Biomedical applications of electroactive polymer actuators

Cover of: Biomedical applications of electroactive polymer actuators |

Published by John Wiley & Sons in Chichester, West Sussex, Hoboken .

Written in English

Read online

Subjects:

  • Polymers in medicine,
  • Conducting polymers,
  • Actuators,
  • Polymers -- diagnostic use,
  • Polymers -- therapeutic use,
  • Biomedical Technology,
  • Equipment and Supplies

Edition Notes

Includes bibliographical references and index.

Book details

Statement[edited by] Federico Carpi, Elisabeth Smela.
ContributionsCarpi, Federico, 1975-, Smela, Elisabeth.
Classifications
LC ClassificationsR857.P6 B5485 2009
The Physical Object
Paginationp. ;
ID Numbers
Open LibraryOL23150353M
ISBN 109780470773055
LC Control Number2008056029

Download Biomedical applications of electroactive polymer actuators

About this book Giving fundamental information on one of the most promising families of smart materials, electroactive polymers (EAP) this exciting new titles focuses on the several biomedical applications made possible by these types of materials and their related actuation technologies.

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Electroactive Polymer Actuators and Sensors: Experimental Characterization and Modeling of Ionic Polymer-metal Composites for Biomedical Applications by Yongxian Wu and a great selection of related books, art and collectibles available now at Biomedical Applications of Electroactive Polymer Actuators; Biomedical Applications of Electroactive Polymer Actuators by Federico Carpi (Repost) Tailored Polymer Architectures for Pharmaceutical and Biomedical Applications; Interpenetrating Polymer Network: Biomedical Applications.

Biomedical Applications of Electroactive Polymer Actuators by Federico Carpi, Elisabeth Smela,Wiley & Sons, Incorporated, John edition, in EnglishPages: Edited by well-respected academics in the field of electroactive polymers with contributions from renowned international experts, this is an excellent resource for industrial and academic research scientists, engineers, technicians and graduate students working with polymer actuators or in the fields of polymer science.

(source: Nielsen Book Data). Biomedical Applications of Electroactive Polymers AJ Snyder*, AM Tews, MI Frecker, Q Zhang, JP Runt The Pennsylvania State University, University Park and Hershey, PA Abstract We are investigating applications of mechanically electroactive polymers (EAPs), with the intent of applying them to design of new and improved medical devices.

"'Electroactive Polymer (EAP) Actuators as Artificial Muscles' is a delightful book dealing with one of the hottest topics in biomedical engineering. Virtually every known method of generating displacement is introduced.

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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.

The applications for smart actuators in the biomedical field have become more advanced, such as drug delivery using a controlled micropump with which the required drug will be supplied at specific times.

Microgrippers that are actuated are used to help to remove tumors. Abstract Giving fundamental information on one of the most promising families of smart materials, electroactive polymers (EAP) this exciting new titles focuses on the several biomedical.

Biomedical Applications of Electroactive Polymer Biomedical applications of electroactive polymer actuators book FEDERICO CARPI University of Pisa, Pisa, Italy ELISABETH SMELA University of Maryland, College Park, USA. Certain polymers can be excited by electric, chemical, pneumatic, optical, or magnetic field to change their shape or size.

For convenience and practical actuation, using electrical excitation is the most attractive stimulation method and the related materials are known as electroactive polymers (EAP) and artificial muscles. The focus of this book is on electroactive polymer (EAP) actuators and sensors.

The book covers the introductory chemistry, physics, and modeling of EAP technologies and is structured around the demonstration of EAPs in robotic applications. The EAP field is. SECTION | IIHuman Health, Microbial Physiology and Biomedical Applications The applications for smart actuators in the biomedical field have become more advanced, such as drug delivery using a.

Conducting polymers are of interest due to their unique behavior on exposure to electric fields, which has led to their use in flexible electronics, sensors, and biomaterials. The unique electroactive properties of conducting polymers allow them to be used to prepare biosensors that enable real time, point of care (POC) testing.

Potential advantages of these devices include their low cost and. The flexibility in polymer properties has allowed the development of a broad range of materials with electroactivity, such as intrinsically conductive conjugated polymers, percolated conductive composites, and ionic conductive hydrogels.

