欢迎登录材料期刊网

材料期刊网

高级检索

控制并得到合适的凝固组织一直是材料工作者研究的方向.近年来人们对金属在磁场中的凝固做了一系列研究,取得了一定成果.主要介绍了磁场对金属凝固过程的影响,包括磁场驱动流体流动、控制宏观偏析、改善凝固组织等,并对未来的研究工作进行了展望.

参考文献

[1] 贾光霖;庞维成.电磁冶金原理与工艺[M].沈阳:东北大学出版社,2003
[2] 徐严谨,苏彦庆,骆良顺,刘江平,陈晖,郭景杰,傅恒志.磁场在材料凝固技术中的应用研究现状[J].稀有金属材料与工程,2012(03):548-553.
[3] 任忠鸣.强磁场下金属凝固研究进展[J].中国材料进展,2010(06):40-49.
[4] 白云峰,周月明,严彪,张永杰,徐达鸣,郭景杰,傅恒志.电磁场在材料凝固加工领域的应用[J].铸造,2008(02):105-109.
[5] Samanta D;Zabaras N .Control of Macrosegregation During the Solidification of Alloys Using Magnetic Fields[J].International Journal of Heat and Mass Transfer,2006,49:4850.
[6] 舒震 .电磁搅拌连铸钢坯中的"白亮带”问题[J].钢铁,1982,17(09):56.
[7] 陈雷;王中丙.电磁搅拌钢锭白亮带的研究[J].钢铁研究,1989(02):13.
[8] 张伟,亓显玲,余德河,李建省.连铸合金钢白亮带分析[J].莱钢科技,2006(01):35-37.
[9] 周国凡;薛正良.钢铁冶金实验[M].长沙:中南大学出版社,2008
[10] Flemings M.C.; .Our Understanding of Macrosegregation: Past and Present[J].ISIJ International,2000(9):833-841.
[11] 高义民.金属凝固原理[M].西安:西安交通大学出版社,2010
[12] Streat N;Weinberg F.Macrosegregation During Solidification Resulting From Density Differences in the Liquid[J].Metallurgical Transactions,1974(05):2539.
[13] deGROH H C;Laxmanan V .Bulk Undercooling,Nucleation,and Macrosegregation of Pb-Sn Alloys[J].Metallurgical Transcations,1988,19A:2651.
[14] Mehrabian R;Keane M;Flemings M C.Interdendritic Fluid Flow and Macrosegregation:Influence of Gravity[J].Metallurgical Transcations,1970(01):1209.
[15] 高宇,沈厚发,马长文,黄天佑.Pb-Sn合金凝固通道偏析的实验与数值模拟研究[J].铸造,2004(10):814-818.
[16] 沈厚发;方大成.钢锭中通道型(A、V)偏析的形成原因[J].钢铁研究,1995(04):45.
[17] 王玲,董建新.宏观偏析"黑斑"形成的Rayleigh判据及应用[J].兵器材料科学与工程,2006(04):59-64.
[18] Eckert S.;Gerbeth G. .Velocity measurements in liquid sodium by means of ultrasound Doppler velocimetry[J].Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow,2002(5):542-546.
[19] Eckert S;Willers B;Gerbeth G .Measurements of the Bulk Velocity During Solidification of Metallic Alloys[J].Metallurgical and Materials Transactions,2005,36A:267.
[20] Davidson P A;Hunt J C R .Swirling Recirculating Flow in a Liquid-Metal Column Generated by a Rotating Magnetic Field[J].Journal of Fluid Mechanics,1987,185:67.
[21] Gelfgat Y.;Li BQ.;Krumins J. .Effects of system parameters on MHD flows in rotating magnetic fields[J].Journal of Crystal Growth,2000(4):788-796.
[22] Grants I;Gerbeth G .Stability of melt flow due to a traveling magnetic field in a closed ampoule[J].Journal of Crystal Growth,2004(2/4):630-638.
[23] Rabiger, D;Eckert, S;Gerbeth, G .Measurements of an unsteady liquid metal flow during spin-up driven by a rotating magnetic field[J].Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow,2010(2):233-244.
[24] Cramer A;Pal J;Gerbeth G .Experimental investigation of a flow driven by a combination of a rotating and a traveling magnetic field[J].Physics of fluids,2007(11):18109-1-18109-4-0.
[25] 张琦,金俊泽,王同敏,李廷举,郭庆涛.金属液在旋转电磁搅拌器作用下的流动分析[J].中国有色金属学报,2007(01):98-104.
