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  • 标题:Workspace and Stiffness Analysis of 3D Printing Cable-Driven Parallel Robot with a Retractable Beam-Type End-Effector
  • 本地全文:下载
  • 作者:Jinwoo Jung
  • 期刊名称:Robotics
  • 电子版ISSN:2218-6581
  • 出版年度:2020
  • 卷号:9
  • 期号:3
  • 页码:65-77
  • DOI:10.3390/robotics9030065
  • 出版社:MDPI Publishing
  • 摘要:3D printing is a widely used technology that has been recently applied in construction to reduce construction time significantly. A large 3D printer often uses a traditional Cartesian robot with inherent problems, such as position errors and printing nozzle vibrations, due to the long, heavy horizontal beam carrying it and a large amount of power required to actuate the heavy beam. A cable-driven parallel robot (CDPR) can be a good alternative system to reduce the vibrations and necessary power because the robot’s lightweight cables can manipulate the printing nozzle. However, a large 3D printing CDPR should be carefully designed to maximize the workspace and avoid cable interference. It also needs to be stiff enough to reject disturbances from the environment properly. A CDPR with a retractable beam-type end-effector with cables through the guide pulleys in a single plane is suggested for avoiding cable interference while maximizing the workspace. The effects of using the retractable end-effector on the workspace were analyzed relative to the cable connection points’ location changes. Static stiffness analysis was conducted to examine the natural frequencies, and the geometric parameters of the end-effector were adjusted to improve the lowest natural frequencies. Simulation results show that a retractable beam-type end-effector can effectively expand the wrench-feasible workspace.
  • 关键词:cable-driven parallel robot; retractable end-effector; workspace; stiffness; cable interference cable-driven parallel robot ; retractable end-effector ; workspace ; stiffness ; cable interference
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