National audienceMagnetorheological elastomers (MREs) are ferromagnetic particle impregnated rubbers whose mechanical properties are altered by the application of external magnetic fields. Due to their coupled magnetoelastic response, MREs are finding an
Danas, Kostas, Triantafyllidis, Nicolas
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Damping and Stiffness Analysis of Sandwich Beam with 3D-Printed Honeycomb Core Filled with Magnetorheological Elastomer (MRE): An Experimental Approach. [PDF]
Sharif U +6 more
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Polishing performance of magnetorheological elastomer pad for single-crystal silicon
Single-crystal silicon optical components are extensively utilized in sophisticated high-end equipment, such as X-ray space telescopes and high-energy laser systems.
Changsheng Li +6 more
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Controlled functionalization of sp2 carbon allotropes for the reinforcement of diene elastomers [PDF]
To achieve important mechanical properties, natural and synthetic rubbers need reinforcing fillers. sp2 carbon allotropes are indeed relevant reinforcing fillers for rubber compounds.
Alessandro, Porta +4 more
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Influence of Gamma Radiation on the Damping Property of Magnetorheological Elastomer. [PDF]
Liao G +7 more
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Magneto-Rheological Elastomers (MREs) are composite materials combining a solid matrix and a dispersion of magnetizable particles (typically silicone rubber and carbonyl iron).
H. E. L. Carvalho +6 more
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Research on Vibration Control Technology of Robot Motion Based on Magnetorheological Elastomer. [PDF]
Huang X, Zhai Y, He G.
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Optimization Design of the Bending-Vibration Resistance of Magnetorheological Elastomer Carbon Fibre Reinforced Polymer Sandwich Sheets. [PDF]
Wang G +8 more
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Magnetodielectric Properties of Ordered Microstructured Polydimethylsiloxane-Based Magnetorheological Elastomer with Fe3O4@rGO Nanoparticles. [PDF]
Zhang C +5 more
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Investigation on semi-active control of vehicle suspension using adaptive inerter [PDF]
The analysis of passive control with inerter in suspension system has been well studied in previous work by employing different configurations and optimizing the spring stiffness, damping coefficient and inertance simultaneously.
Cheung, KC, Lam, J, Li, P
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