Volume 1, Number 1 (2016)
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Home > Journals > SCIREA Journal of Mechanical Engineering > Archive > Paper Information

A simplify method of assessment of magnetorheological fluids functional property

Volume 1, Issue 1, October 2016    |    PP. 33-41    |PDF (452 K)|    Pub. Date: October 20, 2016
226 Downloads     1990 Views  

Author(s)
Emil Nowiński, Air Force Institute of Technology, 6 Ksiecia Boleslawa Street, Warsaw, Poland

Abstract
The article presents an innovative method of assessment one of the magnetorheological fluids properties. The way is based on a measure method of rheological properties for oils at low temperatures captured by ASTM D 2983-04a standard. Obtained results and also the way of assessment were compared with a method and results achieved on rotary rheometer with magnetic attachment. The research allows to indicate advantages and disadventages of the method for magnetorheological fluids presented in the article.

Keywords
magnetorheological fluids, rheology assessment, dynamic rheology measurement,

Cite this paper
Emil Nowiński, A simplify method of assessment of magnetorheological fluids functional property, SCIREA Journal of Mechanical Engineering. Vol. 1 , No. 1 , 2016 , pp. 33 - 41 .

References

[ 1 ] ASTM D 2983-04a Standard Test Method for Low-Temperature Viscosity of Lubricants Measured by Brookfield Viscometer
[ 2 ] Kaleta J.: Materiały magnetyczne SMART. Budowa, wytwarzanie, badanie właściwości, zastosowanie Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław 2013
[ 3 ] B. O. Park, B. J. Park, M. J. Hato, H. J. Choi: Soft magnetic carbonyl iron microsphere dispersed in grease and its rheological characteristics under magnetic field, Colloid Polym Sci (2011) 289:381–386
[ 4 ] Roszkowski A., Bogdan M., Skoczyński W., Marek B.: Testing Viscosity of MR Fluid in Magnetic Field, Measurement Science Review, Volume 8, Section 3, No.3, 2008,
[ 5 ] Nkurikiyimfura I., Yanmin W., Zhidong P.: Effect of chain-like magnetite nanoparticle aggregates on thermal conductivity of magnetic nanofluid in magnetic field, Experimental Thermal and Fluid Science 44 (2013) 607–612

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