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Electroactive Polymers for Robotic Applications: Artificial Muscles and Sensors
Contributor(s): Kim, Kwang J. (Editor), Tadokoro, Satoshi (Editor)
ISBN: 184628371X     ISBN-13: 9781846283710
Publisher: Springer
OUR PRICE:   $161.49  
Product Type: Hardcover - Other Formats
Published: January 2007
Qty:
Annotation: Electroactive polymers (EAPs) respond to electrical stimulation with large deformations. They are dynamic actuators which have attracted attention from an interdisciplinary audience of engineers and scientists. An enabling EAP technology is emerging which attempts to imitate the properties of natural muscle and which, as a result, can perform a unique function in a variety of biologically-inspired robotics applications.

Electroactive Polymers for Robotics Applications covers the fundamental properties, modelling and demonstration of EAPs in robotic applications, focusing particularly on artificial muscles and sensors. Ionic Polymer?Metal Composite Actuators and Dielectric Elastomers are discussed within the book with chapters on their properties and their uses in robotics applications.

With its concentration on devices based on EAPs and their uses, Electroactive Polymers for Robotics Applications will be of interest to researchers working within this field as well as to postgraduate students studying robotics or smart materials and structures. Practitioners working in the mechanical, electrical and materials industries will also find this book of value.

Additional Information
BISAC Categories:
- Technology & Engineering | Robotics
- Science | Chemistry - General
- Technology & Engineering | Optics
Dewey: 629.893
LCCN: 2006938344
Physical Information: 0.79" H x 6.4" W x 9.38" (1.37 lbs) 281 pages
 
Descriptions, Reviews, Etc.
Publisher Description:

This book covers the fundamental properties, modeling, and demonstration of Electroactive polymers in robotic applications. It particularly details artificial muscles and sensors. In addition, the book discusses the properties and uses in robotics applications of ionic polymer-metal composite actuators and dielectric elastomers.