These smart electroactive polymers can be designed to respond rationally under an electric stimulus, triggering outstanding properties suitable for biomedical. biomedical applications of electroactive polymer actuators Posted By Beatrix Potter Ltd TEXT ID b7dde Online PDF Ebook Epub Library actuators by federico carpi available at book depository with free delivery worldwide buy biomedical applications of electroactive polymer actuators by.

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Electroactive polymer actuators as artificial muscles R. Kornbluh, et ation of dielectric EAP actuators, in electroactive polymer (EAP) actuators as artificial muscles—reality, potential and challenges Y. Bar-Cohen (Ed.), SPIE Press, Bellingham, WA (), pp.

Electroactive Polymers as Actuators - ScienceDirect. Electroactive polymer (EAP) actuators are electrically responsive materials that have several characteristics in common with natural muscles.

Thus, they are being studied as 'artificial muscles' for a variety of biomimetic motion applications. Dielectric Elastomers as Electromechanical Transducers provides a comprehensive and updated insight into dielectric elastomers; one of the most promising classes of polymer-based smart materials and technologies.

This technology can be used in a very broad range of applications, from robotics and automation to the biomedical field. About this book.

Laboratory. His work is focused in the area of smart materials for sensors and actuators, energy and biomedical applications. University of Minho, Braga, Portugal and his work is focused on polymer-based magnetoelectric materials and electroactive polymers for advanced technological applications.

biomedical applications of electroactive polymer actuators Posted By Nora Roberts Media TEXT ID b7dde Online PDF Ebook Epub Library reviews smart actuator activities for biomedical applications the microsystems applications in the biomedical field involve among many kinds of polymer materials.

Multiscale Modeling of Plant Cell Wall Architecture and Tissue Mechanics for Biomimetic Applications Electroactive Polymer Actuators as Artificial Muscles (co) edited 10 books, co-authored over publications, co-chaired 50 conferences, and has 36 registered patents.

His books and other publications cover such topics as. Electroactive Polymer Gel Robots. Author: Mihoko Otake; Publisher: Springer Science & Business Media; Release: 23 February ; GET THIS BOOK Electroactive Polymer Gel Robots.

By the dawn of the new millennium, robotics has undergone a major tra- formation in scope and dimensions. Bar-Cohen, in Advanced Piezoelectric Materials, Abstract: Electroactive polymers (EAP) are actuators that most closely emulate biological muscles compared to any other actuators that are human-made and therefore they earned the moniker ‘artificial muscles’.

The materials that were developed in the early days of this field generated limited actuation strain and therefore received.

Dielectric Elastomers as Electromechanical Transducers provides a comprehensive and updated insight into dielectric elastomers; one of the most promising classes of polymer-based smart materials and technologies.

This technology can be used in a very broad range of applications, from robotics and automation to the biomedical field.

The need for improved transducer performance has. 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. of Electroactive Polymer Actuators "'Electroactive Polymer (EAP) Actuators as Artificial Muscles' is a delightful book dealing with one of the hottest topics in biomedical engineering.

Virtually every known method of generating displacement is introduced. light and low power actuators for planetary applications. Various EAP materials. Conjugated Polymer Actuators: Fundamentals. Geoffrey M. Spinks. ARC Centre of Excellence for Electromaterials Science and Intelligent Polymer Research Institute, University of Wollongong, Australia.

Biomedical Applications of Electroactive Polymer Actuators. Related; Information; Close Figure Viewer. 1 day ago  Electroactive polymer actuators as artificial muscles: are they ready for bioinspired applications. Furthermore, the system developed by Dr. Reality, Potential, and Challenges Editor s: Processing techniques, such as ink-jet printing, may potentially be employed to make complete devices that are driven by EAP actuators.

of Dielectric Electroactive Polymer (DEAP) based actuators and sensors were studied in the following order: 1) Development of a nonlinear force control for PolyPower InLastor PUSH actuator, 2) Evaluation of the PUSH actuator for haptic use with respect to a.

Edited Volumes [9] K.J. Kim and K.K. Leung, "Ionic polymer-Metal Composites" EAP Reference Book:Introduction to Transducers and Artificial muscle based up Electrochemically Active polymers and springer() [7/8] K.J.

Kim and K.K. Leung, "Ionic polymer-Metal Composites" International Journal of Smart and Nano Materials, vol. 3/4 () [6] L.

Isaacs and K. Kim, a special issue on.

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