problems, but it does not have the capability to address the objective-maximization problems, which is mainly due to the limitation of the second-level approximate problem. In this work, this method is improved and extended for the consideration of objective maximization with more design constraints. The second-level approximate problem is reconstructed with mixed direct/reciprocal design variables, suitable for solving maximization problems. By varying different initial designs of stacking sequence and conducting repeated runs in the numerical examples, its efficiency is significantly shown after making comparisons with other methods.
机译:本文说明了一种两层近似方法在层合结构的铺层设计中的应用,该层合结构在设计约束条件下最大化基频和屈曲载荷。先前为质量最小化设计而开发的近似方法是从最初的堆叠顺序设计开始实现的。基准示例已经证明了其在解决质量减少问题方面的有效性,但是它没有能力解决目标最大化问题,这主要是由于二级近似问题的局限性所致。在这项工作中,此方法经过改进和扩展,以考虑具有更多设计约束的目标最大化。使用混合的直接/倒数设计变量重构第二级近似问题,适用于求解最大化问题。通过改变堆叠顺序的不同初始设计并在数值示例中进行重复运行,在与其他方法进行比较后,其效率得到了显着证明。

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