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Titlebook: Soft Actuators; Materials, Modeling, Kinji Asaka,Hidenori Okuzaki Book 20141st edition Springer Japan 2014 Artificial Muscle.Conductive Pol

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Piezoelectric Polymers, that of a ferroelectric polymer is in response to tensile strain, and that of cellular electrets is in response to strain perpendicular to film surface. In this chapter, the fundamental properties and applications of these different types of polymers are systematically discussed.
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Development of Actuators Using Slide Ring Materials and Their Various Applicationser,dielectric actuator has the fault with high drive voltage. To overcome this fault, a novel polymeric material (slideringmaterial) was adopted. Moreover,we made the artificial arm that moved with dielectric actuator.
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Book 20141st editionls science, mechanics, electronics, robotics and bioscience. As an example, the book includes current research on actuators based on biomaterials to provide future perspectives for artificial muscle technology. Readers can obtain detailed, useful information about materials, methods of synthesis, fa
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Progress and Current Status of Materials and Properties of Soft Actuatorseferences as milestones of the progress. The soft actuators originated from unique characteristics of cross-linked polymer gels for understanding their physical and chemical properties of dimensional changes and phase transitions induced by various environmental stimuli such as pH, salt, solvent, he
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Electromagnetic Heatingof poly(.-isopropyl acrylamide) (PNIPAM) gel as thermo-sensitive polymer gels by electromagnetic heating. The properties of the material such as content of carbon micro-coils, swelling ratio, breaking strength, and thermo-sensitivity, and its function as drug carrier were evaluated. The composite ge
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Thermo-Responsive Nanofiber Mats Fabricated by Electrospinning nanofiber mats. It was found that average diameter of nanofibers electrospun at concentration of 25 % and voltage of 30 kV linearly increased from 165 nm (PNIPA) to 497 nm (PNIPA-SA10) with increasing the SA content. The PNIPA-SA. (. = 3–10 mol%) nanofiber mats were insoluble in water at 25 °C, in
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