Effect of magnetic field intensity and γ-Fe2O3 nanoparticle additive on electrical conductivity and viscosity of magnetorheological carbonyl iron suspension-based membranes

  • Bica, Ioan
  • Anitas, Eugen M.
  • Lu, Qi
  • Choi, Hyoung Jin
Citations

WEB OF SCIENCE

24
Citations

SCOPUS

23

초록

Smart membranes based on an absorbent cloth microfiber material and silicone oil were prepared using a fixed volume concentration of carbonyl iron and various volume concentrations of gamma-Fe2O3 additive nanoparticles. The membranes were then used to manufacture magnetoresistors, whose resistance was measured under an applied magnetic field with a magnetic flux density up to 250 mT. The electrical conductivity and viscosity of the membranes increased with increasing magnetic field intensity, while at a fixed magnetic field strength, the electrical conductivity and viscosity decreased with increasing gamma-Fe2O3 concentration. A theoretical model to explain these results was developed further in the framework of a dipolar approximation.

키워드

magnetic nanoparticlecarbonyl ironmagnetoresistormagnetorheologicalelectrical conductivityFLUIDSMICROPARTICLES
제목
Effect of magnetic field intensity and γ-Fe2O3 nanoparticle additive on electrical conductivity and viscosity of magnetorheological carbonyl iron suspension-based membranes
저자
Bica, IoanAnitas, Eugen M.Lu, QiChoi, Hyoung Jin
DOI
10.1088/1361-665X/aad5a6
발행일
2018-09
유형
Article
저널명
Smart Materials and Structures
27
9