Computational method of continuous casting heats for the 304 stainless steel smelting flow in EAF by considering transport energy
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摘要: 分析了304不銹鋼電爐冶煉流程的傳擱時間和傳擱過程溫降情況,建立各個工序冶煉溫度制度與連澆爐數的關系,得知已有溫度制度下的連澆爐數僅為2爐,并以6爐連澆為例給出不同連澆爐數情況下溫度制度.通過計算流程中傳擱能耗,討論了連澆爐數與澆次總傳擱能耗和平均傳擱能耗的關系.提出了一種考慮傳擱能耗確定最優連澆爐數的方法.對比發現,當增加連澆爐數的傳擱能耗小于開澆一次耗材消耗的能耗時,最大連澆爐數為最為合理的連澆爐數.Abstract: Both transport time and temperature drop in transport processes were analyzed for the 304 stainless steel smelting flow in an electric arc furnace (EAF). The relationship between the temperature schedule in each process and continuous casting heats was established. In the existing temperature schedule the number of continuous casting heats was two. The temperature schedule with different continuous casting heats was presented by taking the process of six continuous casting heats for example. The transport energy during transport processes was calculated so as to analyze the relationship between continuous casting heats and different types of transport energy. A method for determining the optimum number of continuous casting heats was proposed which takes the transport energy into account. When the transport energy of increasing the continuous casting heats is less than the consumables' energy consumption of a new casting, the most number of continuous casting heats is the optimum.
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Key words:
- stainless steel /
- electric furnaces /
- steelmaking /
- energy consumption /
- production management /
- computational methods
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