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Advanced robust design optimization of FRP sandwich floor panels

机译:FRP夹心地板的高级稳健设计优化

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摘要

FRP composite is now being used in the construction of main structural elements, such as the FRP sandwich panel for flooring system and bridges. The objective of this research is to use multi-objective optimization and robust design techniques to minimize the weight of the FRP sandwich floor panel design as well as maximizing the natural frequency. An Australian manufactures has invented a new FRP composite panel suitable for civil engineering constructions. This research work aims to develop an optimal design of structural fibre composite sandwich floor panel by coupling a Finite Element FE and robust design optimization method. The design variables are the skin plies thickness and the core thickness as a robust variable. Results indicate that there is a trade-off between the objectives. The robustuddesign technique is used then to select a set of candidate geometry, which has a high natural frequency, low weight and low standard deviation. The design simulation was formulated by depending on the EUROCOMP standard design constraints.
机译:现在,FRP复合材料被用于主要结构元件的建筑中,例如用于地板系统和桥梁的FRP夹芯板。这项研究的目的是使用多目标优化和可靠的设计技术来最小化FRP夹心地板设计的重量,并最大化固有频率。一家澳大利亚制造商已经发明了一种新型的FRP复合板,适用于土木工程建筑。这项研究工作旨在通过结合有限元有限元和稳健的设计优化方法来开发结构纤维复合材料夹芯地板的最佳设计。设计变量是表皮层厚度和芯层厚度作为稳健变量。结果表明,目标之间需要权衡。然后,使用稳健的 uddesign技术来选择一组候选几何体,该候选几何体具有较高的固有频率,较低的权重和较低的标准偏差。设计仿真是根据EUROCOMP标准设计约束条件制定的。

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