防务技术2024,Issue(1) :447-456.DOI:10.1016/j.dt.2023.02.022

An origami shield with supporting frame structures optimized by a feature-driven topology optimization method

Dongsheng Jia Pengcheng Feng Liangdi Wang Longcan Chen Jun Wang Jihong Zhu Yingjie Xu Weihong Zhang
防务技术2024,Issue(1) :447-456.DOI:10.1016/j.dt.2023.02.022

An origami shield with supporting frame structures optimized by a feature-driven topology optimization method

Dongsheng Jia 1Pengcheng Feng 1Liangdi Wang 1Longcan Chen 1Jun Wang 1Jihong Zhu 1Yingjie Xu 1Weihong Zhang1
扫码查看

作者信息

  • 1. State IJR Center of Aerospace Design and Additive Manufacturing,Northwestern Polytechnical University,Xi'an,710072,China
  • 折叠

Abstract

In this paper,the design,manufacture and testing of an origami protective shield with a supporting frame structure are presented.It consists of an origami shield surface and a deployable supporting frame structure that needs to be portable and sufficiently stiff.First,for the design of the shield surface,a three-stage origami crease pattern is developed to reduce the shield size in the folded state.The shield surface consists of several stiff modular panels and layered with flexible fabric.The modular panels are made of a multi-layer composite where a ceramic layer is made of small pieces to improve durability as those small pieces enable restriction of crack propagation.Then,the supporting frame structure is designed as a chain-of-bars structure in order to fold into a highly compact state as a bundle of bars and deploy in sequence.Thus,a feature-driven topology structural optimization method preserving component sequence is developed where the inter-dependence of sub-structures is taken into account.A bar with semi-circular ends is used as a basic design feature.The positions of the bar's end points are treated as design variables and the width of the bars is kept constant.Then,a constraint on the total length of the chain of bars is introduced.Finally,the modular panels made of multi-layer composite and the full-scale prototype of the origami shield are fabricated and tested to verify the bullet-proof performance.

Key words

Origami/Deployable structure/Structure design/Shield/Composite materials

引用本文复制引用

基金项目

Chinese Studentship Council(201908060224)

National Natural Science Foundation of China(11872310)

National Natural Science Foundation of China(11972308)

出版年

2024
防务技术
中国兵工学会

防务技术

CSTPCD
影响因子:0.358
ISSN:2214-9147
参考文献量45
段落导航相关论文