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Synthesis and Magnetorheology Study of Iron Oxide and Iron Cobalt Oxide Suspensions

机译:氧化铁和氧化钴铁悬浮液的合成及磁流变学研究

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This study investigates the magnetorheology (MR) of polydimethylsiloxane (PDMS) that contains magnetic powders of various compositions, shapes, and concentrations. Two magnetic powders, Fe3O4and CoFe2O4, were synthesized. TEM images reveal that a powder of spherical particles was obtained at high temperature. A powder with nonspherical star shape was synthesized at low temperature. A rheological test confirmed a typical Bingham behavior for all the MR fluids prepared in this study. Experimental results demonstrated that the cobalt ferrite exhibited a more superior yield stress than the ferrite compound. A magnetic powder of larger particles was found to have higher yield stress. Moreover, the spherical particles yielded a higher yield stress than the star-shaped particles. The “saturated magnetic strength” increased with the loading of the magnetic powder. Finally, the results demonstrate that 12 wt% CoFe2O4nanopowder (10 nm) dispersed in the PDMS liquid exhibited a large range of yield stresses (0 to 644 Pa).
机译:这项研究调查了聚二甲基硅氧烷(PDMS)的磁流变学(MR),其中包含各种成分,形状和浓度的磁粉。合成了两种磁性粉末Fe3O4和CoFe2O4。 TEM图像表明,在高温下获得了球形颗粒的粉末。在低温下合成具有非球形星形的粉末。流变测试证实了本研究中制备的所有MR液体的典型Bingham行为。实验结果表明,钴铁氧体比铁氧体化合物具有更高的屈服应力。发现较大颗粒的磁性粉末具有较高的屈服应力。而且,球形颗粒比星形颗粒产生更高的屈服应力。 “饱和磁强度”随磁性粉末的负载而增加。最后,结果表明,分散在PDMS液体中的12 wt%CoFe2O4纳米粉(10 nm)表现出大范围的屈服应力(0至644 Pa)。

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