4.5 Article

Design and Mobility Analysis of Large Deployable Mechanisms Based on Plane-Symmetric Bricard Linkage

期刊

JOURNAL OF MECHANICAL DESIGN
卷 139, 期 2, 页码 -

出版社

ASME
DOI: 10.1115/1.4035003

关键词

deployable mechanism; Bricard linkage; mobility; singularity

资金

  1. Foundation for Innovative Research Groups of the National Natural Science Foundation of China [51521003]
  2. National Natural Science Foundation of China [51505097]
  3. Self-Planned Task of the State Key Laboratory of Robotics and System (HIT) [SKLRS201508B]
  4. Science and Technology Project of Guangdong, China [2016A010102004]
  5. Shenzhen Research Funds [JCYJ20150529141408781, JCYJ20160427183553203]

向作者/读者索取更多资源

In this paper, a class of large deployable mechanisms constructed by plane-symmetric Bricard linkages is presented. The plane-symmetric Bricard linkage is a closed-loop overconstrained spatial mechanism composed of six hinge-jointed bars, which has one plane of symmetry during its deployment process. The kinematic analysis of the linkage is presented from the perspectives of geometric conditions, closure equations, and degree-of-freedom. The results illustrate that the linkage has one degree-of-freedom and can be deployed from the folded configuration to one rectangle plane. Therefore, the plane-symmetric Bricard linkage can be used as a basic deployable unit to construct larger deployable mechanisms. Four plane-symmetric Bricard linkages can be assembled into a quadrangular module by sharing the vertical bars of the adjacent units. The module is a multiloop deployable mechanism and has one degree-of-freedom. The singularity analysis of the module is developed, and two methods to avoid singularity are presented. A large deployable mast, deployable plane truss, and deployable ring are built with several plane-symmetric Bricard linkages. The deployment properties of the large deployable mechanisms are analyzed, and computer-aided design models for typical examples are built to illustrate their feasibility and validate the analysis and design methods.

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