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Using oscillatory shear to probe the effects of bidispersity in inverse ferrofluids
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  • Using oscillatory shear to probe the effects of bidispersity in inverse ferrofluids
  • Using oscillatory shear to probe the effects of bidispersity in inverse ferrofluids
저자명
Ekwebelam. C.C.,See. H.
간행물명
Korea-Australia rheology journal
권/호정보
2007년|19권 1호|pp.35-42 (8 pages)
발행정보
한국유변학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The effects of particle size distribution on the magnetorheological response of inverse ferrofluids was investigated using controlled mixtures of two monodisperse non-magnetisable powders of sizes $4.6;{mu}m;and;80{mu}m$ at constant volume fraction of 30%, subjected to large amplitude oscillatory shear flow. In the linear viscoelastic regime (pre-yield region), it was found that the storage and loss moduli were dependent on the particle size as well as the proportion of small particles, with the highest storage modulus occurring for the monodisperse small particles. In the nonlinear regime (post yield region), Fourier analysis was used to compare the behaviour of the $1^{st};and;3^{rd}$ harmonics ($I_{1};and;I_{3};respectively$) as well as the fundamental phase angle as functions of the applied strain amplitude. The ratio of $I_{3}/I_{1}$ was found to become more pronounced with decreasing particle size as well as with increasing proportion of small particles in the bidisperse mixtures. Furthermore, the phase angle was able to clearly show the transition from solid-like to viscous behaviour. The results suggested that the nonlinear response of a bidisperse IFF is dependent on particle size as well as the proportion of small particles in the system.