...
首页> 外文期刊>Journal of Achievements in Materials and Manufacturing Engineering >Investigation of electric potential difference during the top oxygen blowing in converter
【24h】

Investigation of electric potential difference during the top oxygen blowing in converter

机译:转炉中吹氧气电位差的研究

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Purpose: of this paper is to investigate the method of monitoring the course of the main oxidation-reduction processes and dust depression during the top oxygen blowing, based on the registration of natural electric potential difference on the lance-metal melt site during the blowing.Design/methodology/approach: Exchange processes in the converter bath take place with exchange of electrons and ions between metal and slag melts and gas phase. Since the processes are far from equilibrium, if to complete the circuit it will be possible to register the potential difference. Investigation was conducted in industrial converters of 60-t capacity at medium-carbon steel smelting. During the blowing the potential difference in the lance-metal bath site, the position of the lance and the dust level after gas cleaning were recorded.Findings: It was revealed that the level and sign of variation of the potential difference in the lance-metal bath site reflects the course of the main oxidation-reduction processes in the sub lance area during melting periods: oxidation of silicon, carbon and iron. The probable course of gaseous oxygen interaction with the metal fusion was discussed.Practical implications: In order to reduce the dust level without slowing down the carbon oxidation process, it was recommended to place the lance at a level corresponded to the potential difference during the active carbon oxidation period 30 % lower than 200-210 mV. The results of heats, conducted with the proposed mode of lance position, showed that the level of dust emission was 16% lower than on the comparative melting.Originality/value: The level and sign of the potential difference is possible to use to select the lance position during the blowing for longer slag foamed state without overflow that ensures a lower level of dust emission.
机译:目的:本文的研究是研究在吹入过程中枪支金属熔体部位的自然电势差的自然电位差异的登记期间监测主要氧化还原过程和灰尘抑制过程的方法。设计/方法/方法:转换器浴中的交换过程在金属和渣熔融和气相之间的电子和离子交换。由于该过程远离均衡,如果要完成电路,则可以注册电位差。调查在中碳钢冶炼的60吨产能的工业转化器中进行。在吹枪金属浴地点的潜在差异期间,记录了气体清洁后的喷枪和灰尘水平的位置。揭示了枪支金属潜在差异变化的水平和迹象浴地部位反映了熔化时期亚喷枪区域中主要氧化还原过程的过程:硅,碳和铁的氧化。讨论了与金属融合的气态氧相互作用的可能疗程。为了减少灰尘水平而不减速碳氧化过程,建议将矛杆放置在活性期间的电位差异相对应的水平。碳氧化期30%低于200-210 mV。用所提出的矛杆位置模式进行的热量结果表明,粉尘排放水平低于比较熔化的16%。 - 物流/值:潜在差异的水平和标志可以使用来选择在吹入较长的渣泡沫状态下的吹延位置,没有溢出,确保灰尘的较低水平。

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