CYLINDRICAL TENSEGRITY DEPLOYABLE STRUCTURE

被引:0
作者
Luo, Ani [1 ]
Li, Quanhe [1 ]
Xiao, Te [1 ]
Kong, Lingying [1 ]
Wang, Longkun [1 ]
Zhang, Qinghua [1 ]
Wang, Yuanyuan [1 ]
Liu, Heping [1 ]
机构
[1] Harbin Engn Univ, Harbin, Heilongjiang, Peoples R China
来源
PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2015, VOL. 11 | 2016年
关键词
deployable structure; tensegrity; connectivity matrix; force density;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The string-bar deployable structure should be a main direction for creating the new truss deployable structure applied in the spaceflight. A cylindrical tensegrtiy deployable structure is researched in the text. At first, referring to a cylinder folded with papers, a cylindrical tensegrity is presented in the text. Relationship between nodes and members of the structure is researched to set up the connectivity matrix. The coordinates of the nodes and connectivity matrix are applied further to obtain the lengths of all the members. Using nodes matrix, member matrices, connectivity matrix and external force matrix, the internal force density matrix of the tensegrity structure in equilibrium is solved. Considering the failure constraints, the force density of the members is optimized to get minimal mass of the structure. A model is built to verify the feasibility of the method for designing the tensegrity structure. Considering that lengths of all the bars are constant, length changes of all the strings are researched when the tensegrity structure is compressed and elongated along its axis. The methods for connecting the strings are analyzed further. All the analytical results are applied to set up an experimental model. The experimental model is tested to prove that the designed mechanism can be deployed and folded. So the design is successful. Through research in the text, a cylindrical tensegrity deployable structure is obtained. Methods for building the tensegrity structure and transforming it into a deployable structure can be proper to design of other deployable structures.
引用
收藏
页数:7
相关论文
共 50 条
[21]   Smart tensegrity structure for NESTOR [J].
Skelton, RE ;
He, M .
SMART STRUCTURES AND INTEGRATED SYSTEMS - SMART STRUCTURES AND MATERIALS 1997, 1997, 3041 :780-787
[22]   Vibration of an elastic tensegrity structure [J].
Oppenheim, IJ ;
Williams, WO .
EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2001, 20 (06) :1023-1031
[23]   Equilibrium conditions of a tensegrity structure [J].
Williamson, D ;
Skelton, RE ;
Han, J .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2003, 40 (23) :6347-6367
[24]   A consideration of the elbow as a tensegrity structure [J].
Scarr, Graham .
INTERNATIONAL JOURNAL OF OSTEOPATHIC MEDICINE, 2012, 15 (02) :53-65
[25]   Genetically Finding Algorithm for a Tensegrity Structure [J].
Gan, Buntara Sthenly ;
Yamamoto, Manabu .
TRENDS IN BUILDING MATERIALS RESEARCH, PTS 1 AND 2, 2012, 450-451 :861-864
[26]   Rection as a Synthesis of Reciprocal and Tensegrity Structure [J].
Andry Widyowijatnoko ;
Irfan Irwanuddin ;
Rakhmat Fitranto Aditra .
Nexus Network Journal, 2019, 21 :465-478
[27]   Geometric effects in an elastic tensegrity structure [J].
Oppenheim, IJ ;
Williams, WO .
JOURNAL OF ELASTICITY, 2000, 59 (1-3) :51-65
[28]   Rolling Locomotion of Deformable Tensegrity Structure [J].
Shibata, M. ;
Hirai, S. .
MOBILE ROBOTICS-SOLUTIONS AND CHALLENGES, 2010, :479-486
[29]   Study of a Flowerlike Deployable Structure [J].
Luo, Ani ;
Liu, Heping ;
Li, Cheng ;
Wang, Yongfan .
STROJNISKI VESTNIK-JOURNAL OF MECHANICAL ENGINEERING, 2013, 59 (04) :216-222
[30]   Underwood Pavilion A Parametric Tensegrity Structure [J].
Riether, Gernot ;
Wit, Andrew John .
ADVANCES IN ARCHITECTURAL GEOMETRY 2016, 2016, :188-203