Fundamentals, materials, driving principles, measurement methods, and application development of polymer actuators.
S30224 "Polymer Actuator"
★Medical welfare devices, tactile devices, robots, and applications in the space industry are attractive devices for future research and development! What are the methods for their improvement?
Kawasaki City Industrial Promotion Hall 10F, Conference Room 2 [Kanagawa, Kawasaki] February 28, 2013 (Thursday) 13:30-16:30, National Institute of Advanced Industrial Science and Technology, Health Engineering Research Division, Artificial Cell Research Group, Group Leader Yoshinobu Azuma. http://ec.techzone.jp/products/detail.php?product_id=3181
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basic information
**Lecture Summary** Polymer actuators refer to a general term for actuator elements that use polymer materials that deform when a voltage is applied. Through accumulated research, several materials have become known as actuator technologies that are at a practical level. In this lecture, we will discuss the basic topics such as materials, driving principles, and measurement methods, focusing on actuators using ion-conductive polymers that we have been researching, as well as application examples.
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After February 14, the regular price will be 49,350 yen (including tax and text costs) for 2 people from 1 company.
Price range
P2
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P2
Applications/Examples of results
**Program** 1. What is a Polymer Actuator 1-1 General Characteristics of Polymer Actuators 1-2 Materials for Polymer Actuators 2. Ion-Conductive Polymer Actuators 2-1 Ion-Conductive Polymer Actuator Elements 2-2 Research on Applications of Ion-Conductive Polymer Actuators 3. Material Improvement for Ion-Conductive Polymer Actuators 3-1 Electrode Materials 3-2 Electrolyte Materials 3-3 Polymer Materials 4. Fundamentals of Measurement and Evaluation of Polymer Actuators 4-1 Displacement Measurement 4-2 Force Generation Measurement 4-3 Electrochemical Property Measurement 4-4 Mechanical Properties 5. Driving Principles of Ion-Conductive Polymer Actuators 5-1 Electric Field Response of Ion Gels 5-2 Force Generation at the Electrode (1) 5-3 Force Generation at the Electrode (2) 6. Potential Applications of Ion-Conductive Polymer Actuators 6-1 Applications in Medical and Welfare Devices 6-2 Applications in Haptic Devices 6-3 Applications in Robotics 6-4 Applications in Special Environments such as Space, Aviation, Deep Sea, and High Magnetic Fields
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