Effects of Rare Earth La–Ce Alloying Treatment on Modification of Inclusions and Magnetic Properties of W350 Non-Oriented Silicon Steel

Author:

Wang Haijun1,Niu Yuhao1,Ling Haitao1ORCID,Qiao Jialong12ORCID,Zhang Yanling3ORCID,Zhong Wei4,Qiu Shengtao2

Affiliation:

1. Anhui Province Key Laboratory of Metallurgical Engineering & Resources Recycling, Anhui University of Technology, Maanshan 243002, China

2. National Engineering Research Center of Continuous Casting Technology, China Iron & Steel Research Institute Group, Beijing 100081, China

3. State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing 100083, China

4. Xinyu Iron and Steel Co., Ltd., Xinyu 338001, China

Abstract

In order to study the effects of rare earth La–Ce alloying treatment on the characteristics of inclusions in non-oriented silicon steels, industrial experiments were conducted studying the composition, morphology, size and quantity of inclusions in W350 non-oriented silicon steel during the RH (Ruhrstahl-Hereaeus) refining process and tundish process, after rare earth treatment. The products were analyzed by means of ICP-MS (inductively coupled plasma mass spectrometry), SEM/EDS (scanning electron microscope-energy dispersive spectrometry), and ASPEX (automated SEM/EDS inclusion analysis). The research results showed that the types of inclusions in experimental steel changed significantly after rare earth treatment. The types of inclusions after RE (rare earth) treatment are typically rare earth composite inclusions that are mainly composed of (La, Ce)Al2O3, and conventional inclusions. The addition of rare earth promotes the agglomeration of inclusions; the morphologies of the inclusions are mostly blocky, and some are distributed in long strips. After rare earth treatment during the RH refining process, the number of inclusions with sizes of 1.0~3.5 μm in the experimental steel is increased, and the average size of the inclusions is 2.66 μm. In addition, the number of inclusions larger than 4 μm in the specimens increases due to the collision and growth of inclusions caused by the RH circulation. After rare earth treatment during the tundish process, the number of micro inclusions with sizes of 1.0~2.5 μm in the specimen steels decreases, while the number of inclusions larger than 5 μm increases. The size distribution of micro inclusions in hot-rolled sheets after rare earth treatment was studied using TEM (transmission electron microscopy). In the specimens without rare earth, the content of micro inclusions (≤1 μm) is 51,458.2/mm2 and the average size is 0.388 μm. In the specimens with rare earth added, the content of micro inclusions (≤1 μm) is 24,230.2/mm2 and the average size is 0.427 μm. Compared to sheet produced by the original process, the iron loss of the 0.35 mm finished experimental sheet is reduced by 0.068 W/kg, and the magnetic induction is increased by 0.007 T. The iron loss of the 0.50 mm finished experimental sheet is reduced by 0.008 W/kg, and the magnetic induction is increased by 0.004 T. After rare earth treatment, the average size of micro inclusions increases and the magnetic properties are obviously improved.

Funder

National Natural Science Foundation of China

Fund of Education Department of Anhui Province

Open Project Program of Anhui Province Key Laboratory of Metallurgical Engineering & Resources Recycling

University Natural Science Research Project of Education Department of Anhui Province

Jiangxi Province Major Scientific and Technological Research and Development Special Funding Project

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference30 articles.

1. Recent progress on non-oriented silicon steel;Kubota;Steel Res. Int.,2005

2. Recent development of non-oriented electrical steel sheet for automobile electrical devices;Oda;J. Mag. Mag. Mater.,2008

3. Development of a new generation of high permeability non-oriented silicon steels;Paolinelli;J. Mag. Mag. Mater.,2006

4. Development of non-oriented electrical steel used for high efficiency cores;Kubota;Curr. Adv. Mater. Process.,2003

5. Effect of texture and grain size on the magnetic flux density and core loss of cold-rolled high silicon steel sheets;Qin;J. Mag. Mag. Mater.,2015

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