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Investigation of electrical and magnetic properties of ferro-nanofluid on transformers

机译:铁磁纳米流体在变压器上的电磁特性研究

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摘要

This study investigated a simple model of transformers that have liquid magnetic cores with different concentrations of ferro-nanofluids. The simple model was built on a capillary by enamel-insulated wires and with ferro-nanofluid loaded in the capillary. The ferro-nanofluid was fabricated by a chemical co-precipitation method. The performances of the transformers with either air core or ferro-nanofluid at different concentrations of nanoparticles of 0.25, 0.5, 0.75, and 1 M were measured and simulated at frequencies ranging from 100 kHz to 100 MHz. The experimental results indicated that the inductance and coupling coefficient of coils grew with the increment of the ferro-nanofluid concentration. The presence of ferro-nanofluid increased resistance, yielding to the decrement of the quality factor, owing to the phase lag between the external magnetic field and the magnetization of the material.
机译:这项研究研究了一种简单的变压器模型,该模型具有具有不同浓度的铁纳米流体的磁芯。这个简单的模型是用搪瓷绝缘线在毛细管上建立的,并且毛细管中装有铁纳米流体。通过化学共沉淀法制备铁纳米流体。在100 kHz至100 MHz的频率范围内,对带有空心或铁纳米流体的纳米粒子在0.25、0.5、0.75和1 M的不同浓度下的性能进行了测量和仿真。实验结果表明,线圈的电感和耦合系数随铁纳米流体浓度的增加而增加。由于外部磁场和材料磁化之间的相位滞后,铁纳米流体的存在会增加电阻,导致品质因数下降。

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