Home /Research /Development of a novel soft parallel robot equipped with polymeric artificial muscles
MANIPULATION

Development of a novel soft parallel robot equipped with polymeric artificial muscles

Amir Ali Amiri Moghadam, Abbas Z. Kouzani, Keivan Torabi, Akif Kaynak, Mohsen Shahinpoor

Year
2015
Citations
64

Abstract

This paper presents the design, analysis and fabrication of a novel low-cost soft parallel robot for biomedical applications, including bio-micromanipulation devices. The robot consists of two active flexible polymer actuator-based links, which are connected to two rigid links by means of flexible joints. A mathematical model is established between the input voltage to the polymer actuators and the robot's end effector position. The robot has two degrees-of-freedom, making it suitable for handling planar micromanipulation tasks. Moreover, a number of robots can be configured to operate in a cooperative manner for increasing micromanipulation dexterity. Finally, the experimental results demonstrate two main motion modes of the robot.

Keywords

ActuatorRobotRobot end effectorArtificial musclePlanarDegrees of freedom (physics and chemistry)EngineeringParallel manipulatorControl engineeringElectroactive polymers

Related papers

Browse all MANIPULATION papers