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Simulation of electro-slag re-melting process of 120 t large ingot for nuclear power station and its application

机译:核电站120 t大锭电渣重熔过程的模拟及其应用

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Further research on metallic materials for the super critical rotator and the main pipe line of a nuclear power station is very important for developing the nuclear power industry. In this study, the mathematical model for 120 t large ingot was established, and the computer program ESR3D was developed to simulate the whole electro-slag re-melting (ESR) process. This includes the electrode melting, metallic droplet falling, metal pool forming, metal pool and slag pool rising and moving, installation of top crystallizer, ingot solidifying, etc. The simulated average melting rate of the electrode was in good agreement with that in practical production. The optimized parameters were used to produce 80-120 t large ingots, and the quality of the ingots satisfied the specifications of nuclear power and the super critical generating unit.
机译:进一步研究超临界转子和核电站主管线的金属材料对发展核电工业具有重要意义。在这项研究中,建立了120吨大钢锭的数学模型,并开发了计算机程序ESR3D以模拟整个电渣重熔(ESR)过程。其中包括电极熔化,金属滴落落,金属池形成,金属池和渣池上升和移动,顶部结晶器的安装,铸锭凝固等。电极的模拟平均熔化速率与实际生产中的平均熔化速率非常吻合。优化后的参数用于生产80-120吨大锭,锭的质量满足核电和超临界发电机组的规格。

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