Suppr超能文献

基于增材制造的空间相机薄壁主支撑结构设计与优化

Design and Optimization of Thin-Walled Main Support Structure for Space Camera Based on Additive Manufacturing.

作者信息

Peng Jiahao, Liu Shijie, Wang Dong, Xu Anpeng, Huang Xin, Ma Tianqi, Wang Jing, Li Hang

机构信息

Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Micromachines (Basel). 2024 Jan 30;15(2):211. doi: 10.3390/mi15020211.

Abstract

In order to solve the design requirements of high stiffness and lightweight for the primary support structure of a wide-field auroral imager, we propose a solution for designing and optimizing a large-scale complex thin-walled structure using additive manufacturing. Firstly, we devise an integrated thin-walled structure and test material for the main support. Secondly, shape optimization is achieved via the optimization of the lateral slope angle of the primary support based on Timoshenko cantilever beam theory. Additionally, an active fitting optimization algorithm is proposed for the purpose of refining the wall thickness of the thin-walled structure. Then, we determine the structural design of the main support. This primary support is manufactured via selective laser melting (SLM). Following processing, the structure size is 538 mm × 400 mm × 384 mm, and the mass is 7.78 kg. Finally, frequency scanning experiments indicate that, in the horizontal direction, there is a natural frequency of 105.97 Hz with an error rate of approximately 3% compared to finite element analysis results. This research confirms that our large-scale complex, thin-walled main support structure design meets all design requirements.

摘要

为了解决宽视场极光成像仪主支撑结构高刚度和轻量化的设计要求,我们提出了一种利用增材制造设计和优化大型复杂薄壁结构的解决方案。首先,我们为主要支撑设计了一种集成薄壁结构和测试材料。其次,基于铁木辛柯悬臂梁理论,通过优化主支撑的侧向倾斜角度实现形状优化。此外,为了细化薄壁结构的壁厚,提出了一种主动拟合优化算法。然后,我们确定了主要支撑的结构设计。该主支撑通过选择性激光熔化(SLM)制造。加工后,结构尺寸为538毫米×400毫米×384毫米,质量为7.78千克。最后,频率扫描实验表明,在水平方向上,固有频率为105.97赫兹,与有限元分析结果相比,误差率约为3%。本研究证实,我们的大型复杂薄壁主支撑结构设计满足所有设计要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0ab/10890661/6d7a757ed9ed/micromachines-15-00211-g001.jpg

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