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铝硅合金电磁分离的理论求解及实验研究 被引量:1

Theoretical Solution and Experimental Study of Electromagnetic Separation for Al-Si Alloy
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摘要 从电磁分离理论的基本原理出发,建立电磁压力的数学表达式,研究了频率、电流、电导率等参数对电磁分离效果的影响。结果表明,频率、电流、电导率的增加都会导致电磁压力密度的增强。以ZL102铝硅合金为研究对象,在中频感应炉中进行了电磁分离试验,发现α-Al相和共晶硅相中硅元素含量边缘位置明显高于中心位置,边缘处共晶硅相破碎效果更显著。 Based on the principle of electromagnetic separation theory, the formulas of electromagnetic pressure were established. The influences of frequency, current density and electric conductivity on electromagnetic separation were investigated. The results indicate that the increase of frequency, current density and electric conductivity all can enhance the value of electromagnetic pressure. The electromagnetic separation experiment was carried out in medium frequency induction furnace on the subject of ZL102 Al-Si alloy. It can be found that the content of nonmetallic inclusions of Si in edge of α-Al phase and eutectic silicon phase is significantly higher than the center. In addition, the fragmentation effect of eutectic silicon phase in edge is more significant.
出处 《热加工工艺》 CSCD 北大核心 2013年第1期1-3,共3页 Hot Working Technology
基金 国家自然材料基金资助项目(51074091) 内蒙古自然科学基金资助项目(2010MS0107) 内蒙古科技大学创新基金资助项目(2011NCL041)
关键词 电磁分离 电磁压力 铝硅合金 electromagnetic separation electromagnetic pressure Al-Si alloy
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  • 1张红,姚凤元,纪红玲,顾允,钱洪卫,李俊.宝钢1550CGL锌锅运行状态的测试与分析[J].宝钢技术,2004(4):7-11. 被引量:6
  • 2李克,王俊,疏达,杜朝晖,孙宝德,周尧和.电磁分离法制备原位Al/Mg_2Si功能梯度复合材料[J].上海交通大学学报,2004,38(9):1433-1437. 被引量:16
  • 3金俊泽,曹志强,郑贤淑,张尚儒.电磁搅拌作用下形成分离共晶的研究[J].金属学报,1995,31(8). 被引量:11
  • 4Xu Zhenming, Li Tianxiao, Zhou Yaohe. An in situ surface composite produced by electromagnetic force [J].Materials Research Bulletin, 2000,35 : 2 331-2 336.
  • 5Changjiang Song, Zhenming Xu, Jianguo Li. Structure of in situ Al/Si functionally graded materials by electromagnetic separation method[J]. Materials & Design, 2007, 28: 1 012-1 015.
  • 6Chang-Jiang Song, Zhen-Ming Xu, Jian-Guo Li. Fabrication of in-situ Al/Mg2Si functionally graded materials by electromagnetic separation method[J].Composites: Part A, 2007,38:427-433.
  • 7Chang-Jiang Song, Zhen-Ming Xu, Gaofei Liang, et al. Study of in-situ AI/Mg2Si functionally graded materials by electromagnetic separation method [J]. Materials Science and Engineering A, 2006, 424: 6-16.
  • 8Changjiang Song, Zhenming Xu, Xiangyang liu, et al. In situ multi-layer functionally graded materials by Electromagnetic Separation method[J]. Materials Science and Engineering A, 2005, 393: 164-169.
  • 9Chang-Jiang Song, Zhen-Ming Xu, Jian-Guo Li. In-situ Al/Al3Ni functionally graded materials by electromagnetic separation method[J].Materials Science and Engineering A, 2007,445-446 : 148-154.
  • 10秦曾煌.电工学[M].北京:人民教育出版社,1983..

共引文献18

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  • 1Dumitrescu C, Groza I, Geage A. Contribution to the Modifica- tion of Aluminium-Silicon Complex Alloys for Car Pistons[J]. Metalergia, 1978,54(8) :473 - 478.
  • 2王祝堂.先进的废杂铝再生工艺[A].全国铜铝加工高新技术发布与研讨会铜加工高新技术文集[C],2001:156-161.
  • 3Yu Wenzhou, Ma Wenhui. The Research of Bubble Adsorption to Purify Silicon in the A1-Si System[J]. Materials Science Forum, 2013,750: 320 - 323.
  • 4LI Jing-wei, GUO Zhan-cheng, TANG Hui-qing. Si Purifica- tion by Solidification of A1-Si Melt with Super Gravity[J]. Transactions of Nonferrous Metals Society of China,2012,22: 968 - 963.
  • 5Tao D P, Yang B,Li D F. Prediction of the Thermodynamic Properties of Quinary Liquid Alloys by Modified Coordination Equation[J]. Fluid Phase Equilibria,2002,193:167.
  • 6Tao D P. Prediction of the Thermodynamic Properties of Qua- ternmy Liquid Alloys by Modified Coordination Equation[J]. Thermochimica Acta, 2002,383 : 45 - 51.
  • 7Tao D P. Prediction of Activities of all Components in the Lead-Free Solder Systems Bi In Sn and Bi In Sn Zn [J] .Journal of Alloys and Compounds,2008,457:124- 130.
  • 8Tao D P. Prediction of Thermodynamic Properties of the C- Fe-Co-Ni Solid Solutions by Binary Infinite Dilute Activity Coefficients [ J ]. Materials Science and Engineering, 2005, A390:70.
  • 9Tao D P. A New Model of Thermodynamics of Liquid Mix- tures and its Application to Liquid Alloys[ J]. Thermochimica Acta, 2000,363:105.
  • 10Tao D P. Prediction of the Coordination Numbers of Liquid Metals[ J]. Metallurgical and Materials Transacfiom, 2005, 36A(12) :3495 - 3497.

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