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Effect of recrystallization and degree of order on the magnetic and mechanical properties of soft magnetic FeCo-2V alloy

机译:重结晶和有序度对软磁FeCo-2V合金的磁性和机械性能的影响

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摘要

The magnetic and mechanical properties of Fe-49%Co-2V sheet, used in the rotors of electric generators in aircrafts, have been investigated as a function of heat treatments. Experimental results show that magnetic and mechanical properties depend on the boundary spacing both in partially and completely recrystallized samples. Coercivity linearly depends on the inverse of the boundary spacing and yield strength follows an experimental Hall-Petch relationship with boundary spacing. Nevertheless, it appeared that for similar boundary spacing and similar texture, the yield strength can be increased when the alloy is more rapidly cooled after annealing. This process tends to limit the ordering of the alloy, keeping the magnetic losses intact. The link between the degree of order, measured by neutron diffraction, and yield strength has been established in the FeCo-2V alloy. Moreover, a significant effect of the degree of order on the frictional stress has been evidenced. Therefore, optimal compromise between magnetic and mechanical properties could be obtained when the alloy is partially recrystallized with the lowest degree of order.
机译:已经研究了用于飞机发电机转子的Fe-49%Co-2V薄板的磁性能和机械性能与热处理的关系。实验结果表明,在部分和完全重结晶的样品中,磁性能和机械性能都取决于边界间距。矫顽力线性地取决于边界间距的倒数,并且屈服强度遵循具有边界间距的实验霍尔-帕奇关系。然而,看来对于相似的边界间距和相似的织构,当合金在退火后被更快地冷却时,可以提高屈服强度。该过程趋向于限制合金的有序化,从而保持完整的磁损耗。在FeCo-2V合金中,已经建立了通过中子衍射测量的有序度与屈服强度之间的联系。此外,已经证明有序度对摩擦应力具有显着影响。因此,当合金以最低有序度进行部分重结晶时,可以获得磁性能和机械性能之间的最佳折衷。

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