综述了外加能场(电磁场和超声场)消除钢凝固成形缺陷的研究进展。在钢液凝固过程中施加电磁场主要是借助于电磁力的搅拌作用,达到细化晶粒,减轻疏松、偏析和裂纹的目的;在钢液凝固过程中施加超声场主要是借助于超声波的空化效应和声流效应,实现细化晶粒,减少夹杂物,从而提高钢的力学性能;施加电磁-超声复合能场是消除大尺寸连铸钢坯凝固成形缺陷的新方法,并对其后续研究提出了几个需要考虑的问题。
The research progress on removing solidification forming defects of steels by introducing external energy fields (electromagnetic field and ultrasonic field)is reviewed.It is with the aid of stirring of electromagnetic force to refine grain,reduce porosity,segregation and cracks,while the application of electromagnetic field on liquid steels during solidification.It is with the aid of cavitation effect and acoustic streaming effect of ultrasound to refine grain,reduce inclusion,so as to enhance mechanical property of steels,while the application of ultrasonic field on liquid steels during solidification.The electromagnetic-ultrasonic compound fields will be a new method to remove solidification forming defects of large size continuos casting steels billet,and some problems need to consider for the new method in follow-up research are presented.
参考文献
[1] | V. Metan;K. Eigenfeld;D. Rabiger.Grain size control in Al-Si alloys by grain refinement and electromagnetic stirring[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,20091/2(1/2):163-172. |
[2] | Willers, B;Eckert, S;Michel, U;Haase, I;Zouhar, G.The columnar-to-equiaxed transition in Pb-Sn alloys affected by electromagnetically driven convection[J].Materials Science & Engineering. A, Structural Materials: Properties, Microstructure and Processing,20051-2(1-2):55-65. |
[3] | E. Liotti;A. Lui;R. Vincent.A synchrotron X-ray radiography study of dendrite fragmentation induced by a pulsed electromagnetic field in an Al-15Cu alloy[J].Acta materialia,2014:228-239. |
[4] | Ramirez A;Qian M;Davis B;Wilks T;StJohn DH.Potency of high-intensity ultrasonic treatment for grain refinement of magnesium alloys[J].Scripta materialia,20081(1):19-22. |
[5] | M. Khosro Aghayani;B. Niroumand.Effects of ultrasonic treatment on microstructure and tensile strength of AZ91 magnesium alloy[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,20111(1):114-122. |
[6] | 毛大恒;扶宗礼;李建平;肖琼;石琛.超声波/电磁复合能场对1060铝合金铸轧板带组织和力学性能的影响[J].机械工程材料,2013(5):54-58. |
[7] | 石琛;毛大恒;黄长清.电磁-超声能场对1060铝板带再结晶组织与织构的影响[J].中国有色金属学报,2014(3):606-614. |
[8] | ZHOU Shu-cai;BAI Chen-guang;LEI Ya;REN Zheng-de;CAO Peng-jun;YANG Zhi-li.Effect of low-frequency rotary electromagnetic-field on solidification structure of continuous casting austenitic stainless steel[J].中南大学学报(英文版),2009(03):360-364. |
[9] | J.C. Kim;J.J. Kim;J.Y. Choi.CONTROL OF COLUMNAR-TO-EQUIAXED TRANSITION IN CONTINUOUS CASTING OF 16 percent Cr STAINLESS STEEL[J].Metallurgia Italiana,20099(9):43-48. |
[10] | 张桂芳;陈永.结晶器电磁搅拌对重轨钢大方坯内部质量的影响[J].炼钢,2008(4):21-25. |
[11] | 陈永;朱苗勇.280 mm×380 mm连铸坯结晶器电磁搅拌技术的应用[J].特殊钢,2008(1):51-53. |
[12] | 权淑丽;郭昭桥;陶力农.超声波和电脉冲对钢液凝固组织的影响[J].钢铁钒钛,2014(1):95-100. |
[13] | 李杰;陈伟庆;王晓峰.超声波功率对高碳钢中夹杂物的影响[J].北京科技大学学报,2009(9):1112-1115,1121. |
[14] | Qingmei Liu;Qijie Zhai;Feipeng Qi.Effects of power ultrasonic treatment on microstructure and mechanical properties of T10 steel[J].Materials Letters,200711/12(11/12):2422-2425. |
[15] | W. Kong;D. Q. Cang;J. H. Song.Effects of Ultrasonic Treatment during the Solidification Process on the Structure Formation of Low Carbon Steel[J].Materials transactions,20119(9):1844-1847. |
[16] | Jinwu KANG;Xiaopeng ZHANG;Yisen HU.Ultrasonic Treatment of the 304 Stainless Steel Melt[J].ISIJ International,20142(2):281-287. |
[17] | 马新建;张永杰.功率超声结合吹氩操作对钢液中夹杂物的去除效果[J].世界钢铁,2010(3):30-33. |
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