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Magnetic Properties and Structure of Materials Obtained from Solid-State Reaction Process between Iron and Boron Nitride Induced by Mechanical Milling

机译:由机械研磨诱导的铁和氮化硼之间的固态反应过程获得的磁性和结构

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The powder mixture of the iron and hexagonal boron nitride subjected to mechanical milling using the high energy ball mill to obtain hard magnetic material has been investigated by XRD, SEM, DSC, and VSM methods. The components ratio in the mixture has been selected as 1 : 1. The initially soft magnetic powder shows hard magnetic properties already after 7 hours of mechanical milling. Increasing time of milling from 7 to 60 h leads to increase the coercivity of the powder mixture. The following annealing changes the phase composition and magnetic properties of the mechanical activated powder. The maximum magnetic properties values have been obtained after annealing at 500 degrees C within 5 h in the nitrogen atmosphere: saturation magnetization sigma(S) = 70 emu/g, coercivity = 42 kA/m (525 Oe).
机译:用XRD、SEM、DSC和VSM方法研究了铁和六角氮化硼的粉末混合物在高能球磨机上进行机械球磨以获得硬磁材料。混合物中的组分比例选择为1:1。经过7小时的机械研磨,最初的软磁粉已经显示出硬磁性。球磨时间从7小时增加到60小时,粉末混合物的矫顽力增加。随后的退火改变了机械活化粉末的相组成和磁性。在氮气气氛中500℃退火5小时后,获得了最大磁性能值:饱和磁化强度σ(S)=70 emu/g,矫顽力=42 kA/m(525 Oe)。

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