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Effect of Mechanical Stresses in Rapidly Heated Fe73Cu1Nb3Si16B7 Ribbon Arising During the Ring Core Formation on Their Magnetic Properties

机译:机械应力对快速加热的Fe 73 Cu 1 Nb 3 Si 16 B 7 的影响下标>环形磁芯形成过程中带状带的磁性

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The influence of winding-induced mechanical stresses on the magnetic anisotropy and core loss in toroidal cores made of Fe~(73)Cu~(1)Nb~(3)Si~(16)B~(7) ribbon is studied. The ribbon for the cores was rapidly pre-heated under tensile stress up to 120?MPa. It was found that magnetic characteristics of the material (magnetic anisotropy energy and the core loss) can be controlled by varying the tensile stress during the preliminary rapid heating of the ribbon. It was shown that with reducing core diameter, the magnetic anisotropy energy and core loss significantly increase. However, relatively high winding-induced core loss in small cores can be significantly reduced by increasing tensile stresses applied to the ribbon during pre-heating.
机译:研究了绕组诱导的机械应力对Fe〜(73)Cu〜(1)Nb〜(3)Si〜(16)B〜(7)薄带制成的环形磁心的磁各向异性和磁心损耗的影响。芯子的薄带在高达120?MPa的拉伸应力下迅速预热。已经发现,可以通过在薄带的初步快速加热期间改变张应力来控制材料的磁特性(磁各向异性能和铁损)。结果表明,随着铁心直径的减小,磁各向异性能和铁损显着增加。但是,通过增加预热过程中施加在薄带上的拉应力,可以显着降低小铁芯中较高的绕组感应铁芯损耗。

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