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Use of Genetic Algorithms for Optimal Design of Sandwich Panels Subjected to Underwater Shock Loading

机译:遗传算法在水下冲击荷载作用下夹芯板的优化设计中的应用

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摘要

Sandwich composite panels are increasingly used in the construction of marine vehicles because of their outstanding strength, stiffness and light weight properties. However, the use of composite panels comes with difficulties in the design process as a result of the large number of design variables involved, including composite material design, topologies and laminate schemes. Hence, this work deals with the presentation of an optimal design of laminated composite sandwich marine structures subjected to underwater explosion. The optimization process is performed using a genetic algorithm (GA), associated with the finite element method (FEM) for the structural analysis. In this optimization procedure, sandwich composite panel finite element model is built up, then the coupled acoustic-structural arithmetic from the widely used calculation program of the finite element "ABAQUS" is used to simulate and analyze the transient dynamic response of a sandwich composite panel that experiences loading by an acoustic pressure shock wave resulting from an underwater explosion "UNDEX". This approach is well suited for enhancing the response of orthotopic and/or laminated composites which involve many design variables. In GA method, a new approach is considered to improve this evolutionary algorithm for laminated stacking sequence and material selection of face layer and cores. Simple crossover, modified ply mutation, and a new operator called "ply swap" are applied to achieve these goals.
机译:夹芯复合板由于其出色的强度,刚度和轻质特性而越来越多地用于海上运输工具的构造中。但是,由于涉及许多设计变量,包括复合材料设计,拓扑结构和层压方案,因此在使用复合板时在设计过程中会遇到困难。因此,这项工作涉及呈现水下爆炸的层压复合夹层海洋结构的最佳设计。使用与有限元方法(FEM)相关的遗传算法(GA)进行优化过程,以进行结构分析。在该优化过程中,建立了夹芯复合板有限元模型,然后利用有限元“ ABAQUS”广泛使用的计算程序中的耦合声结构算法对夹层复合板的瞬态动力响应进行仿真和分析。受到水下爆炸“ UNDEX”产生的声压冲击波的作用。该方法非常适合于增强涉及许多设计变量的原位和/或层压复合材料的响应。在遗传算法中,考虑了一种新的方法来改进这种进化算法,以解决叠层顺序和表层和岩心材料选择的问题。简单的交叉,修改的层突变以及称为“层交换”的新运算符可用于实现这些目标。

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