Giant-Stroke, Superelastic Carbon Nanotube Aerogel Muscles 3. Torsional and Tensile Carbon Nanotube Yarn Muscles 4. Artificial Muscles Based on Polypyrrole/Carbon Nanotube Laminates 5. Artificial Muscles Based on Graphene and Its Derivatives
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منابع مشابه
Giant-stroke, superelastic carbon nanotube aerogel muscles.
Improved electrically powered artificial muscles are needed for generating force, moving objects, and accomplishing work. Carbon nanotube aerogel sheets are the sole component of new artificial muscles that provide giant elongations and elongation rates of 220% and (3.7 x 10(4))% per second, respectively, at operating temperatures from 80 to 1900 kelvin. These solid-state-fabricated sheets are ...
متن کاملSupporting Online Material for Torsional Carbon Nanotube Artificial Muscles
Other supporting online material for this manuscript includes the following: Movies S1 and S2
متن کاملGraphene coating makes carbon nanotube aerogels superelastic and resistant to fatigue.
Lightweight materials that are both highly compressible and resilient under large cyclic strains can be used in a variety of applications. Carbon nanotubes offer a combination of elasticity, mechanical resilience and low density, and these properties have been exploited in nanotube-based foams and aerogels. However, all nanotube-based foams and aerogels developed so far undergo structural colla...
متن کاملSpray-coated carbon nanotube carpets for creeping reduction of conducting polymer based artificial muscles.
During cyclic actuation, conducting polymer based artificial muscles are often creeping from the initial movement range. One of the likely reasons of such behaviour is unbalanced charging during conducting polymer oxidation and reduction. To improve the actuation reversibility and subsequently the long time performance of ionic actuators, we suggest using spray-coated carbon nanotube (CNT) carp...
متن کاملOn the Mechanical Properties of Chiral Carbon Nanotubes
Carbon nanotubes (CNTs) are specific structures with valuable characteristics. In general, the structure of each nanotube is defined by a unique chiral vector. In this paper, different structures of short single-walled CNTs are simulated and their mechanical properties are determined using finite element method. For this aim, a simple algorithm is presented which is able to model the geometry o...
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تاریخ انتشار 2012