论文标题

超高和纳米晶的软磁性特性

Soft Magnetic Properties of Ultra-Strong and Nanocrystalline Pearlitic Wires

论文作者

Wurster, Stefan, Stückler, Martin, Weissitsch, Lukas, Krenn, Heinz, Hohenwarter, Anton, Pippan, Reinhard, Bachmaier, Andrea

论文摘要

该论文描述了通过严重的变形技术对粗粒粒料材料进行磁化的能力。将微结构与磁性特性相连,强制场对于小于磁交换长度的谷物而言会大大减少。这使得对严重绘制的珠光线的软磁性能进行了研究非常有趣。借助开始的两个相微结构,可以基本上完​​善材料,从而可以研究纳米晶体材料的磁性。与粗砂的初始,珠光性状态相比,高度变形的电线的可矫正性减小,而饱和磁化值则增加,甚至超出了单个成分可预期的值。发现厚度为24 um的电线中,在抽取状态中最低的固定性为520 a m,而退火处理对其具有进一步的积极作用。在两个相对模型的框架中讨论了降低的矫正力:一方面谷物的细化和牙龈溶解。辅助测量值为后一种模型提供了明显的指示,对观察到的磁性演变提供了足够的描述。

The paper describes the capability of magnetic softening of a coarse grained bulk material by a severe deformation technique. Connecting the microstructure with magnetic properties, the coercive field decreases dramatically for grains smaller than the magnetic exchange length. This makes the investigation of soft magnetic properties of severely drawn pearlitic wires very interesting. With the help of the starting two phase microstructure, it is possible to substantially refine the material, which allows the investigation of magnetic properties for nanocrystalline bulk material. Compared to the coarse grained initial, pearlitic state, the coercivities of the highly deformed wires decrease while the saturation magnetization values increase, even beyond the value expectable from the individual constituents. The lowest coercivity in the drawn state is found to be 520 A m for a wire of 24 um thickness and an annealing treatment has a further positive effect on it. The decreasing coercivity is discussed in the framework of two opposing models: grain refinement on the one hand and dissolution of cementite on the other hand. Auxiliary measurements give a clear indication for the latter model, delivering a sufficient description of the observed evolution of magnetic properties.

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