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◆ SAE technical papers on CD-ROM/SAE technical paper series2026-07-31· Container (type theory)

Finite Element-Based Structural Optimization for UAV Storage-Launch Container

Weiyang Yuan, Yuguo Ji, Zhipeng Liu, Wenxin Yu

原始摘要(英文原文)· Original abstract
To fulfill the multi-tube launch requirements for a specific folding-wing UAV, this study improves the structure of the existing storage-launch container. Based on the finite element method, a parametric model of the container is established, and a multi-condition mechanical analysis is carried out for various storage, transportation, and launch conditions. The difference between the first six natural frequencies of the free mode and the prestressed mode is compared and analyzed. The modal analysis model considering prestress is used to identify the optimization area of the container. The variable density method (SIMP) is used to optimize the topology of the container, with the volume of the container as the constraint condition and the minimum strain energy as the optimization goal. The optimization results show that the first-order modal natural frequency of the container is increased by 108%, and the first six natural frequencies are increased to a safe range, which effectively avoids the resonance risk. At the same time, the quality is reduced by 29%, and good optimization results are achieved.
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Finite Element-Based Structural Optimization for UAV Storage-Launch Container — 科研速览 Science Skim