会议论文详细信息
2nd International Symposium on Resource Exploration and Environmental Science
Research of Rolling Process with Warm for Cold-Rolled Non-Oriented Electrical Steel
生态环境科学
Ye, Tie^1,2 ; Lu, Zhiwen^1,2 ; Ma, Chunhua^1,2
New Materials Engineering Technology Center, Nan Yang Normal University, Henan, China^1
Engineering Laboratory of Petroleum Equipment Intelligent Control in Henan, China^2
关键词: Cold rolled sheet;    Cold-rolled plates;    Continuous annealing;    Magnetic domain size;    Magnetic energies;    Non-oriented electrical steel;    Second phase particles;    Strip temperature;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/170/4/042085/pdf
DOI  :  10.1088/1755-1315/170/4/042085
学科分类:环境科学(综合)
来源: IOP
PDF
【 摘 要 】

The rolling process with warm for cold-rolled non-oriented electrical steel in pickling and rolling and continuous annealing was studied. Research shows when feeding the hot plate for Pickling and rolling mill in 100∼120°C, pickling steel is almost no temperature rise, with the temperature of hot rolled silicon steel pickling effect is good, the cleaning rate reaches 100%; the steel sheet is stable running in looper for the strip temperature softening effect and shape of rolled strip is good, deviation below 8μm. Cold rolled plate feeding in 60∼80°C for continuous annealing unit, the plate is almost no heating in Alkaline wash. Alkaline wash effect is good for the cold rolled plate with temperature steel, plate surface defect can be significantly reduced and wash rate is up to 100%; steel plate with temperature is not deviation in continuous annealing looper for softening. In addition, organization, texture, the second particles and magnetic energy also were studied. It was found that the steel sheets' microstructure is uniform after cold rolling, the grain is evenly stretched; belt warm rolling and the grain orientation of the cold-rolled sheet steel texture is obviously, which formed two main categories with {111}and {hkl}texture; after annealing, the second particles MnS and AlN particles has been roughened and close to the magnetic domain size, which reduce the obstacle second phase particles on the magnetic domains; Compared with the conventional process, the iron loss decreased slightly, magnetic induction increased slightly.

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