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Study of energy dissipation in a suspension of particles with magnetic hysteresis in alternating supercritical-frequency field

机译:超临界频率场中磁滞粒子悬浮液的能量耗散研究

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Results of the experimental study of energy dissipation in a dielectric suspension of magnetohard gamma-Fe2O3 particles exposed to alternating magnetic field with a frequency exceeding the limiting frequency of mechanical rotations of ferroparticles in a carrier liquid are reported. The rate of energy absorption is investigated as depending on the field amplitude and particle concentration. A drastic increase in the absorption is observed with a rise in the amplitude in the 450-800 Oe range. It is revealed that the energy dissipated in the suspension, as calculated per volume of ferroparticles, is maximal at low particle concentrations. When the concentration increases, the energy dissipation decreases by one-third becoming equal to that in a solid unordered ferrodispersion. The results obtained qualitatively agree with the theory of dissipation in suspensions of singledomain particles characterized by a magnetic hysteresis.
机译:报告了在暴露于交变磁场中的磁硬γ-Fe2O3颗粒的电介质悬浮液中的能量耗散的实验研究结果,该交流磁场的频率超过了铁氧体在载液中的机械旋转的极限频率。根据场振幅和粒子浓度研究能量吸收率。在450-800 Oe范围内,随着振幅的增加,吸收率急剧增加。据揭示,悬浮液中的耗散能量(以铁颗粒的每体积计算)在低颗粒浓度下最大。当浓度增加时,能量耗散减少三分之一,变得等于固态无序铁分散体中的能量耗散。定性获得的结果与以磁滞为特征的单畴粒子悬浮液中的耗散理论相符。

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