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Laser Nitriding Process for Reducing Core Loss of Grain Oriented Silicon Steel and Improving Its Thermal Stability

机译:激光渗氮工艺可降低晶粒取向硅钢的芯损并提高其热稳定性

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摘要

A laser nitriding process (LN) for reducing the core loss of grain oriented silicon steel has been developed by the use of cw-co_2 laser irradiation with hot nitrogen flow (LHN) or nitrogen plasma (LPN). Nitrodation of the surface layer of the bold silicon steel by the LHN or the LPN induced new grain boundaries or restricted magnetization lines and a stress, which resulted in a refinement of 180° domain wall spacing. This phenomenon not only reduced the core loss of the steel but also the refining domain wall spacing had higher thermal stability. It was found that the laser nitriding technique was more effective in a specimen with a higher magnetic induction and the core loss reduced by more than 10% under proper conditions. Since the process is not a rather simple technique, it is easily applicable to the production line of the silicon steel.
机译:通过使用具有热氮气流(LHN)或氮气等离子体(LPN)的cw-co_2激光辐照,已开发出一种用于减少晶粒取向硅钢芯损耗的激光氮化工艺(LN)。 LHN或LPN对粗体硅钢的表面层进行渗氮,引起新的晶界或受限制的磁化线和应力,从而导致180°畴壁间距的细化。这种现象不仅减少了钢的芯损,而且精炼畴壁间距具有更高的热稳定性。结果发现,在适当的条件下,激光氮化技术在具有更高磁感应强度的样品中更有效,并且铁损降低了10%以上。由于该工艺不是很简单的技术,因此很容易应用于硅钢的生产线。

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