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Volumn 7, Issue 11, 2007, Pages 3974-3979
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Hysteresis in a carbon nanotube based electroactive polymer microfiber actuator: Numerical modeling
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Author keywords
Carbon nanotube; Electroactive polymer actuator; Hysteresis; Polyaniline
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Indexed keywords
APPLIED (CO);
B SERIES;
ELECTRICAL POTENTIALS;
ELECTRO ACTIVE POLYMER (EAP);
ELECTROACTIVE POLYMER (EAP) ACTUATORS;
ELECTROL YTE SOLUTIONS;
HYSTERETIC BEHAVIOR;
HYSTERETIC CHARACTERISTICS;
LEVER ARMS;
MICRO FIBERS;
MICRO SCALES;
NANO TUBE;
NUMERICAL MODELLING;
POTENTIAL APPLICATIONS;
PREISACH HYSTERESIS MODELS;
SINGLE WALL CARBON NANOTUBES (SWCNTS);
ACTUATORS;
CARBON;
CHEMICALS;
CONDUCTING POLYMERS;
DAMPING;
ELASTICITY;
ELECTROLYTES;
HYSTERESIS;
MAGNETIC HYSTERESIS;
NANOCOMPOSITES;
NANOPORES;
NANOSTRUCTURED MATERIALS;
NANOSTRUCTURES;
NANOTECHNOLOGY;
NANOTUBES;
NUMERICAL METHODS;
POLYMERS;
SCALE (DEPOSITS);
SINGLE-WALLED CARBON NANOTUBES (SWCN);
STIFFNESS;
CARBON NANOTUBES;
CARBON NANOTUBE;
POLYMER;
ARTICLE;
CHEMICAL MODEL;
CHEMISTRY;
COMPUTER SIMULATION;
CONFORMATION;
ELASTICITY;
ELECTROMAGNETIC FIELD;
EQUIPMENT;
EQUIPMENT DESIGN;
INSTRUMENTATION;
MACROMOLECULE;
MATERIALS TESTING;
MECHANICAL STRESS;
METHODOLOGY;
MICROMANIPULATION;
NANOTECHNOLOGY;
PARTICLE SIZE;
RADIATION EXPOSURE;
TRANSDUCER;
ULTRASTRUCTURE;
COMPUTER SIMULATION;
ELASTICITY;
ELECTROMAGNETIC FIELDS;
EQUIPMENT DESIGN;
EQUIPMENT FAILURE ANALYSIS;
MACROMOLECULAR SUBSTANCES;
MATERIALS TESTING;
MICROMANIPULATION;
MODELS, CHEMICAL;
MOLECULAR CONFORMATION;
NANOTECHNOLOGY;
NANOTUBES, CARBON;
PARTICLE SIZE;
POLYMERS;
STRESS, MECHANICAL;
TRANSDUCERS;
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EID: 38449105953
PISSN: 15334880
EISSN: None
Source Type: Journal
DOI: 10.1166/jnn.2007.072 Document Type: Conference Paper |
Times cited : (5)
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References (28)
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