Optimizing the Qusai-static Folding and Deploying of Thin-Walled Tube Flexure Hinges with Double Slots

被引:18
作者
Yang Hui [1 ]
Deng Zongquan [1 ]
Liu Rongqiang [1 ]
Wang Yan [1 ]
Guo Hongwei [1 ]
机构
[1] Harbin Inst Technol, State Key Lab Robot & Syst, Harbin 150080, Peoples R China
基金
中国国家自然科学基金;
关键词
design optimization; quasi-static folding and deploying; flexure hinges; thin-walled tube; response surface method; numerical simulation; TAPE-SPRINGS; DESIGN OPTIMIZATION; SQUARE TUBES; DEPLOYMENT; DYNAMICS;
D O I
10.3901/CJME.2014.02.279
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The thin-walled tube flexure(TWTF) hinges have important potential application value in the deployment mechanisms of satellite and solar array, but the optimal design of the TWTF hinges haven't been completely solved, which restricts their applications. An optimal design method for the qusai-static folding and deploying of TWTF hinges with double slots is presented based on the response surface theory. Firstly, the full factorial method is employed to design of the experiments. Then, the finite element models of the TWTF hinges with double slots are constructed to simulate the qusai-static folding and deploying non-linear analysis. What's more, the mathematical model of the TWTF flexure hinge quasi-static folding and deploying properties are derived by the response surface method. Considering of small mass and high stability, the peak moment of quasi-static folding and deploying as well as the lightless are set as the objectives to get the optimal performances. The relative errors of the objectives between the optimal design results and the FE analysis results are less than 7%, which demonstrates the precision of the surrogate models. Lastly, the parameter study shows that both the slots length and the slots width both have significant effects to the peak moment of quasi-static folding and deploying of TWTF hinges with double slots. However, the maximum Mises stress of quasi-static folding is more sensitive to the slots length than the slots width. The proposed research can be applied to optimize other thin-walled flexure hinges under quasi-static folding and deploying, which is of great importance to design of flexure hinges with high stability and low stress.
引用
收藏
页码:279 / 286
页数:8
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