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Evolution of Microstructure, Magnetic Properties, and Thermal Stabilities of Isotropic Alnico Ribbons

机译:各向同性Alnico碳带的微观结构,磁性和热稳定性的演变

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The magnetic properties of alnico alloys are highly dependent on the spinodally decomposed nanostructure. In this article, we report the fabrication of alnico nanoribbons and the effects of various heat treatments on the magnetic properties, spinodal decomposition, microstructure, and temperature stability. It is found that the spinodal decomposition occurs in a wider range of temperatures from 800 degrees C to 860 degrees C. The scanning electron microscopy (SEM) and transmission electron microscopy (TEM) analyses of the microstructure confirmed that the nanostructure phases develop in a wide temperature range. Aspect ratio of the order of similar to 20 is obtained by optimizing the heat treatment conditions. Magnetic properties of H-cj = 815 Oe, B-r = 6.70 kG, and (BH)(max) = 1.88 MGOe are obtained after simplified heat treatment. The magnetic properties of the alloys are measured at low (10 K) and at high (800 K) temperature, and it is shown by calculating temperature coefficient of remanence (alpha) and temperature coefficient of coercivity (beta) that alnico ribbons possess extraordinary temperature stability at low and high temperatures.
机译:铝镍钴合金的磁性能高度依赖于旋节线分解的纳米结构。在本文中,我们报告了铝镍钴纳米带的制造以及各种热处理对磁性能,旋节线分解,微观结构和温度稳定性的影响。发现旋节线分解发生在从800摄氏度到860摄氏度的更宽的温度范围内。对微观结构的扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析证实,纳米结构相在很宽的范围内发展。温度范围。通过优化热处理条件,可以获得近似于20的纵横比。经过简化的热处理后,可获得H-cj = 815 Oe,B-r = 6.70 kG和(BH)(max)= 1.88 MGOe的磁性。合金的磁性能是在低温(10 K)和高温(800 K)下测量的,并且通过计算剩磁温度系数(α)和矫顽力温度系数(β)可以看出,铝镍钴合金带具有异常的温度在低温和高温下具有稳定性。

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