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Giant uniaxial stress-permeability effect on electrical parameters of heterotypic MnZn ferrite devices and electromagnetic effect

机译:巨大的单轴应力-渗透率对异型MnZn铁氧体器件电参数的影响和电磁效应

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摘要

The effects of uniaxial stress on permeability and electrical parameters of heterotypic manganite zinc (MnZn) ferrite devices have been investigated. Giant stress-permeability, stress-capacitance and stress-impedance that are independent of skin effects have been simultaneously observed to exist in a wide range of frequency at room temperature. All the uniaxial stress effects enhance with increasing the permeability of the ferrite. The stress-inductance is same as the stress-impedance and reverse to the stress-capacitance in phase. The stress effects under uniaxial pulling force are analogical with those under uniaxial pressing force. A composite of electrostrain/stress-permeability has been fabricated. Its electromagnetic effects have been observed to be homologous with the stress effects and can also exist in wide range of frequency but display some maximums. Analysis shows that both stress and electromagnetic effects originate from the variation of the magnetic domain structure in the ferrites caused by applied mechanical stress.
机译:研究了单轴应力对异型锰锌铁氧体器件磁导率和电学参数的影响。与皮肤效应无关的巨大的应力渗透性,应力电容和应力阻抗在室温下同时存在于很宽的频率范围内。所有的单轴应力效应都随着铁素体磁导率的增加而增强。应力-电感与应力-阻抗相同,并且在相位上与应力-电容相反。在单轴拉力下的应力作用与在单轴按压力下的应力作用类似。已经制造了电应变/应力渗透率的复合材料。已经观察到它的电磁效应与应力效应是同源的,并且也可以存在于很宽的频率范围内,但显示出一些最大值。分析表明,应力和电磁效应均源于施加的机械应力引起的铁氧体磁畴结构的变化。

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