Study of structural changes in magneto-rheological fluids by acoustic spectroscopy

J. Kúdelčík, P. Bury, Š. Hardoň, M. Sedlačík, M. Mrlík
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引用次数: 3

Abstract

The changes in structural arrangement in silicon oil based magneto-rheological fluids with carbonyl iron particles upon the effect of an external magnetic were studied by acoustic spectroscopy. The attenuation of acoustic waves was measured for a jump change of the magnetic field at temperature 20 °C for various magnetic particles concentrations. The relaxation effects for the acoustic attenuation after switching off the magnetic field and its decrease to the same value as for clean synthetic oil were observed. The change in attenuation coefficients of acoustic waves in magneto-rheological fluid versus angle between the wave vector and direction of the applied magnetic field has been measured, too. From the measured anisotropy of attenuation coefficient structural change of magneto-rheological fluid in the magnetic field is evident. The observed influences of the magnetic field and concentration on the investigated liquids structure are discussed.
磁流变液结构变化的声学光谱研究
用声学波谱法研究了羰基铁颗粒硅油基磁流变液在外加磁场作用下结构排列的变化。在温度为20°C时,测量了不同磁性颗粒浓度下磁场的跃变对声波的衰减。在关闭磁场后,观察到声衰减的松弛效应,并将其降低到与清洁合成油相同的值。测量了声波在磁流变流体中的衰减系数随波矢量与外加磁场方向夹角的变化。从测量的衰减系数各向异性来看,磁流变流体在磁场中的结构变化是明显的。讨论了所观察到的磁场和浓度对所研究液体结构的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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