High magnetization composite magnetic fluid: structure, magnetorheology and new sealing mechanism in rotating seals

Author:

Susan-Resiga Daniela12,Socoliuc Vlad-Mircea13ORCID,Borbáth István4,Borbáth Tünde4,Tripon Septimiu Casian56,Bălănean Florica1,Vékás Ladislau13ORCID

Affiliation:

1. Romanian Academy – Timisoara Branch, Center for Fundamental and Advanced Technical Research, Laboratory for Magnetic Fluids, 24 Mihai Viteazul Ave., 300223, Timisoara, Romania

2. West University of Timisoara, Faculty of Physics, 1 Vasile Pârvan Ave., 300222 Timisoara, Romania

3. Politehnica University of Timisoara, Research Center for Complex Fluids Systems Engineering, Mihai Viteazul Ave. 1, 300222 Timisoara, Romania

4. ROSEAL Co., Str.: Nicolae Bălcescu, Nr.: 5/A, Odorheiu Secuiesc, Romania

5. Institute for Research and Development of Isotopic and Molecular Technologies, Integrated Laboratory of Electron Microscopy, 67-103 Donat Street, 400293 Cluj-Napoca, Romania

6. Faculty of Biology & Geology, Electron Microscopy Center “Prof. C. Craciun”, “Babes-Bolyai” University, 5-7 Clinicilor Street, 400006 Cluj-Napoca, Romania

Abstract

Magnetically separated Fe nanoparticles cake, with ten times higher saturation magnetization than the ferrofluid carrier, act as the main plug in the sealing stage. The burst pressure sharply increases in the concentration range where the cake fills the seal gap.

Funder

Academia Româna

Publisher

Royal Society of Chemistry (RSC)

Reference71 articles.

1. R. E.Rosensweig , Ferrohydrodynamics , Cambridge Univ. Press , 1985 (slightly corrected edition Dover Publications. Inc., 2014)

2. Magnetic Fluids

3. Application orientated researches on magnetic fluids

4. S.Odenbach , in Handbook of Magnetic Materials , ed. K. H. J. Buschow , Elsevier , 2006 , ch. 3, pp. 127–208

5. Recent progress in ferrofluids research: novel applications of magnetically controllable and tunable fluids

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