A comparison of the magnetorheology of two ferrofluids with different magnetic field-dependent chaining behavior

被引:0
作者
Darlene I. Santiago-Quinones
Kuldip Raj
Carlos Rinaldi
机构
[1] University of Puerto Rico Mayaguez,Department of Chemical Engineering
[2] Ferrotec Corporation,J. Crayton Pruitt Family Department of Biomedical Engineering
[3] University of Florida,Department of Chemical Engineering
[4] University of Florida,undefined
来源
Rheologica Acta | 2013年 / 52卷
关键词
Ferrofluids; Magnetite; Particle stabilization; Magnetorheology; Interaction parameter;
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摘要
The effect of magnetic field-induced particle chaining on the magnetorheology of commercial iron oxide-based ferrofluids was investigated by comparison of a ferrofluid with particles that resist chaining and a ferrofluid with particles that interact when a field is applied, forming chain-like aggregates. This difference between the two ferrofluids was confirmed by optical microscopy and dynamic light scattering in an applied magnetic field. Both fluids had similar magnetic particle fraction, but showed different magnetorheological behavior. Chaining resulted in a stronger magnetic field-dependent viscosity enhancement and the appearance of an elastic modulus. The magnetorheology of these two fluids was described using the Mason number (Mn), resulting in two distinct Mn power law slopes at intermediate and small Mn values for the ferrofluid with magnetic field-induced aggregation. The commonly used magnetic coupling parameter failed to distinguish the behavior of the two ferrofluids.
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页码:719 / 726
页数:7
相关论文
共 102 条
[1]  
Butter K(2002)Synthesis and properties of iron ferrofluids J Magn Magn Mater 252 1-3
[2]  
Philipse AP(2003)Direct observation of dipolar chains in ferrofluids in zero field using cryogenic electron microscopy J Phys Condens Matter 15 S1451-S1470
[3]  
Vroege GJ(1982)Agglomerate formation in a magnetic fluid J Appl Phys 53 2742-2744
[4]  
Butter K(1970)Pair correlations in a ferromagnetic colloid Phys Kondens Mater 11 189-3710
[5]  
Bomans PH(2011)Magnetorheological fluids: a review Soft Matter 7 3701-13
[6]  
Frederik PM(1985)Dynamic light scattering from dilute suspensions of thin discs and thin rods as limiting forms of cylinder, ellipsoid and ellipsoidal shell of revolution Biophys Chem 23 1-2639
[7]  
Vroege GJ(2008)Synthesis and rheological properties of an iron oxide ferrofluid J Magn Magn Mater 320 2635-5924
[8]  
Philipse AP(2007)Rheological properties of water-based Fe3O4 ferrofluids Chem Eng Sci 62 5912-237
[9]  
Chantrell RW(2005)Structure and magnetic properties of mono- and bi-dispersed ferrofluids as revealed by simulations J Magn Magn Mater 289 234-600
[10]  
Bradbury A(2003)Nonequilibrium dynamics and magnetoviscosity of moderately concentrated magnetic liquids: a dynamic mean-field study Z Naturforsch Section A - A J Phys Sci 58 589-893