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首页> 外文期刊>Journal of magnetism and magnetic materials >Thermal conductivity of flake-shaped iron particles based magnetorheological suspension: Influence of nano-magnetic particle concentration
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Thermal conductivity of flake-shaped iron particles based magnetorheological suspension: Influence of nano-magnetic particle concentration

机译:片状铁颗粒基磁流变悬浮液的热导率:纳米磁性颗粒浓度的影响

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摘要

The non-spherical shape (flake-shape) iron particles based magnetorheological (MR) fluid thermal conductivity is experimentally investigated using the hot-wire method. Under the magnetic field, thermal conductivity is enhanced by 20% compared to spherical shape commercial MR fluid having nearly 20% higher volume fraction of iron particles. This enhancement attributes to the larger contact area of the flake-shape particle (when they form a chain), which helps to transport heat quickly. The magnetic nanoparticles of size 6.5 nm were added to this MR fluid for varying magnetic weight fraction and studied its influence on thermal conductivity. The increase of magnetic nanoparticle concentration enhances the thermal conductivity and increases field reversibility. The observed increase in thermal conductivity and low hysteresis losses is attributed to the friction reduction in flake-shaped iron particles in the presence of nanoparticles.
机译:使用热线法实验研究了非球形(片状)铁颗粒基磁流变(MR)流体的热导率。在磁场下,与铁颗粒的体积分数高出近20%的球形商用MR流体相比,导热系数提高了20%。这种增强归因于片状颗粒(当它们形成链时)的更大的接触面积,这有助于快速传递热量。将尺寸为6.5 nm的磁性纳米粒子添加到此MR流体中,以改变磁性重量分数,并研究其对热导率的影响。磁性纳米粒子浓度的增加增强了热导率并增加了场可逆性。观察到的热导率的增加和低磁滞损耗的增加归因于在存在纳米颗粒的情况下片状铁颗粒的摩擦减小。

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