Two Fe-Zr-B-Cu Nanocrystalline Magnetic Alloys Produced by Mechanical Alloying Technique

J. Daza, Wael Ben Mbarek, L. Escoda, J. Saurina, J. Suñol
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Abstract

Fe-rich soft magnetic alloys are candidates for applications as magnetic sensors and actuators. Spring magnets can be obtained when these alloys are added to hard magnetic compounds. In this work, two nanocrystalline Fe-Zr-B-Cu alloys are produced by mechanical alloying, MA. The increase in boron content favours the reduction of the crystalline size. Thermal analysis (by differential scanning calorimetry) shows that, in the temperature range compressed between 450 and 650 K, wide exothermic processes take place, which are associated with the relaxation of the tensions of the alloys produced by MA. At high temperatures, a main crystallisation peak is found. A Kissinger and an isoconversional method were used to determine the apparent activation of the exothermic processes. The values are compared with those found in the scientific literature. Likewise, adapted thermogravimetry allowed for the determination of the Curie temperature. The functional response has been analysed by hysteresis loop cycles. According to the composition, the decrease of the Fe/B ratio diminishes the soft magnetic behaviour.
机械合金化法制备两种Fe-Zr-B-Cu纳米晶磁性合金
富铁软磁合金是应用于磁传感器和执行器的候选材料。将这些合金加入到硬磁性化合物中可以得到弹簧磁铁。本文采用机械合金化法制备了两种纳米晶Fe-Zr-B-Cu合金。硼含量的增加有利于晶粒尺寸的减小。热分析(通过差示扫描量热法)表明,在450 ~ 650 K的压缩温度范围内,发生了广泛的放热过程,这与MA生产的合金的张力松弛有关。在高温下,发现一个主结晶峰。用Kissinger法和等转换法测定了放热过程的表观活化。将这些值与科学文献中的值进行比较。同样,采用热重法测定居里温度。用滞回环分析了系统的功能响应。从组成上看,Fe/B比的降低降低了软磁性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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