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Effect of Rolling Process on Microstructure and Magnetic Properties of 50W800 Electrical Steel

机译:轧制工艺对50W800电钢组织和磁性的影响

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The effects of microstructure and texture on the magnetic properties of 50W800 non-oriented electrical steel produced by secondary and single cold rolling and annealing process were studied by Zeiss metallographic microscope and X-ray diffraction (XRD). The results showed that under the same composition and the same process parameters, the performance of using secondary cold rolling 50W800 was better than that by single cold rolling method. The iron loss of the final finished steel after annealing by secondary cold rolling was 4.550 W/kg (P_(15/50)), the magnetic induction reached 1.749T (50 Hz, 5000 A/m) and the average grain size was 33 μm. The iron loss of the final finished steel after annealing by single cold rolling was 4.924 W/kg (P_(15/50)), the magnetic induction reached 1.742T (50 Hz, 5000 μm) and the average grain size was 24.8 μm. The iron loss of the secondary cold rolling iron loss decreased by 0.374w (P_(15/50)), the magnetic induction increased by 0.007T (50 Hz, 5000 A/m), the average grain size increased by 8.2 μm.
机译:通过Zeiss金相显微镜和X射线衍射(XRD)研究了微观结构和质地对由二次和单冷轧和退火过程产生的50W800非取向电钢和退火过程中的磁性。结果表明,在相同的组成和相同的工艺参数下,使用二次冷轧50W800的性能优于单冷轧方法。二次冷轧退火后最终成品钢的铁损为4.550W / kg(P_(15/50)),磁感移达到1.749T(50Hz,5000A / m),平均粒度为33 μm。单冷轧退火后最终成品钢的铁损为为4.924W / kg(P_(15/50)),磁感应达到1.742t(50Hz,5000μm),平均晶粒尺寸为24.8μm。二次冷轧铁损的铁损失减少0.374W(P_(15/50)),磁感应增加0.007T(50Hz,5000A / m),平均晶粒尺寸增加8.2μm。

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