Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中國有色金屬學報

ZHONGGUO YOUSEJINSHU XUEBAO

第24卷    第4期    總第181期    2014年4月

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文章編號:1004-0609(2014)04-1041-09
螺旋磁場電磁攪拌的數(shù)值模擬
趙 倩1,張興國1,張環(huán)月1,郭建設(shè)1,侯曉光2,房燦峰1

(1. 大連理工大學 材料科學與工程學院,大連 116024;
2. 寶鋼股份有限公司 設(shè)備研究所,上海 201900
)

摘 要: 建立描述不同磁場攪拌模式下的三維有限元模型,對比研究勵磁電流、攪拌頻率、攪拌器空間位置對磁感應(yīng)強度和電磁力的影響規(guī)律。結(jié)果表明:磁場模擬結(jié)果與實測數(shù)據(jù)吻合良好,磁感應(yīng)強度隨勵磁電流的增加呈線性增加;隨攪拌頻率的增加遞減,磁感應(yīng)強度沿中心軸線的分布表現(xiàn)為“中間大兩頭小”的特點,在徑向鑄坯邊緣處最大,向中心逐漸衰減。電磁力隨勵磁電流和攪拌頻率的增加而增大,中心軸線上底部電磁力值最大,并沿著軸線方向向上逐漸衰減;半徑方向上邊緣處的電磁力最大,向鑄坯心部方向有小幅度的衰減。不同磁場作用下的計算結(jié)果表明:攪拌參數(shù)相同時,螺旋磁場具有更強的磁感應(yīng)強度和電磁力,引起金屬熔體沿徑向和軸向上更大范圍的流動,更有利于改善合金成分分布和凝固組織。

 

關(guān)鍵字: 螺旋磁場;電磁攪拌;有限元分析;數(shù)值模擬;電磁力

Numerical simulation of spiral magnetic field of electromagnetic stirring
ZHAO Qian1, ZHANG Xing-guo1, ZHANG Huan-yue1, GUO Jian-she1, HOU Xiao-guang2, FANG Can-feng1

1. School of Materials Science and Engineering, Dalian University of Technology, Dalian 116024, China;
2. Equipment Institute, Baoshan Iron and Steel Company Limited, Shanghai 201900, China

Abstract:A new three-dimensional finite element model describing the electromagnetic field distribution in the new-type multi-functional electromagnetic stirrer with different magnetic fields was developed. The influences of the exciting current, stirring frequency and space position of the stirrer on the magnetic induction intensity and electromagnetic force were analyzed. The results show that the simulated magnetic field in the mold is in good agreement with the measured data in the real stirrer. The magnetic induction intensity increases linearly with increasing the exciting current, and decreases with increasing the current frequency. On the same height of mold, the magnetic induction intensity gradually increases from the center to the wall of mold and reaches its maximum in the middle position of the stirrer and becomes smaller towards the end of the mold. The electromagnetic force increases with the increase of the exciting current and the stirring frequency. And the electromagnetic force reaches the maximum value in the bottom and gradually attenuates from the bottom to the top along the axial direction. And along the radial direction, the electromagnetic force slightly decreases toward the center of the ingot. The calculation results under different magnetic fields show that, the spiral magnetic field has stronger magnetic induction intensity and electromagnetic force at the same stirring parameters, which causes intensive flow in a larger zone of the molten metal along the radial and axial direction, thus promotes the formation of ellipsoidal or equiaxed grains and reduces the macrosegregation.

 

Key words: spiral magnetic field; electromagnetic stirring; finite element analysis; numerical simulation; electromagnetic force

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

主管:中國科學技術(shù)協(xié)會 主辦:中國有色金屬學會 承辦:中南大學
湘ICP備09001153號 版權(quán)所有:《中國有色金屬學報》編輯部
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