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EVOLUTION OF THE MEGA-SCALE IN FERRO-ALLOY ELECTRIC FURNACE SMELTING

机译:铁合合金电炉冶炼中巨型尺度的演变

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摘要

The historical progression in installed electric furnace smelting capacity of some 1650 calcium, chromium, manganese, nickel and silicon ferro-alloys furnaces is reviewed. Key increases in the inherent installed electrical capacity, often achieved through uprating furnaces, are identified.Possible factors facilitating such advances are explored, including: specific process engineering and pyrometallurgical enhancements (e.g., improved control over the consistency, size and chemical form of raw materials, extents of preheating and pre-reduction delivered into the furnace; and patterns of feed distribution); furnace electrical configuration (AC or DC; immersed, submerged-, shielded- or open-arc); form of electrode (graphite, self-baking or composite); furnace configuration (circular or rectangular; closed or open and 1-, 3- or 6-electrodes); better engineering and equipment designs (e.g., high-intensity cooling) and state of furnace electrical and metallurgical control systems. A view is presented on the prevailing state of evolution of the Mega-scale in ferro-alloy smelting and opportunities for still further improvements.
机译:综述了大约1650钙,铬,锰,镍和硅铁合金炉的安装电炉冶炼能力的历史进展。确定了固有安装电容的键,通常通过起孔炉实现。探讨了促进此类进步的促进因素,包括:具体的工艺工程和高温冶金增强(例如,改善对原材料的一致性,尺寸和化学形式的控制,预热和预换档进入炉子的范围;和饲料分布的模式);炉电气配置(AC或DC;浸没,浸没,屏蔽或开弧);电极形式(石墨,自烘烤或复合材料);炉子配置(圆形或矩形;闭合或打开和1-,3-或6个电极);更好的工程和设备设计(例如,高强度冷却)和炉电气和冶金控制系统的状态。在铁合金冶炼和仍然进一步改进的机会中展示了兆级的现行状态的普遍存在的演变状态。

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