Negative and Reversible Magnetorheological Response for Magnetic Rubbers. [PDF]
Kanamori R +4 more
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Weaving Vectorial Responses: Magnetorheological Fibrous Materials for Programmable Sensing and Actuation. [PDF]
Tang Y, Li J.
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Experimental and finite element analysis of a two wheeler handlebar subjected to semi active constrained layer damping treatment. [PDF]
Krishna K +3 more
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Particle matrix interfacial interaction effect on the viscoelastic properties of electrolyte iron particle based elastomer. [PDF]
Rathod N +3 more
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Magneto-X Effects in Magnetic Soft Materials and Their Applications. [PDF]
Xiang Z +5 more
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Development and Modeling of a Novel Magnetorheological Elastomer Isolator in Hybrid Mode with a Compression-Shear Hybrid Fractional-Derivative Parametric Model. [PDF]
Tian Y +6 more
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Advances in Functional Rubber and Elastomer Composites II. [PDF]
Kumar V, Alam MN.
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Influence of the particle size on the magnetorheological effect of magnetorheological elastomers
Journal of Magnetism and Magnetic Materials, 2019Abstract Magnetorheological elastomers are composite materials made of micron sized magnetic particles embedded in an elastomer matrix. By applying a magnetic field, the Young’s modulus of those materials can be controlled, which leads to the so-called magnetorheological effect and defines them as a smart material.
M Schumann, S Odenbach
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Piezoresistivity of magnetorheological elastomers
Journal of Physics: Condensed Matter, 2008Magnetorheological elastomers are smart materials made by aligning magnetic microparticles inside a liquid polymer before the curing process has started. Once cured, the composite presents new properties such as a large change of elasticity when applying a magnetic field.
N, Kchit, G, Bossis
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