[26] 王芳,李宝宽,沈峰满.行波磁场作用下金属液体运动行为的数值模拟[J].东北大学学报(自然科学版),2009(08):1143-1146.
[27] Chen Zhao;Wen Xiao-li;Chen Chang-le .Fluid Flow and Microstructure Formation in a Rotating Magnetic Field During the Directional Solidification Process[J].Journal of Alloys and Compounds,2010,491:395.
[28] Wang Lei;Shen Jun;Qin Ling et al.The Effect of the Flow Driven by a Travelling Magnetic Field on Solidification Structure of Sn-Cd Peritectic Alloys[J].Journal of Crystal Growth,2012,356:26.
[29] 赵志浩,崔建忠,左玉波,张海涛,张北江.低频电磁水平半连续铸造中磁场的分布及其对宏观偏析的影响[J].铸造,2005(03):241-245.
[30] Wang Xiao-dong;Fautrelle Y;Etay J et al.A Periodically Reversed Flow Driven by a Modulated Traveling Magnetic Field:Part Ⅱ.Theoretical Model[J].Metallurgical and Materials Transactions,2009,40B:104.
[31] Wang Xiao-dong;Fautrelle Y;Etay J et al.A Periodically Reversed Flow Driven by a Modulated Traveling Magnetic Field:Part Ⅰ.Experiments With GaInSn[J].Metallurgical and Materials Transactions,2009,40B:82.
[32] 张北江,崔建忠,路贵民,张勤.外加电磁场对半连续铸造7075铝合金宏观偏析规律的影响[J].东北大学学报(自然科学版),2002(10):968-971.
[33] 曹志强;张丽萍;任忠鸣 等.电磁搅拌对灰铸铁宏观偏析的影响[J].金属学报,1992,28(02):80.
[34] Bergman M I;Fearn D R;Bloxham J .Suppression of Channel Convection in Solidifying Pb-Sn Alloys via an Applied Magnetic Field[J].Metallurgical and Materials Transactions,1999,30A:1809.
[35] Hainke M;Dagner J;Friedrich J et al.Macrosegregation in Binary AISi7 Alloys Resulting From the Application of Time Dependent Magnetic Fields[J].Microgravity Science and Technology,2005,16(01):59.
[36] 徐林;张金山;冯弘.水平旋转磁场对Sn-Sb二元合金偏析行为的影响[J].铸造设备研究,1996(03):3.
[37] 史俊芳,钟云波,任忠鸣,邓康,徐匡迪.强磁场对Cu-90%Pb合金凝固中比重偏析的影响[J].上海金属,2006(01):22-27.
[38] Zaidat K;Mangelinck-Noel N;Moreau R .Control of Melt Convection by a Travelling Magnetic Field During the Directional Solidification of Al-Ni Alloys[J].C R Mecanique,2007,335:330.
[39] Willers B;Eckert S;Nikrityuk P A et al.Efficient Melt Stirring Using Pulse Sequences of a Rotating Magnetic Field:Part Ⅱ.Application to.Solidification of Al-Si Alloys[J].Metallurgical and Materials Transactions,2008,39B:304.
[40] Wang Qiang;Lou Chang-sheng;Liu Tie et al.Effects of Uniform and Gradient High Magnetic Fields on Gravity Segregation in Aluminum Alloys[J].ISIJ International,2009,49(07):1094.
[41] 赵倩,房灿峰,侯晓光,韩彦博,张楠,张兴国.螺旋磁场对金属凝固过程中成分偏析的影响[J].特种铸造及有色合金,2011(06):495-500.
[42] 韩彦博,房灿峰,侯晓光,赵倩,张楠,张兴国.螺旋磁场对Sn-Sb合金成分偏析的影响[J].材料科学与工艺,2012(03):41-45,50.
[43] 张楠,赵倩,房灿峰,韩彦博,郭建设,侯晓光,邢清源,张兴国.螺旋磁场对Pb-Sn合金成分偏析的影响[J].中国有色金属学报,2012(06):1731-1737.
[44] 侯晓光,刘俊江.磁场搅拌方式对Sn-11%Sb合金凝固组织与偏析的影响[J].宝钢技术,2012(01):31-35.
[45] 王建元,陈长乐,孟小华.旋转磁场作用下Pb-Sn合金的凝固行为[J].材料导报,2006(03):152-154.
[46] 陈志,陈长乐,郝丽梅,洪振宇.旋转磁场对Bi-In合金凝固微观组织的影响[J].铸造,2007(10):1041-1043,1047.
[47] Vivès C .Electromagnetic Refining of Aluminum Alloys by the CREM Process:Part Ⅰ.Working Principle and Metallurgical Results[J].Metallurgical Transactions,1989,20B:623.
