Dynamic analysis of an axially moving robot manipulator supported by bearings

被引:0
作者
Jaewon Kim
Jintai Chung
机构
[1] Hanyang University,Department of Mechanical Engineering
来源
Journal of Mechanical Science and Technology | 2017年 / 31卷
关键词
Axially moving robot manipulator; Mode exchange; Tip mass effect; Natural frequency loci veering;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, a robot manipulator is modelled as a cantilever beam, which moves in an axial direction, has a lumped mass at the end, and is supported by intermediate springs. Considering the tip mass and intermediate springs in the modeling, we derive the equations of motion in which the rigid-body motion is coupled with the flexible motions, and then analyze the transverse vibrations of the beam. Furthermore, we study the tip mass effects on the natural frequencies and the corresponding mode shapes. The natural frequency loci veering is analyzed for variations in the tip mass and the spring position/stiffness. In addition, we investigate the exchange and localization of modes around these veering regions as well as the parameter effects on the mode shapes. Using a Short-time Fourier transform (STFT), the relationship between the dynamic characteristics and dynamic responses are described. It is found that the dynamic characteristics of the beam are dependent on the veering distance. It is also shown via dynamic responses that the mode exchanges occur when a veering distance is close.
引用
收藏
页码:3143 / 3155
页数:12
相关论文
共 69 条
  • [1] Wang P. K. C.(1987)Vibrations in a moving flexible robot arm Journal of Sound and Vibration 116 149-160
  • [2] Wei J. D.(1994)Finite element analysis of an axially moving beam, part 1: time integration Journal of Sound and Vibration 178 433-453
  • [3] Stylianou M.(2009)Hamiltonian dynamic analysis of an axially translating beam featuring time-variant velocity Acta Mechanica 206 149-161
  • [4] Tabarrok B.(1995)Vibration of a cantilevered beam during deployment and retrieval: analysis and experiment Smart Material and Structures 4 334-339
  • [5] Wang L. H.(1996)An approximate analytical solution of beam vibrations during axial motion Journal of Sound and Vibration 192 159-171
  • [6] Hu Z. D.(1996)Vibrational motion of an elastic beam with prismatic and revolute joints Journal of Sound and Vibration 190 195-206
  • [7] Zhong Z.(2015)Nonlinear lateral vibrations of a deploying Euler-Bernoulli beam with a spinning motion International Journal of Mechanical Sciences 90 200-212
  • [8] Ju J. W.(1998)Non-linearly dynamic modelling of an axially moving beam with a tip mass Journal of Sound and Vibration 218 559-571
  • [9] Matsuzaki Y.(2010)Vibration and stability of an axially moving Rayleigh beam Applied Mathematical Modelling 34 1482-1497
  • [10] Taki Y.(2010)Dynamic analysis of an axially translating viscoelastic beam with an arbitrarily varying length Acta Mechanica 214 225-244