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Analysis of Power Supply Parameter Control and Its Influence Factors for Electromagnetic Induction-controlled Automated Steel-teeming System

机译:电磁感应控制自动涂钢系统的电源参数控制及其影响因素分析

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The steel-teeming time, which is directly affected by the output parameters of the power supply, is one of the most important technical indicators of an electromagnetic steel-teeming system. Therefore, this work employs numerical simulation to build a power supply output parameter model for the electromagnetic steel-teeming system of a 110 t ladle of a steel mill. The correctness of the model is verified through a high-temperature offline test. The results of the simulation correspond closely to those of the offline test. Furthermore, the best combination of power supply output parameters was found to be: frequency 35.3 kHz, output current 152.9 A, output power 40.1 kW, and steel-teeming time 113 s. The factors influencing these parameters and the teeming time are summarized as follows: the magnitude of each power supply output parameter (i) increases, (ii) decreases initially then increases, (iii) decreases slightly, (iv) decreases initially then increases, and (v) decreases initially, increases rapidly, and then changes gradually with increasing (i) diameter of the liquid steel channel, (ii) length of the liquid steel channel, (iii) static pressure of the ladle, (iv) steel-teeming temperature, and (v) standing time, respectively: larger power supply output parameters are needed for the horn-shaped (as shown in Fig. 3) liquid steel channel than for the cylindrical channel. This article will serve as a theoretical reference for reducing the steel-teeming time of the electromagnetic steel-teeming system.
机译:直接受电源输出参数影响的镀钢时间是电磁镀钢系统最重要的技术指标之一。因此,这项工作采用数值模拟为钢厂的110 t钢包电磁浇铸系统建立了电源输出参数模型。通过高温离线测试验证了模型的正确性。仿真结果与离线测试的结果非常接近。此外,发现电源输出参数的最佳组合为:频率35.3 kHz,输出电流152.9 A,输出功率40.1 kW和钢质充填时间113 s。影响这些参数和准备时间的因素总结如下:每个电源输出参数的大小(i)增大,(ii)先减小然后增大,(iii)稍微减小,(iv)先减小然后增大,并且(v)开始减小,然后迅速增加,然后随着(i)液态钢槽的直径增加,(ii)液态钢槽的长度,(iii)钢包的静压力,(iv)浇注钢水而逐渐变化。温度和(v)停留时间:与圆形通道相比,喇叭形(如图3所示)液态钢通道需要更大的电源输出参数。本文将为减少电磁钢浇注系统的钢浇注时间提供理论参考。

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