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Modelling of the magnetoelastic wave amplitude in amorphous ferromagnetic ribbons

机译:非晶铁磁带中磁弹性波振幅的建模

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摘要

The roles of elastic, magnetic and magnetomechanical coefficients in the determination of the magnetoelastic wave behaviour have been revised. A proper model in agreement with the most frequently used experimental cases was developed in order to describe the stationary magnetoelastic waves in a ferromagnetic ribbon when its ends are clamped or free. The theoretical results show that, in order to obtain a high amplitude of the magnetic component of the resonant waves, the coexistence of three conditions are necessary; high magnetomechanical coupling coefficient, a high magnetic permeability at a low magnetizing field and a low longitudinal compliance coefficient thigh Young's modulus). Experimental investigation on a representative set of metallic glasses is hereby reported. The results confirm that maximizing the resonant magnetoelastic waves corresponds to optimization of the above-mentioned conditions by means of both the proper material and the proper magnetizing field. [References: 20]
机译:弹性,磁和磁机械系数在确定磁弹性波行为中的作用已被修订。为了描述当铁磁带的两端被夹住或自由时铁磁带中的静态磁弹性波,开发了一个与最常用的实验案例相符的适当模型。理论结果表明,为了获得高振幅的共振波的磁性成分,必须同时存在三个条件。磁机械耦合系数高,在低磁化场下具有高磁导率以及低纵向顺应系数thigh杨氏模量)。特此报道对代表性的金属玻璃的实验研究。结果证实,通过适当的材料和适当的励磁场,使共振磁弹性波最大化对应于上述条件的优化。 [参考:20]

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