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J4  2011, Vol. 45 Issue (1): 75-80    DOI: 10.3785/j.issn.1008-973X.2011.01.012
土木工程     
充气薄膜结构的悬垂和充气展开过程
徐彦1, 关富玲1, 川口健一2
1.浙江大学 空间结构研究中心,浙江 杭州 310058; 2.东京大学 生产技术研究所,目黑区 东京 1538505
Drape and inflatable mechanics of membrane inflatable structure
XU Yan1, GUAN Fu-ling1, KAWAGUCHI Kenichi2
1. Space Structure Research Center, Zhejiang University, Hangzhou 310058, China;
2. Institute of Industrial Science, The University of Tokyo, Meguro-ku, Tokyo 153-8505, Japan
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摘要:

为了模拟充气薄膜结构的初始状态和充气运动过程,采用索网代替薄膜曲面.基于广义逆矩阵理论将位移增量中的弹性位移和刚体位移分开,分析薄膜的刚体运动,给出结构稳定的条件方程,分析薄膜的悬垂力学性能.利用空气分子数法得到气体体积的约束方程,求解充气展开分析的基本方程,得到结构的展开过程.将该方法用于分析六边形充气气枕,得到气枕在重力作用下的悬垂状态和充气展开过程的各个状态,稳定性判别参数不断趋向于零.分析结果验证了该方法可以用于分析柔性结构充气展开的整个过程.

Abstract:

 Cable net was used to mesh membrane surface in order to simulate the initial state and inflatable process of membrane inflatable structure. Displacement increment was divided into elastic displacement and rigid-body displacement based on the generalized inverse matrix theory. The rigid-body motion of membrane structure was analyzed, and the condition formula of structures stable state was proposed. The draping mechanics of membrane was investigated. The restrict equation of gas volume was obtained by the gas molecule number method. The basic formula of inflatable process analysis was solved to get the inflatable process of structure. The method was used to simulate the mechanics of hexagon inflatable cushion. The drape state by gravity and each deployable state of inflatable cushion was obtained. The stability distinguishing parameter was tending to zero. The simulation results showed the capability and accuracy of the method in the inflatable analysis of flexible structure.

出版日期: 2011-03-03
:  TU 33  
基金资助:

民用航天科研预先研究项目(C1320060312).

通讯作者: 关富玲,女,教授,博导.     E-mail: ciegfl@zju.edu.cn
作者简介: 徐彦(1982-),男,浙江常山人,博士后,从事航天器设计的研究. E-mail: xyzs@zju.edu.cn
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引用本文:

徐彦, 关富玲, 川口健一. 充气薄膜结构的悬垂和充气展开过程[J]. J4, 2011, 45(1): 75-80.

XU Yan, GUAN Fu-ling, KAWAGUCHI Kenichi. Drape and inflatable mechanics of membrane inflatable structure. J4, 2011, 45(1): 75-80.

链接本文:

http://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2011.01.012        http://www.zjujournals.com/eng/CN/Y2011/V45/I1/75

[1] TABARROK B, QIN Z. Nonlinear analysis of tension structure [J]. Computers and Structures, 1992, 45(5/6): 973-984.
[2] 李方慧.气承式膜结构全过程分析[D]. 哈尔滨:哈尔滨工业大学,2003.
LI Fanghui. Whole process analysis of airsupport membrane structure [D]. Harbin: Harbin Institute of Technology, 2003.
[3] 王小盾.充气膜结构的理论研究和工程应用分析[D]. 天津:天津大学,2000.
WANG Xiaodun. Theory research and engineer apply analysis of inflatable membrane structure [D]. Tianjin: Tianjin University, 2000.
[4] 徐国宏,袁行飞,傅学怡,等. ETFE气枕结构设计:国家游泳中心气枕结构设计简介[J]. 土木工程学报, 2005, 38(4): 66-72.
XU Guohong, YUAN Xingfei, FU Xueyi, et al. Design of ETFE cushions: a brief introduction to the ETFE cushion design of Beijing Olympic National Swimming Center [J]. China Civil Engineering Journal, 2005, 38(4): 66-72.
[5] 刘建明,吴明儿,张其林. ETFE双层气枕计算分析及比较[J]. 东南大学学报:自然科学版,2007, 37(5): 910-914.
LIU Jianming, WU Minger, ZHANG Qilin. Structural analysis and comparison for doublelayer ETFE cushions [J]. Journal of Southeast University: Natural Science Edition, 2007, 37(5): 910-914.
[6] 许晶,薛素铎,向阳.气枕式ETFE膜结构的初始形态分析[J].空间结构,2006,12(1):43-48.
XU Jing, XUE Suduo, XIANG Yang. Initial form analysis of ETFE cushions [J]. Spatial Structures, 2006, 12(1):43-48.
[7] ZHANG Jian, YANG Qingshan, LI Bo. Formstate and loading analysis of airinflated cushion membrane structure [C]∥Proceedings of IASSAPCS Symposium.Beijing: [s.n.], 2006:194-196.
[8] 刘建明. ETFE薄膜双层气枕结构计算分析及试验研究[D].上海:同济大学,2008:20-42.
LIU Jianming. Structural analysis and experimental study on doublelayer ETFE foil cushion. [D]. Shanghai: Tongji university, 2008:20-42.
[9] 徐彦,关富玲.可展开薄膜结构折叠方式和展开过程研究[J].工程力学, 2008, 25(5): 176-181.
XU Yan, GUAN Fuling. Fold methods and deployment analysis of deployable membrane structure [J]. Engineering Mechanics, 2008, 25(5): 176-181.
[10]韩克良.充气膜结构展开仿真和自硬化充气管研究[D]. 杭州:浙江大学,2008: 48-64.
HAN Keliang. Simulation analysis of inflatable membrane structure and research of inflatable selfrigidizable boom [D]. Hangzhou: Zhejiang Universtiy, 2008: 48-64.
[11] 张其林. 索和膜结构[M].上海: 同济大学出版社,2002: 10-34.
[12] 梁峰,钱若军. 空间结构有限元分析的快速求解技术[J].空间结构,2003,9(4): 3-8.
LIANG Feng, QIAN Ruojun. Fast solver technologies in FEM analysis of large spatial structures [J]. Spatial Structures, 2003, 9(4): 3-8.

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