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使用单分散Fe/SiO2椭球型微纳复合胶粒作为磁性微粒,将其用吐温20做表面修饰并分散于油性基液中制备得到磁性液体;使用流变仪对这种新型磁性液体的流变性能进行了研究.结果表明:该磁性液体在承受垂直磁场方向的小剪切率时,其粘度会随磁感应强度的增加而变大;当剪切率较大时,粘度会变得很小且基本不随磁感应强度的增加而改变;磁感应强度一定时,该磁性液体有明显的剪切稀化现象;另外,其在承受小幅振荡剪切载荷时会表现出与典型磁性液体不同的粘弹性特征.

参考文献

[1] Caruso F. .Nanoengineering of particle surfaces [Review][J].Advanced Materials,2001(1):11-1+.
[2] L.C. Varanda;M. Jafelicci;G.F. Goya .Magnetic properties of spindle-type iron fine particles obtained from hematite[J].Journal of Magnetism and Magnetic Materials,2001(2):1933-1935.
[3] Hao LY;Zhu CL;Jiang WQ;Chen CN;Hu Y;Chen ZY .Sandwich Fe2O3@SiO2@PPy ellipsoidal spheres and four types of hollow capsules by hematite olivary particles[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2004(19):2929-2934.
[4] L.M. Pop;S. Odenbach;A. Wiedenmann .Microstructure and rheology of ferrofluids[J].Journal of Magnetism and Magnetic Materials,2005(0):303-306.
[5] Odenbach S .Recent progress in magnetic fluid research[J].Journal of Physics. Condensed Matter,2004(32):R1135-R1150.
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