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Artificial muscle actuators using electroactive polymers / / edited by Pietro Vincenzini, Yoseph Bar-Cohen, Federico Carpi



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Titolo: Artificial muscle actuators using electroactive polymers / / edited by Pietro Vincenzini, Yoseph Bar-Cohen, Federico Carpi Visualizza cluster
Pubblicazione: Stafa-Zuerich, Switzerland ; ; UK : , : Trans Tech Publications Ltd, , [2008]
©2008
Descrizione fisica: 1 online resource (215 p.)
Disciplina: 620.11
Soggetto topico: Smart materials
Smart structures
Soggetto non controllato: Artificial muscle actuators
Electroactive polymers
CIMTEC
Altri autori: VincenziniP. <1939->  
Bar-CohenYoseph  
CarpiFederico <1975->  
Note generali: Volume 8 of 8 volumes from the 3rd International Conference "Smart Materials, Structures and Systems".
"Artificial Muscle Actuators using Electroactive Polymers." Advances in science and technology, 61. Proceedings of the joint focused session A-12 "Artificial Muscle Actuators using electroactive polymers" of symposium A "Smart materials and micro/nanosystems" and symposium E "Mining smartness from nature", held in Acireale, Sicily, Italy, June 8-13 2008 as part of CIMTEC 2008 - 3rd International Conference "Smart Materials, Structures and Systems."
Nota di bibliografia: Includes bibliographical references and indexes.
Nota di contenuto: Artificial Muscle Actuators using Electroactive Polymers; Committees; Preface; Table of Contents; CHAPTER 1: MATERIALS; EAP Actuators for Biomimetic Technologies with Humanlike Robots as one of the Ultimate Challenges; Synthesis and Characterization of IPNs for Electrochemical Actuators; Metal Ion Implanted Compliant Electrodes in Dielectric Electroactive Polymer (EAP) Membranes; Rate Limits in Conducting Polymers; New Composites Based on Liquid Crystalline Elastomers and Electroactive Nanomaterials; Tough Hydrogel - Learn from Nature
Enhancing the Electro-Mechanical Response of Maxwell Stress ActuatorsConducting IPN Fibers: A New Design for Linear Actuation in Open Air; Sprayed Sensor Using IPMC PAINT; Carbon Nanotube Yarns as High Load Actuators and Sensors; Electrode Reactions in Cu-Pt Coated Nafion® Actuators; A Co-Axial Dielectric Elastomer Actuator; A Closer Look at the Polyacrylamide Fibers for Natural-Like Artificial Muscle Fabrication; CHAPTER 2: ANALYSIS, PHYSICAL MECHANISMS AND CHARACTERIZATION; Finite-Strain Models of Actuation: Prestretch and Elasticity Parameters
Monte Carlo Simulation of Electroactive Polymer ActuatorsDielectric Elastomer Actuators as Elements of Active Vibration Control Systems; Electro-Chemo-Mechanical Actuators Touching and Sensing Both, Physical and Chemical Ambient; Conducting Polymer Soft Actuators Based on Polypyrrole -Training Effect and Fatigue; Optimization of IPMC Actuator Conversion Efficiency; Tunable Membrane for Electromagnetic Devices Using Dielectric Elastomers; Synthesis and Application of Electro-Thermally Sensitive Gels; Distributed Impedance Model of Ionic Polymer-Metal Composite Actuators
Ionic Polymer-Metal Composite Actuator Behaviour in Two Novel ConfigurationsCHAPTER 3: DEVICES AND APPLICATIONS; Multilayer Actuator and Sensor Sheets with Smart Compliant Electrodes; Bio-Inspired Distributed Electroactive Polymer Actuators for Possible Space Applications: Concept Design; Contractile and Buckling Actuators Based on Dielectric Elastomers: Devices and Applications; Variable-Stiffness-Mode Dielectric Elastomer Devices; Keywords Index; Authors Index
Sommario/riassunto: The 27 peer-reviewed papers collected here together offer a plenitude of up-to-date information on ""Artificial Muscle Actuators using Electroactive Polymers"". The papers are conveniently arranged into the chapters: 1: Materials; 2: Analysis, physical mechanisms and characterization; 3: Devices and applications. This special volume has also been published online in the series, ""Advances in Science and Technology"" Vol. 61.
Titolo autorizzato: Artificial muscle actuators using electroactive polymers  Visualizza cluster
ISBN: 3-03813-232-2
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910809271103321
Lo trovi qui: Univ. Federico II
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Serie: Advances in science and technology (Faenza, Italy) ; ; 61.