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Controlling the microstructure and associated magnetic properties of Ni0.2Mn3.2Ga0.6 melt-spun ribbons by annealing

机译:通过退火控制Ni0.2Mn3.2Ga0.6熔纺薄带的显微组织和相关的磁性能

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Here we report on the structural and magnetic properties of Ni 0.2Mn3.2Ga0.6 melt-spun ribbons. The as-spun ribbons were found to exhibit mixed cubic phases that transform to non-cubic structure upon annealing. Additionally, an amorphous phase was found to co-exist in all ribbons. The SEM images show that minor grain formation occurs on the as-spun ribbons. However, the formation of extensive nano-grains was observed on the surfaces of the annealed ribbons. While the as-spun ribbons exhibit predominantly paramagnetic behavior, the ribbons annealed under various thermal conditions were found to be ferromagnetic with a Curie temperature of about 380 K. The ribbons annealed at 450 °C for 30 minutes exhibit a large coercive field of about 2500 Oe. The experimental results show that the microstructure and associated magnetic properties of the ribbons can be controlled by annealing techniques. The coercive fields and the shape of the magnetic hysteresis loops vary significantly with annealing conditions. Exchange bias effects have also been observed in the annealed ribbons.
机译:在这里,我们报道了Ni 0.2 Mn 3.2 Ga 0.6 熔纺薄带的结构和磁性。发现初生带表现出混合的立方相,该立方相在退火后转变为非立方结构。另外,发现非晶相共存于所有带中。 SEM图像显示在初生带上发生了微小的晶粒形成。然而,在退火带的表面上观察到大量纳米颗粒的形成。虽然初纺的碳带主要表现出顺磁性,但是在各种热条件下退火的碳带都是铁磁性的,居里温度约为380K。在450°C退火30分钟的碳带具有约2500的大矫顽场大江实验结果表明,可以通过退火技术来控制带的微观结构和相关的磁性能。矫顽场和磁滞回线的形状随退火条件而显着变化。在退火带中也观察到交换偏压效应。

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