Título
Anisotropic behaviour analysis of silicone carbonyl iron particles magnetorheological elastomersAutor-a
Versión
Postprint
Derechos
© 2020 SpringerAcceso
Acceso abiertoVersión del editor
https://doi.org/10.1007/s00397-020-01218-4Publicado en
Rheologica Acta Vol. 59. 2020Primera página
469Última página
476Editor
Springer NaturePalabras clave
Magnetorheological elastomers
Microstructure
Magnetic characterization
Anisotropy ... [+]
Microstructure
Magnetic characterization
Anisotropy ... [+]
Magnetorheological elastomers
Microstructure
Magnetic characterization
Anisotropy
Rheology [-]
Microstructure
Magnetic characterization
Anisotropy
Rheology [-]
Resumen
We report the microscopic, magnetic and rheological properties of magnetorheological elastomers (MRE) with carbonyl iron magnetic particles (CIP) dispersed into silicone in the concentration range 5–3 ... [+]
We report the microscopic, magnetic and rheological properties of magnetorheological elastomers (MRE) with carbonyl iron magnetic particles (CIP) dispersed into silicone in the concentration range 5–30% volume content. The samples have been fabricated under the action of a magnetic field (anisotropic A-MRE) or without it (isotropic I-MRE). For the A-MRE samples and at low particle concentration, the anisotropy is evident in the microstructure and the magnetic properties. However and at high particle concentration, the microstructural and magnetic anisotropy is much less noticeable and makes difficult to distinguish between isotropic and anisotropic state. The rheological characterization shows changes in the storage modulus G′ when CIP content is from 5 to 30% volume and I-MRE (72% change) and A-MRE (70% change) character of the samples. However, this influence is remarkable in the loss modulus G″ with big changes when considering CIP content from 5 to 30% volume and I-MRE (114% change) and A-MRE (142% change). We have also determined that the anisotropic samples with high particle content present the maximum magnetorheological effect of about 31% at low frequency (1–2 Hz). [-]
Financiador
Gobierno VascoGobierno Vasco
Programa
Convocatoria de ayudas a la Investigación básica y-o aplicada 2016-2017Elkartek 2018
Número
PI-2017-1-0055KK-2018-00099
URI de la ayuda
Sin informaciónSin información
Proyecto
Fluidos magnéticos estables en base a nanopartículas magnéticas de alta imanación (FLUMAN)Materiales inteligentes para productos y procesos de Fabricación Avanzada (ACTIMAT 2018)
Colecciones
- Artículos - Ingeniería [730]