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Effect of Annealing Temperature on the Texture and Magnetic Barkhausen Noise of a Non-oriented Electrical Steel (0.88 wt Si) after Inclined Cold Rolling

机译:退火温度对倾斜冷轧后非取向电钢(0.88wt%Si)纹理和磁性巴克胡森噪声的影响

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Inclined cold rolling was employed in this study to process a 0.88 wt% Si non-oriented electrical steel. After conventional hot rolling and annealing, the steel was cold rolled at various angles (i.e. 0°, 45°, and 90°) to the hot rolling direction (HRD), and the cold-rolled steel sheets were then annealed at different temperatures from 600°C to 750°C for 30 seconds to investigate the effect of annealing temperature on the texture and magnetic response of the material. The texture was measured by electron backscatter diffraction (EBSD), and the magnetic response of the steel was evaluated by magnetic Barkhausen noise (MBN) analysis. It was found that all the cold-rolled steels partially recrystallize at temperatures below 750°C, but the progress of recrystallization differs in steels cold rolled at different angles to the HRD, i.e. samples rolled at 45° to the HRD recrystallize faster than those after conventional rolling (0° to HRD) or cross rolling (90° to the HRD). The initial cold rolling texture (mainly the a-fibre and γ-fibre) may change to cube, rotated cube, rotated Goss or {111}<112> depending on the rolling scheme and the annealing temperature. The MBN root mean square values of the samples cold rolled at different angles to the HRD show substantial differences during the annealing process. At low annealing temperatures (600°C and 650°C), the anisotropy of MBN in the conventionally rolled steel is much higher than those after inclined rolling or cross rolling.
机译:本研究采用倾斜的冷轧,以处理0.88wt%的Si非取向电钢。传统的热轧和退火后的钢冷轧以不同的角度(即,0°,45°,和90°),以热轧方向(HRD),然后对冷轧钢板在从不同温度下退火600°C至750°C 30秒,探讨退火温度对材料质地和磁响应的影响。通过电子反向散射衍射(EBSD)测量纹理,通过磁性巴卡豪噪声(MBN)分析评估钢的磁响应。发现所有冷轧钢在低于750℃的温度下部分重结晶,但重结晶的进度在钢冷轧以与HRD不同的角度,即在45°卷起的样品重结晶比后再结晶。常规轧制(0°至HRD)或交叉滚动(90°至HRD)。初始冷轧纹理(主要是A光纤和γ-纤维)可以根据轧制方案和退火温度而改变为立方体,旋转立方体,旋转的高斯或{111} <112>。 MBN均方的样品的均方格值冷轧以不同的角度至HRD在退火过程中显示出具有显着差异。在低退火温度(600°C和650°C)时,常规轧制钢中MBN的各向异性远高于倾斜轧制或交叉轧制后的各向异性。

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