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DC Casting of Large Sized Ingot of a High Strength 7xxx Alloy under the Influence of Electromagnetic Field

机译:电磁场影响下高强度7xxx合金大小铸锭的直流铸造

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Hot tearing and cold cracks are major defects during direct chill (DC) casting of large sized ingots of high strength aluminium alloys. In order to solve these problems, based on a low frequency electromagnetic casting (LFEC) process, a new technology, electromagnetic casting with the application of an air blade (EMA) was developed. In the present work, this new technology was used to prepare large sized AA7055 aluminium alloy ingots and the effects of the low frequency electromagnetic field and the air blade on macro-physical fields, microstructure and cracking are studied by numerical and experimental methods. The results show that applying an electromagnetic field can modify the flow direction, increase the velocity of melt flow and homogenize the distribution of temperature in the sump. Applying an air blade can homogenize the distribution of temperature and decrease the stress and strain in the solidified ingot. Furthermore, the microstructure of the ingot is refined remarkably and cracking is eliminated by simultaneously applying the electromagnetic field and the air blade during DC casting.
机译:热撕裂和冷裂纹在高强度铝合金大型锭的直接冷却(DC)铸造期间是主要的缺陷。为了解决这些问题,基于低频电磁铸造(LFEC)工艺,开发了一种新技术,电磁铸造的应用空气刀片(EMA)。在本作工作中,这种新技术用于制备大型AA7055铝合金锭及低频电磁场和空气叶片对宏观物质的影响,通过数值和实验方法研究了微观结构和开裂。结果表明,施加电磁场可以改变流动方向,增加熔体流动的速度,并均匀化水槽中的温度分布。施加空气刀片可以使温度的分布均匀化并降低固化锭中的应力和菌株。此外,铸锭的微观结构是显着的,并且通过在直流铸造期间同时施加电磁场和空气叶片来消除裂缝。

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