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首页> 外文期刊>Advanced Science Letters >Effects of Low Frequency Electromagnetic Field of Multi-Physical Fields During DC Casting of 7XXX Aluminum Alloys
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Effects of Low Frequency Electromagnetic Field of Multi-Physical Fields During DC Casting of 7XXX Aluminum Alloys

机译:直流铸造7XXX铝合金时多物理场低频电磁场的影响

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摘要

A comprehensive mathematical model has been developed to describe the interaction of the multiple physics fields during the conventional DC casting and LFEC (low frequency electromagnetic casting) process. The model is based on a combination of the commercial finite element package ANSYS and the commercial finite volume package FLUENT, with the former for the calculation of the electromagnetic field and the latter for the calculation of the magnetic driven fluid flow, heat transfer and solidification. Moreover, the model has been verified against the temperature measurements obtained from two 7XXX aluminum alloy billets of 200 mm diameter, cast during the conventional DC casting and the LFEC casting processes. There was a good agreement between the calculated results and the measured results. Further, comparison of the calculated results during the LFEC process with that during the conventional DC casting process indicated that velocity patterns, temperature profiles and the sump depth are strongly modified by the application of a low frequency electromagnetic field during the DC casting.
机译:已经开发了一个综合的数学模型来描述常规DC铸造和LFEC(低频电磁铸造)过程中多个物理场的相互作用。该模型基于商业有限元软件包ANSYS和商业有限体积软件包FLUENT的组合,前者用于计算电磁场,后者用于计算磁力驱动的流体流动,传热和凝固。此外,该模型已经针对在常规DC铸造和LFEC铸造过程中从两个直径为200 mm的7XXX铝合金坯料获得的温度测量值进行了验证。计算结果与测量结果之间有很好的一致性。此外,将LFEC过程中的计算结果与常规DC铸造过程中的计算结果进行比较表明,通过在DC铸造过程中施加低频电磁场,可以大大改变速度模式,温度曲线和集水坑深度。

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