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Stiffness Analysis of Spherical Parallel Mechanism U_(P+R) with 2-DOF

Stiffness Analysis of Spherical Parallel Mechanism U_(P+R) with 2-DOF
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摘要 As one of the typical less-mobility parallel mechanisms, the spherical parallel mechanism Up.s with two degrees of freedom (2-DOF) possess high order overconstraints, and the calculation of its stiffness is partly different with general parallel mechanisms owing to the bars in each branch are assumed to be arc-shaped. By means of small deformation superposition principle, the relationship between the angle displacement and line displacement of moving platform and the forces acted on the branches were derived out. Based on the results of static analysis, the relationship between the applied force, the line displacement and the angle displacement of the mechanism was set up. And then the stiffness matrix was obtained. The six principal stiffness of the mechanism and the corresponding directions were achieved by the orthogonal transformation. The numerical calculation was performed and the results showed that the principal stiffness and directions are varied with the pose-position of the mechanism, and the principal stiffness is gradually enlarged when it is far away from the anigin. In addition, the torsion stiffness is much greater and the line deformation stiffness is smaller, the difference between the two parts is huge. The research content of this paper supplies the theoretical foundation for the further engineering design and application of the spherical parallel mechanism. As one of the typical less-mobility parallel mechanisms,the spherical parallel mechanism U_(P + R) with two degrees of freedom(2-DOF)possess high order overconstraints,and the calculation of its stiffness is partly different with general parallel mechanisms owing to the bars in each branch are assumed to be arc-shaped.By means of small deformation superposition principle,the relationship between the angle displacement and line displacement of moving platform and the forces acted on the branches were derived out.Based on the results of static analysis,the relationship between the applied force,the line displacement and the angle displacement of the mechanism was set up.And then the stiffness matrix was obtained.The six principal stiffness of the mechanism and the corresponding directions were achieved by the orthogonal transformation.The numerical calculation was performed and the results showed that the principal stiffness and directions are varied with the pose-position of the mechanism,and the principal stiffness is gradually enlarged when it is far away from the origin.In addition,the torsion stiffness is much greater and the line deformation stiffness is smaller,the difference between the two parts is huge.The research content of this paper supplies the theoretical foundation for the further engineering design and application of the spherical parallel mechanism.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2013年第4期41-47,共7页 哈尔滨工业大学学报(英文版)
基金 Sponsored by the National Natural Science Foundation of China(Grant No.51275443 and 51005195) Key Project of Chinese Ministry of Education(Grant No.212012) Research Fund for the Doctoral Program of Higher Education of China(Grant No.20111333120004) Natural Science Foundationof Hebei Province(Grant No.E2012203034)
关键词 spherical parallel mechanism static stiffness orthogonal transformation line displacement ANGLE spherical parallel mechanism static stiffness orthogonal transformation line displacement angle displacement
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  • 1陈俊,王立平,张华,唐晓强.平面2自由度并联构型静刚度分析和设计[J].机械工程学报,2005,41(7):158-163. 被引量:13
  • 2黄田,李曚,吴孟丽,梅江平,赵学满,Hu S.Jack.可重构PKM模块的选型原则——理论与实践[J].机械工程学报,2005,41(8):36-41. 被引量:40
  • 3张勇,高峰.3-PPRR三自由度可约移动并联机构的刚度分析和设计[J].机械设计与研究,2006,22(3):23-26. 被引量:5
  • 4韩书葵,方跃法,槐创锋.4自由度并联机器人刚度分析[J].机械工程学报,2006,42(B05):31-34. 被引量:24
  • 5GOSSELIN C. Stiffness mapping for parallel manipulator [J]. IEEE Transaction on Robotics and Automation, 1990, 6(3): 377-382. 被引量:1
  • 6EI-KHASAWNEH B S, FERREIR P M. Computation of stiffness and stiffness bounds for parallel link manipulator [J]. International Journal of Machine Tools & Manufacture, 1999, 39(2): 321-342. 被引量:1
  • 7HUANG T, MEI J P, ZHAO X Y, et al. Stiffness estimation of a Tripod-based parallel kinematics machine[C]//Proc, of the IEEE Int. Conf. on Robotics &Automation, May 21-26, 2001, Seoul, South Korea. USA: IEEE, 2001: 3 280-3 285. 被引量:1
  • 8LI Y W, WANG J S, WANG L E Stiffness analysis of a Stewart platform based parallel kinematics machine [C]//Proc. of 19th IEEE Int. Conf. on Robotics and Automation, May 11-15, 2002, Washington D.C..USA: IEEE, 2002:3 672-3 677. 被引量:1
  • 9SV1NIN M M, HOSOE S. UCHIYANA M. On the stiffness and stability of Gough-Stewart platforms [C]//Proc. of the IEEE Int. Conf. on Robotics and Automation, May 21-26, 2001, Seoul, South Korea. USA: IEEE, 2001: 3 268-3 273. 被引量:1
  • 10HAN S, CHANG-ROKSHIN, JIN-HO K, et al. Stiffness analysis of a low-DOF parallel manipulator including the elastic deformations of both joints and links[C]// Proceedings of ICCAS 2005, June 2-5, 2005, Gyeonggi-Do, South Korea, 2005: 510. 被引量:1

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