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Feasibility of Solid-state Steelmaking from Cast Iron-Decarburization of Rapidly Solidified Cast Iron-

机译:铸铁固态炼钢的快速凝固铸铁脱碳的可行性

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摘要

To meet the unprecedented demand of environmental issues and tightened production cost, steel industry must develop the disruptively innovative process. In the present study, totally new steelmaking process of 'Solid State Steelmaking' (or S3 process) without BOF process or liquid state oxidation process is proposed. The overview of the new process is as follows: (1) High carbon liquid iron from the ironmak ing processes is directly solidified by using a strip casting process to produce high carbon thin sheets. (2) Then, the produced cast iron sheet is decarburized by introducing oxidizing gas of H_2O or CO_2 in a con tinuous annealing line to produce low carbon steel sheets. The most beneficial aspect of the S~3 process is the elimination of several steps such as BOF, and secondary refinement processes and no formation of inclusions. To investigate the feasibility of S~3 process, the cast iron strips with various high carbon content produced by a centrifugal slip casting method are decarburized at 1 248 K and 1 373 K by using H_2O-H_2 gas mixture and its kinetics of the decarburization is investigated. In the decarburization process, the car bon diffusion through the decarburized austenite phase but not the decomposition of cementite is the rate controlling step of the decarburizing process. It is found that 0.5 mass% C sheets can be produced from 3.89 mass% C sheets with the thickness of 1.0 mm within 30 min at 1 373 K. Based on these results, S~3 process is confirmed to be feasible as an alternative low cost steelmaking process although the further improvement of the process will be necessary.
机译:为了满足对环境问题的空前需求和严格的生产成本,钢铁行业必须开发具有破坏性的创新工艺。在本研究中,提出了一种全新的“固态炼钢”(或S3工艺)炼钢工艺,而没有BOF工艺或液态氧化工艺。新工艺概述如下:(1)通过采用带钢铸造工艺直接生产来自炼铁工艺的高碳液态铁,以生产高碳薄板。 (2)然后,通过在连续的退火线中引入H_2O或CO_2的氧化气体使所生产的铸铁板脱碳,以生产低碳钢板。 S〜3工艺最有利的方面是消除了多个步骤,例如BOF,二次精炼工艺,并且没有形成夹杂物。为了研究S〜3工艺的可行性,采用H_2O-H_2混合气在1 248 K和1 373 K下对离心滑铸法生产的各种高碳含量铸铁带进行脱碳,其脱碳动力学为调查。在脱碳过程中,通过脱碳奥氏体相的碳扩散而不是渗碳体的分解是脱碳过程的速率控制步骤。结果发现,在1 373 K的30分钟内,可以由厚度为1.0 mm的3.89质量%C片生产0.5质量%C片。基于这些结果,S〜3工艺被认为是可行的替代低成本炼钢工艺,但该工艺需要进一步改进。

著录项

  • 来源
    《ISIJ international》 |2012年第1期|p.26-34|共9页
  • 作者单位

    Graduate Institute of Ferrous Technology (GIFT), Pohang University of Science and Technology (POSTECH), Hyoja-dong, Pohang, 790-784 South Korea;

    Graduate Institute of Ferrous Technology (GIFT), Pohang University of Science and Technology (POSTECH), Hyoja-dong, Pohang, 790-784 South Korea;

    Graduate Institute of Ferrous Technology (GIFT), Pohang University of Science and Technology (POSTECH), Hyoja-dong, Pohang, 790-784 South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solid-state steelmaking; strip casting; gaseous decarburization; white cast iron; carbon diffusion;

    机译:固态炼钢;带钢铸造;气态脱碳白口铸铁碳扩散;

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