[48] Vivès C .Effects of Forced Electromagnetic Vibrations During the Solidification of Aluminum Alloys:Part Ⅰ.Solidification in the Presence of Crossed Alternating Electric Fields and Stationary Magnetic Fields[J].Metallurgical and Materials Transactions,1996,27B:445.
[49] Yoshiki Mizutani;Kenji Miwa;Takuya Tamura .Grain Refinement of Tough Pitch Copper by Electromagnetic Vibrations during Solidification[J].Materials transactions,2006(7):1793-1797.
[50] Sugiura K;Iwai K .Effect of operating parameters of an electromagnetic refining process on the solidified structure[J].ISIJ International,2004(8):1410-1415.
[51] 班春燕,刘恋,姜丹丹,巴启先,崔建忠.磁场对AZ80镁合金凝固组织的影响[J].材料热处理学报,2011(12):13-16.
[52] 陈志,陈长乐,陈翔燕,郝丽梅,洪振宇,王康宁.旋转磁场作用下的Pb-Sn合金组织研究[J].稀有金属材料与工程,2007(11):2011-2015.
[53] 孟晓华,陈长乐,洪振宇,王建元.旋转磁场对Pb-Sn合金凝固组织的影响[J].中国科学E辑,2006(03):243-250.
[54] 高文帅;陈长乐;陈钊 等.旋转磁场作用下Pb-Sn合金凝固组织[J].特种铸造及有色冶金,2008,28(03):176.
[55] 陈钊,陈长乐,温晓莉,朱建华,高文帅.旋转磁场强度和频率对Pb-Sn合金凝固组织的影响[J].科学通报,2008(08):882-887.
[56] Takagi Tsutomu;Iwai Kazuhiko;Asai Shigeo .Solidified Structure of Al Alloys by a Local Imposition of an Electromagnetic Oscillation Force[J].ISIJ International,2003,43(06):842.
[57] Hideyuki YASUDA;Tsutomu YOSHIMOTO;Takuya MIZUGUCHI;Yuki TAMURA;Tomoya NAGIRA;Masato YOSHIYA .Effect of the Melt Flow on the Solidified Structure of Middle Carbon Steel by Means of the Levitation Method Using Alternating and Static Magnetic Fields[J].ISIJ International,2007(4):612-618.
[58] Manabu USUI;Kazuhiko IWAI;Shigeo ASAI .Solidified Structure Comparison under Imposition of Oscillating Electromagnetic Force and DC Electromagnetic Force[J].ISIJ International,2007(11):1571-1574.
[59] Manabu USUI;Shigeo ASAI;Kazuhiko IWAI .Refinement of Solidified Structure using DC Electromagnetic Field[J].ISIJ International,2008(3):330-333.
[60] 李霞,杨效田.旋转磁场作用下Al-Cu合金的凝固特性[J].特种铸造及有色合金,2010(02):177-179.
[61] 杨效田,李霞,李锡恩,李文生.旋转磁场对Al-Cu合金凝固组织动力学行为的影响[J].有色金属,2011(01):14-18.
[62] 张伟强.金属电磁凝固原理与技术[M].北京:冶金工业出版社,2004
[63] 温晓莉,陈钊,陈长乐.磁场对Pb-Sn合金层状共晶生长的影响[J].铸造技术,2009(03):366-369.
[64] Min Zhi-xian;Shen Jun;Wang Ling-shui et al.Effect of Tracveling Magnetic Field on Dendrite Growth of Pb-Sn Alloy During Directional Solidification[J].Transactions of Nonferrous Metals Society of China,2011,21:1976.
[65] Kovacs J;Ronafoldi A;Kovacs A et al.Effect of the Rotating Magnetic Field on the Unidirectionally Solidified Macrostructure of Al6Si4Cu Alloy[J].TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS,2009,62(4-5):461.
[66] Kazuhiko IWAI;Takenori KOHAMA .Structure of S45C Steel Solidified under the Simultaneous Imposition of a Static Magnetic Field and a Direct Current[J].ISIJ International,2010(10):1357-1361.
[67] Kazuhiko IWAI;Takenori KOHAMA .Solidified Structure of S45C Steel with and without the Imposition of Electromagnetic Field[J].ISIJ International,2010(2):187-190.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%