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首页> 外文期刊>Journal of magnetism and magnetic materials >Tailoring the magnetization linearity of Finemet type nanocrystalline cores by stress induced anisotropics
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Tailoring the magnetization linearity of Finemet type nanocrystalline cores by stress induced anisotropics

机译:通过应力诱导的各向异性剪裁Finemet型纳米晶体芯的磁化线性

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In this paper a theoretical and experimental investigation will be presented on the linearity of the flat hysteresis loop obtained by continuous stress annealing of Finemet type nanocrystalline ribbon. The stability of the effective permeability versus the magnetizing field depend on the residual random distribution of local magnetization and can be characterized by i) the coefficient a in the expression of magnetization approaching the saturation: M/Ms = 1 — a/H, valid in a restricted region, for H_(lin) < H < H_(sat), where H_(lin) is the limit of linearity and by ii) the distribution of the anisotropy field ΔH_K. The theoretical upper limit of linearity is given by the anisotropy field H_K = B_s/μ_o.μ_(eff). The linearity limit, H_(uv), can be expressed as a difference between the value H_K and the half width of the anisotropy field distribution, ΔHK. The linearity will be measured by the ratio R = H_(lin)/H_K. The parameter R is almost constant (around 0.72) for large applied stresses and carefully selected annealing parameters (furnace geometry, temperature distribution along the furnace and pulling velocity). For small applied stresses (i.e. for effective permeability's above 4000) however this linearity parameter is reduced to zero and a potbellied loop appears. A possible explanation will be given for the stress dependence of linearity parameter based on the back stress model of stress annealing.
机译:在本文中,将呈现通过连续应力退火的FineMet型纳米晶系丝的连续应力退火而呈现理论和实验研究。有效渗透性与磁化场的稳定性取决于局部磁化的剩余随机分布,并且可以通过I)在磁化的表达中的表达式静态饱和度:M / MS = 1 - a / h,有效限制区域,用于H_(LIN)

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