DocumentCode
986617
Title
Mechanics of Precurved-Tube Continuum Robots
Author
Webster, Robert J., III ; Romano, Joseph M. ; Cowan, Noah J.
Author_Institution
Vanderbilt Univ., Nashville, TN
Volume
25
Issue
1
fYear
2009
Firstpage
67
Lastpage
78
Abstract
This paper presents a new class of thin, dexterous continuum robots, which we call active cannulas due to their potential medical applications. An active cannula is composed of telescoping, concentric, precurved superelastic tubes that can be axially translated and rotated at the base relative to one another. Active cannulas derive bending not from tendon wires or other external mechanisms but from elastic tube interaction in the backbone itself, permitting high dexterity and small size, and dexterity improves with miniaturization. They are designed to traverse narrow and winding environments without relying on ldquoguidingrdquo environmental reaction forces. These features seem ideal for a variety of applications where a very thin robot with tentacle-like dexterity is needed. In this paper, we apply beam mechanics to obtain a kinematic model of active cannula shape and describe design tools that result from the modeling process. After deriving general equations, we apply them to a simple three-link active cannula. Experimental results illustrate the importance of including torsional effects and the ability of our model to predict energy bifurcation and active cannula shape.
Keywords
bifurcation; dexterous manipulators; flexible manipulators; medical robotics; pipes; active cannulas; dexterous continuum robots; elastic tube interaction; energy bifurcation; mechanics; medical applications; precurved superelastic tubes; precurved-tube continuum robots; telescoping superelastic tubes; Continuum robot; flexible manipulator; medical robot; snake-like robot;
fLanguage
English
Journal_Title
Robotics, IEEE Transactions on
Publisher
ieee
ISSN
1552-3098
Type
jour
DOI
10.1109/TRO.2008.2006868
Filename
4671090
Link To Document