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Substitution Effect Of (Mn, Ti) to The Dielectric Properties of Barium-Strontium Hexaferrite for Absorbing Electromagnetic Waves

机译:(Mn,Ti)的替代效应吸收电磁波钡 - 锶六桥酮介电性能

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The objective of this work is to evaluate the ability of Mn-Ti substituted barium-strontium hexaferrite to absorb high frequency electromagnetic wave. To accomplish this objective, Mn-Ti substituted barium strontium hexaferrite of Ba0.5Sr0.5Fe12-x(Mn0.5Ti0.5)x with x = 0.1, x=0.3, x=0.5 were prepared through mechanical alloying route. Phase identification of the material obtained from XRD pattern indicating that the material is single phase for all variations of x. Coercivity and the remanent obtained by analyzing the hysteresis curve. The lowest coercivity at x = 0.5 for 77.86 kA/m but also lower the remanent of 0.088 kA/m. Dielectric properties of the material traced by calculating the value of permittivity and permeability of the material that was obtained with the parameters of the scattering vector network analyzer (VNA) in the 8GHz to 12GHz range.
机译:本作作品的目的是评估Mn-Ti取代的钡锶六氢锶酸钡吸收高频电磁波的能力。为了实现该目的,通过机械合金化途径制备X = 0.1,x = 0.3,X = 0.5的Ba0.5Sr0.5Fe12-x(Mn0.5Ti0.5)X的Mn-Ti取代的钡锶六氟粒子。从XRD图案获得的材料的相位识别,表明材料是X的所有变型的单相。通过分析滞后曲线而获得的矫顽力和再生。 x = 0.5的最低矫顽力为77.86ka / m,但也降低了0.088ka / m的剩余。通过计算8GHz至12GHz范围内的散射载体网络分析器(VNA)参数获得的材料的介电常数和渗透率来跟踪材料的介电性质。

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