Effect of Normalized Temperature on Microstructure、Texture Transformation and Magnetic Properties of Hot Rolled Plate of Electrical Steel 50W300
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Effect of Normalized Temperature on Microstructure、Texture Transformation and Magnetic Properties of Hot Rolled Plate of Electrical Steel 50W300
Special SteelVol. 43, Issue 4, Pages: 82-87(2022)
作者机构:
1. 南阳师范学院智能制造研究院,南阳,473061
2. 鞍钢股份有限公司技术中心,鞍山,114001
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Received:20 December 2021,
Online First:21 August 2022,
Published:21 August 2022
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叶铁, 高振宇, 卢志文, et al. Effect of Normalized Temperature on Microstructure、Texture Transformation and Magnetic Properties of Hot Rolled Plate of Electrical Steel 50W300[J]. Special Steel, 2022, 43(4): 82-87.
DOI:
叶铁, 高振宇, 卢志文, et al. Effect of Normalized Temperature on Microstructure、Texture Transformation and Magnetic Properties of Hot Rolled Plate of Electrical Steel 50W300[J]. Special Steel, 2022, 43(4): 82-87.DOI:
Effect of Normalized Temperature on Microstructure、Texture Transformation and Magnetic Properties of Hot Rolled Plate of Electrical Steel 50W300
texture and electromagnetic properties of high-grade cold-rolled 50W300 non oriented electrical steel 2. 3 mm hot-rolled plate with normalizing at low temperature ( 820°C ) and high temperature (920 X.) are studied by means of EBSD ( electron back-scatting diffraction) detection etc analysis and magnetic property measurement technology. It is found that when the normalizing treated process is at 920 T for 2 min (45 m/min)
the iron loss of the finished electrical steel is the lowest and the magnetic induction is the highest. Under such process conditions
the grain structure of the outer layer of the electrical steel coil is rapidly decarburized. The grain growth of the subsurface layer is slow
and the grain is small and uniform. When the center layer structure is recrystallized
they are uniform in size. And the texture level reduces
the surface texture is slow
the texture in sub-surface and the central layer are similar to the cold- rolled textures
the texture ratio of the magnetic properties of electrical steel increase.