• DocumentCode
    2591350
  • Title

    Climbing vertical terrains with a self-contained robot

  • Author

    Wang, Liyu ; Graber, Lina ; Iida, Fumiya

  • Author_Institution
    Dept. of Mech. & Process Eng., ETH Zurich, Zurich, Switzerland
  • fYear
    2012
  • fDate
    7-12 Oct. 2012
  • Firstpage
    305
  • Lastpage
    310
  • Abstract
    Vertical climbing on a variety of flat surfaces with a single robot has been previously demonstrated using vacuum suction, electrostatic adhesion, and biologically inspired approaches, etc. These methods generally have a low attachment strength, and it is not clear whether they can provide satisfactory attachment on vertical terrains with richer 3D features. Recent development of a climbing technology based on hot melt adhesives (HMAs) has shown its advantage with a high attachment strength through thermal bonding and viability to any solid surfaces. However, its feasibility for vertical climbing has only been proven on flat surfaces and with external energy supplies. This paper provides quantitative measurements for vertical climbing performance on five types of surfaces and terrains with a self-contained robot exploiting HMAs. We show that robust vertical climbing on multiple terrains can be achieved with reliable high-strength attachment.
  • Keywords
    adhesives; mobile robots; path planning; HMA; biologically inspired approaches; electrostatic adhesion; hot melt adhesives; self-contained robot; solid surfaces viability; thermal bonding; vacuum suction; vertical terrain climbing; Batteries; Bonding; Cooling; Foot; Heating; Robots; Surface treatment;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Robots and Systems (IROS), 2012 IEEE/RSJ International Conference on
  • Conference_Location
    Vilamoura
  • ISSN
    2153-0858
  • Print_ISBN
    978-1-4673-1737-5
  • Type

    conf

  • DOI
    10.1109/IROS.2012.6385848
  • Filename
    6385848