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采用行波磁场进行了电磁连续净化铝合金液实验, 并采用电磁净化金属熔体的轨线模型, 对实验中的夹杂物去除率进行了理论预测。 结果表明, 含夹杂的铝合金液连续流经电磁力作用段时, 夹杂物被阻隔, 形成电磁过滤效应, 而夹杂物聚集区域夹杂物面积分数趋于某一常数。 轨线模型预测与实验结果吻合良好。

The experiment on continuously purifying of aluminum base alloy melt by travelling magnetic field was carried out. The trajectory model was used to calculate the inclusion-removal efficiency. The results show that the inclusions in aluminum base alloy melt can be captured when the melt flows through the electromagnetic field, which is called “electromagnetic filtration”, and the superficial percent of the inclusions trend to some certain value. The calculated minimum diameter of thoroughly removed inclusions conforms to the observed one.

参考文献

[1] Marty P;Alemany A.Theoretical and experimental aspects of electromagnetic separation. Metallurgical Applications of Magnetohydrodynamics[M].Cambridge,1982:245-259.
[2] Patel A D;Nagy E K.On the theory of electromagnetic separation in alternating electromagnetic fields[A].Nagoya,1994:115-120.
[3] Shigeo Asai .Birth and recent activities of electromagnetic processing of materials[J].ISIJ International,1989,29(12):981-992.
[4] 钟云波 .电磁力场作用下液态金属中非金属颗粒迁移规律及其应用研究[D].上海大学,1999.
[5] 钟云波;任忠鸣;邓康.金属电磁净化技术的一种革命性方法-电磁净化法[A].Baotou,1999
[6] Park J P;Sassa K;Asai S .Moving behavior of inclusions by electromagntic force imposed in the horizontal direction[J].CAMP-ISIJ,1993,6:2.
[7] Park J P;Tanaka Y;Sassa K.Elimination of tramp elements in molten metal using electromagnetic force[A].Nagoya,1994
[8] Taniguchi S;Brimacombe J J .Application of pinch force to the separation of inclusion particles from liquid steel[J].ISIJ International,1994,34(09):722-731.
[9] Taniguchi S;Brimacombe J J .Numerical analysis on the separation of inclusion particles by pinch force from liquid steel flowing in a rectangular pipe[J].Tetsu To Hagane-Journal of The Iron and Steel Institute of Japan,1994,80(04):58-63.
[10] Taniguchi S;Brimacombe J J .Separation of nonmetallic inclusions from liquid metal by pinch force[J].CAMP-ISIJ,1993,6:3.
[11] Taniguchi S. .New advancement in electromagnetic processing of materials[J].材料とプロセス,2000(1):74-0.
[12] Tanaka Y;Sassa K;Iwai K et al.Seperation of nonmetallic inclusions from molten metal using travelling magnetic field[J].Tetsu To Hagane-Journal of The Iron and Steel Institute of Japan,1995,81(12):12-17.
[13] 行波磁场净化液态金属的电磁力参数[J].中国有色金属学报,1999(03):482.
[14] ZHONG Yun-bo,REN Zhong-ming,DENG Kang,JIANG Guo-chang,XU Kuang-di.Separation of inclusions from liquid metal contained in a triangle/square pipe by travelling magnetic field[J].中国有色金属学会会刊(英文版),2000(02):240-245.
[15] 任忠鸣;钟云波 .旋转磁场净化液态金属装置[P].CN:99226253.5,1999.
[16] Sassa K;Yamao H;Asai S.Separation of inclusions in liquid metal using alternating magnetic field[A].Paris,1997:157-161.
[17] Yamao F;Sassa K;Iwai K et al.Seperation of inclusions in liquid metal using fixed alternating magnetic field[J].Tetsu To Hagane-Journal of The Iron and Steel Institute of Japan,1997,83(01):30-35.
[18] Eault L;Alibert M;Dubus A .In-situ study of liquid Al-Mg alloys oxidation[J].Materials Science Forum,1996,217-222:165-170.
[19] Mortensen A;Jin I .Solidification processing of metal matrix composites[J].International Materials Reviews,1992,37:101.
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