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電磁場(chǎng)施加方式對(duì)半連續(xù)鑄造鎂合金錠坯組織與性能的影響
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國(guó)家“十一五”支撐計(jì)劃重點(diǎn)項(xiàng)目(2006BAE04B01-5);國(guó)家自然科學(xué)基金(50574028);國(guó)家重點(diǎn)基礎(chǔ)研究發(fā)展計(jì)劃(“973”)項(xiàng)目(2007CB613701,2007CB613702)


Effect of Different Electromagnetic Field Application Ways on Microstructures and Mechanical Properties of Semi-Continuous Cast Magnesium Alloy Billets
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    摘要:

    采用不同電磁場(chǎng)施加方式和半連續(xù)鑄造制備Φ200 mm AZ31鎂合金錠坯。研究電磁場(chǎng)施加方式對(duì)AZ31錠坯微觀組織和力學(xué)性能的影響。結(jié)果表明,與常規(guī)直接水冷半連鑄錠坯相比,單感應(yīng)線圈通電(LFEC)或兩組感應(yīng)線圈同時(shí)通電(LFEVC)來(lái)鑄造錠坯時(shí),組織細(xì)化,第二相(β-Mg17Al12)變得細(xì)小彌散,錠坯橫截面邊部與中心部位晶粒大小差別明顯降低,LFEVC鑄造的錠坯比LFEC鑄造的更為明顯;兩種電磁場(chǎng)施加方式均有利于主合金元素在錠坯中均勻分布,宏觀偏析在很大程度上得到抑制;兩種電磁場(chǎng)施加方式均有利于錠坯的

    Abstract:

    Using different electromagnetic fields application ways, AZ31 magnesium alloy was semi-continuously cast into billets with diameter of 200 mm. The effects of the different electromagnetic fields application ways on the microstructures and mechanical properties of AZ31 billets were investigated. The results show that compared with the conventional direct-chill semi-continuous cast billets, the microstructures in the entire cross section of the AZ31 billets cast in the single alternating magnetic field or the combination of alternating magnetic field and stationary magnetic field are significantly refined, the β-Mg17Al12 phases become fine and dispersive, the difference of the grain size between the border and center of the billet is reduced, and the difference of the microstructures in the billet cast in the combination of alternating magnetic field and stationary magnetic field is smaller than that of the single alternating magnetic field casting. The two electromagnetic field application ways are all beneficial to the homogeneous distributing of the alloy main elements in the cast billets, to great suppressing of macro-segregation and to improving of the mechanical properties of the billets. Compared with the properties of the conventional cast billets, the yield strength and the ultimate tensile strength of the billet cast in the electromagnetic field are increased by 50~60 MPa and 40~50 MPa, respectively, and the elongation is doubled.

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張志強(qiáng),樂(lè)啟熾,崔建忠.電磁場(chǎng)施加方式對(duì)半連續(xù)鑄造鎂合金錠坯組織與性能的影響[J].稀有金屬材料與工程,2009,38(8):1467~1471.[Zhang Zhiqiang, Le Qichi, Cui Jianzhong. Effect of Different Electromagnetic Field Application Ways on Microstructures and Mechanical Properties of Semi-Continuous Cast Magnesium Alloy Billets[J]. Rare Metal Materials and Engineering,2009,38(8):1467~1471.]
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  • 收稿日期:2008-07-27
  • 最后修改日期:2009-03-11
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