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Effect of low frequency electromagnetic field on casting crack during DC casting superhigh strength aluminum alloy ingots

机译:低频电磁场对直流铸造超高强度铝合金铸锭铸造裂纹的影响

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摘要

Super high strength aluminum alloys are very important materials to the aerospace industries, however, cracks often occur during the DC casting process because of their high alloying element content. In this paper, a new low frequency electromagnetic casting (LFEC) process is used to study the possibility of eliminating casting cracks. The results show that a low frequency electromagnetic field eliminates cracks effectively. Under a low frequency electromagnetic field, temperature gradients in the mould are smaller, elements distributions are more uniform, sump depth is lower, and the grains are finer and have a more uniform spherical shape, so the internal street in ingots is lower than that of ingots processed by conventional DC casting. The LFEC decreases the grain size, constituent size, and area fraction of grain boundary eutectics, which is helpful for thinning the liquid film between grains and improving high-temperature plasticity and strength. These factors improve the cracking resistance of the alloy. Decreasing internal stress and increasing cracking resistance eliminate cracks in DC cast ingots.
机译:超高强度铝合金是航空航天工业中非常重要的材料,但是,由于其高合金元素含量,在直流铸造过程中经常会出现裂纹。在本文中,一种新的低频电磁铸造(LFEC)工艺用于研究消除铸造裂纹的可能性。结果表明,低频电磁场有效地消除了裂纹。在低频电磁场下,模具中的温度梯度较小,元素分布更均匀,集液槽深度更小,晶粒更细,球形更均匀,因此铸锭内部的内径低于铸坯的内径。常规直流铸造加工的铝锭。 LFEC减小了晶粒边界共晶的晶粒尺寸,成分尺寸和面积分数,有助于薄化晶粒间的液膜并提高高温可塑性和强度。这些因素改善了合金的抗龟裂性。减小内应力和增加抗裂性消除了DC铸锭的裂纹。

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