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Changes of inclusion, texture and magnetic property of non-oriented Si steel treated by Ca alloy

机译:CA合金处理非取向Si钢的包涵体,质地和磁性变化

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Based on the industrial production of non-oriented Si steel, Ca treatment by Ca alloy adding during the RH refining process was studied. The changes of inclusion, crystal texture and microstructure, and its effect on magnetic properties of final steel sheets were analyzed. The results showed that, in present work, Ca treatment can improve the texture proportion of {110} and {111} significantly, and the formation of MnS and A1N inclusions were restrained. Meanwhile, the recrystallization effects of hot rolled strip get bad and the fiber structure enhanced obviously. The grain size of finished steel sheets increased as the increase of Ca alloy adding amount quickly, and then decreased. Compared with the non-Ca treatment charge, the numbers of inclusions whose size below 1.0μm will decrease by 68.06%, 87.50% and 94.94%, the texture proportion of {110} and {111} was 30.3%, 39.1%, 17.6% and 2.8%, 5.5%, 20.6%, while the correspondent Ca alloy adding amount is 0.67 kg/t steel, 1.00 kg/t steel and 1.67 kg/t steel, respectively. In addition, the core loss gradually decreases to a stable level as the increasing of Ca added, and the magnetic induction decreases quickly after slow increasing, respectively. The optimal Ca treatment mode depends on the chemical compositions of steel grades.
机译:基于工业生产的非导向Si钢,研究了RH精炼过程中CA合金加入的Ca处理。分析了夹杂物,晶体纹理和微观结构的变化及其对最终钢板磁性的影响。结果表明,在目前的工作中,Ca治疗可以显着提高{110}和{111}的纹理比例,并且抑制了MNS和A1N夹杂物的形成。同时,热轧带材的再结晶作用变坏,纤维结构明显增强。成品钢板的晶粒尺寸随着CA合金的增加而增加,然后减少。与非CA处理电荷相比,尺寸低于1.0μm的夹杂物的数量将降低68.06%,87.50%和94.94%,{110}和{111}的质地比例为30.3%,39.1%,17.6% 2.8%,5.5%,20.6%,而通用的CA合金添加量分别为0.67kg / t钢,1.00公斤/吨钢和1.67千克/吨钢。此外,随着所添加的CA的增加,核心损耗逐渐降低到稳定的水平,并且在缓慢增加后,磁感应迅速降低。最佳CA处理模式取决于钢等级的化学成分。

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