首页> 外文会议>International Conference on Mechanical and Intelligent Manufacturing Technologies >Rationale for Thyristor Voltage Control of Electric Arc Furnace Transformers
【24h】

Rationale for Thyristor Voltage Control of Electric Arc Furnace Transformers

机译:电弧炉变压器晶闸管电压控制的理由

获取原文

摘要

We hereby review the inter-winding circuit of the transformer of EAF-180, a 180-ton electric arc furnace used by Magnitogorsk Iron and Steels Works (OJSC “MMK”). It is demonstrated that the furnace transformer is a sophisticated unit consisting of three electromagnetic units, i.e. the reactor with an iron core, the main transformer, and the boost transformer. In its turn, the main transformer is a three-winding transformer which can adjust the load voltage in the tertiary winding. We briefly describe the ArCOS electric process control system. The system controls the hydraulic electrode positioning system and switches the transformer and reactor load-voltage controllers (LVC) stage-by-stage. It is demonstrated that EAF might become less reliable and controllable due to low system performance. We present oscillograms of the arc current as affected by switching the transformer voltage stages; these oscillograms prove the long pauses occurring in each switching. This causes a loss of control over the melting parameters. Another drawback of the ArCOS actuators is its poor performance due to the inertia of the hydraulic electrode positioning system. We present oscillograms of transients occurring at different impedance controller configurations, which prove this finding. A promising area of research that we note consists in designing EAF transformer circuits with contactless voltage control. We analyze the proposed transformer circuit with thyristor voltage control in the tertiary winding, which uses the known concept of high-dynamics EAF voltage control. The paper presents the results of mathematical modeling, which prove that voltage is smoothly adjustable in the specified range. We assess the capabilities of this circuit with respect to adjusting the primary parametric coordinates for the specified power and voltage ratios of the main and the boost transformers. We propose further research into improving performance of EAF electrical parameter control systems.
机译:我们在此检查EAF-180变压器的绕组电路,由Magnitogorsk Iron和Steels Works(OJSC“MMK)使用的180吨电弧炉。结果证明炉变压器是由三个电磁单元组成的复杂单元,即用铁芯,主变压器和升压变压器的反应器。转弯时,主变压器是三绕组变压器,可以调节第三绕组中的负载电压。我们简要介绍了ArcOS电气过程控制系统。该系统控制液压电极定位系统,并切换变压器和电抗器负载电压控制器(LVC)逐步。据证明,由于低系统性能,EAF可能变得不那么可靠和可控。我们通过切换变压器电压级来呈现电弧电流的示波器;这些驱动图证明了每个交换中发生的长暂停。这导致对熔化参数的控制丧失。 ArcOS致动器的另一个缺点是由于液压电极定位系统的惯性而具有差的性能。我们在不同阻抗控制器配置中呈现出现的瞬态示波器,这证明了这一发现。我们注意的有希望的研究领域包括使用非接触式电压控制设计EAF变压器电路。我们在三级绕组中分析了具有晶闸管电压控制的所提出的变压器电路,该电压控制使用了高动态电弧电压控制的已知概念。本文介绍了数学建模的结果,证明电压在指定范围内平稳可调节。我们对该电路的能力来调整主要参数坐标,用于调整主和升压变压器的指定功率和电压比。我们提出进一步研究改善EAF电气参数控制系统的性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号