Wrapping Deployment Simulation Analysis of Leaf-Inspired Membrane Structures

Lin, Qiuhong and Jia, Wenwen and Wu, Huiying and Kueh, Ahmad B. H. and Wang, Yutao and Wang, Kexin and Cai, Jianguo (2021) Wrapping Deployment Simulation Analysis of Leaf-Inspired Membrane Structures. Aerospace, 8 (8). p. 218. ISSN 2226-4310

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Abstract

Deployable membrane structures have received wide attention in many engineering applications, such as the military, aerospace, and aviation. Their properties of light weight and high storage ratio meet the requirements for aerospace exactly. In this paper, the wrapping deployment of membrane structures inspired by leaves are simulation-analyzed for prospective improvement. Three leaf-inspired patterns are investigated and discussed from the corresponding paper-craft design principles and deployment process perspectives. The deployment performance evaluation system according to the factors effecting working performance including maximum stress, driving force, maximum strain energy, smoothness index, and maximum folding height is established based on the results of the simulation analysis. Then, a comparison between the three patterns is carried out based on the deployment performance evaluation system. Moreover, it is found that adding creases reduces the folded height but the development performance gets worse. There is a balance between the folding ratio and development performance when the additional creases are added. The results can provide useful suggestions for designing wrapping deployment structures.

Item Type: Article
Subjects: Apsci Archives > Engineering
Depositing User: Unnamed user with email support@apsciarchives.com
Date Deposited: 03 Jan 2023 09:50
Last Modified: 15 Nov 2023 07:25
URI: http://eprints.go2submission.com/id/eprint/23

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