Structural Optimization Design and Natural Mode Analysis of Small Four Rotors UAV

Renbin Zhou, Zuxun Zhang
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Abstract

The finite element analysis method is applied to optimize the shell structure of small four rotors UAV, and static analysis and natural mode analysis are carried out. The overall scheme of small four rotors UAV is designed and arranged. The four rotors UAV is preassembled by using SolidWorks and its structure are modeled in three dimensions. The finite element method is used to optimize and analyze the structure and natural state of the small four rotors UAV. The static numerical analysis and multimodal numerical analysis of the whole body and components of the four rotors UAV are carried out by using SolidWorks and workbench software, and the structural stress of the four rotors UAV is analyzed. Through analyzing the check results, it is shown that the strength and stiffness are qualified, the scheme is feasible and the design is reasonable; the overall structure design of the small four rotors UAV is reasonable without interference and meets the requirements of design strength and design stiffness.
小型四旋翼无人机结构优化设计与自然模态分析
采用有限元分析方法对小型四旋翼无人机的壳体结构进行优化,并进行静力分析和自然模态分析。设计并布置了小型四旋翼无人机的总体方案。利用SolidWorks软件对四旋翼无人机进行了预装装,并对其结构进行了三维建模。采用有限元方法对小型四旋翼无人机的结构和自然状态进行了优化分析。利用SolidWorks和workbench软件对四旋翼无人机的整体和部件进行了静力数值分析和多模态数值分析,并对四旋翼无人机的结构应力进行了分析。通过对校核结果的分析,表明其强度和刚度均符合要求,方案可行,设计合理;小型四旋翼无人机整体结构设计合理,无干扰,满足设计强度和设计刚度要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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