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Yielding behavior of model magnetorheological fluids

[PDF] c9sm00275h.pdf (5.987Mb)
Identificadores
URI: https://hdl.handle.net/10481/111377
DOI: 10.1039/C9SM00275H
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Author
Morillas Medina, José Rafael; Vicente Álvarez-Manzaneda, Juan De
Editorial
Royal Society of Chemistry
Date
2019-04-01
Referencia bibliográfica
Morillas Medina, José Rafael and Vicente Álvarez-Manzaneda, Juan De. Yielding behavior of model magnetorheological fluids. Soft Matter, 2019, 15, 3330. DOI: 10.1039/c9sm00275h
Sponsorship
MINECO MAT 2016-78778-R, PCIN-2015-051, FPU14/01576; European Regional Development Fund (ERDF)
Abstract
The yielding behavior of magnetorheological fluids is revisited through the use of finite element method calculations on model structures and carefully conducted experiments in a magnetorheometer. Model structures investigated in this work are monoclinic lattices with simple and body centered bases. From the simulation point of view we emphasize the influence of the interparticle gap separation. From the experimental point of view we elucidate the importance of the magnetic field application and the occurrence of slip at the confining surfaces. Simulations demonstrate that the yield stress τ0 scales with the interparticle center-to-center distance h as τ0/〈M〉2 ∝ h−6 where 〈M〉 is the particle magnetization. A good agreement is found when the simulated yield stresses are compared with the experimental ones, independent of the particular packing and interparticle gap.
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