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Subdivision of Hysteresis Loss in Mn-Zn Ferrite Toroidal Cores

机译:Mn-Zn铁氧体环形磁芯的磁滞损耗细分

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The hysteresis loss subdivision method proved to be a strong tool to help in the analysis of different energy dissipation mechanisms along the quasi-static hysteresis loop measured on electrical steels. This paper used the same method to discuss the mechanisms involving the energy loss dissipation in Mn-Zn ferrite toroidal cores. The samples, sintered under controlled atmosphere in industrial conditions, were measured under triangular waveform excitation at very low frequency (5 mHz) and peak flux densities varying from 0.05 T to 0.45 T. The results show a different behavior between the low inductions hysteresis loss (WLI) and the high induction hysteresis loss (WHI) which proves the existence of different energy dissipation mechanisms affecting these loss components.
机译:磁滞损耗细分方法被证明是一种强大的工具,可帮助分析沿电工钢上测量的准静态磁滞回线的不同能量耗散机制。本文采用相同的方法讨论了锰锌铁氧体环形磁芯中涉及能量损耗的机理。在工业条件下在受控气氛下烧结的样品是在非常低的频率(5 mHz)的三角波激发下测量的,并且峰值磁通密度在0.05 T至0.45 T之间变化。结果表明,低感应磁滞损耗之间的行为不同( WLI)和高感应磁滞损耗(WHI),证明存在影响这些损耗分量的不同能量耗散机制。

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