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板坯行波电磁搅拌器磁场分布规律的实验研究
引用本文:麻永林,宿国栋,黄海娥,刘洪潇,胡慧明,王国栋.板坯行波电磁搅拌器磁场分布规律的实验研究[J].包头钢铁学院学报,2005,24(3):224-226.
作者姓名:麻永林  宿国栋  黄海娥  刘洪潇  胡慧明  王国栋
作者单位:[1]东北大学,轧制与连轧自动化国家重点实验室,辽宁沈阳110006 [2]内蒙古科技大学,材料与冶金学院,内蒙古包头014010
基金项目:教育部科学技术研究项目 , 教育部春晖计划项目
摘    要:根据板坯行波电磁搅拌器的特点,在实验室采用三维高斯计对行波磁场电磁搅拌器的磁场变化规律进行了测量,得到大量的实测数据.研究分析表明,对于所研究的行波磁场电磁搅拌器,频率、电流强度以及磁极间距离对磁感应强度影响很大,其中,频率增大,磁感应强度有所降低,电流增大,磁感应强度线性增大,而磁极间的距离对磁感应强度也有明显的影响,这些结果为进一步研究行波磁场电磁搅拌器的变化规律积累了数据.

关 键 词:板坯  行波磁场  电磁  板坯  行波磁场  电磁搅拌器  分布规律  实验室  研究  stirrer  electromagnetic  base  board  wave  magnetic  field  study  实测数据  积累  结果  强度影响  线性  电流强度  磁感应
文章编号:1004-9762(2005)03-0224-03
收稿时间:2005-06-11
修稿时间:2005年6月11日

Experiment study of magnetic field wave with the board base electromagnetic stirrer
MA Yong-lin,SU Guo-dong,HUANG Hai-e,LIU Hong-xiao,HU Hui-ming,WANG Guo-dong.Experiment study of magnetic field wave with the board base electromagnetic stirrer[J].Journal of Baotou University of Iron and Steel Technology,2005,24(3):224-226.
Authors:MA Yong-lin  SU Guo-dong  HUANG Hai-e  LIU Hong-xiao  HU Hui-ming  WANG Guo-dong
Affiliation:1. RAL, Northeast University, Shenyang 110006, China ; 2. Material and Metallurgy School, UST Inner Mongolia, Baotou 014010, China
Abstract:The law of magnetic field change of travelling wave electromagnetic blender with three-dimensional Gauss meter was measured according to the characteristics of strip travelling wave electromagnetic blender, and lots of measured data were obtained. Researches and analyses indicate that frequency, current intensity and distance between magnetic poles greatly affect the magnetic induction for the travelling wave electromagnetic blender researched herein. Magnetic induction drops when frequency increases,while the linearity of magnetic induction increases accordingly with increasing the current. The distance between magnetic poles can also influence the magnetic induction. These results provide us with data for fu/ther researching the law of magnetic field change of travelling wave electromagnetic blender.
Keywords:strip  traveling wave magnetic field  electromagnetism
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