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Average carbon content change during gas-solid decarburization of 2 mm iron sheet with a high carbon content

机译:2 mm铁板的气体固体脱碳过程中平均碳含量变化,具有高碳含量

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摘要

The average carbon content after decarburization is an important criterion in judging the feasibility of the solid-state steelmaking process. To investigate the change mechanism of the average carbon content, the gas-solid decarburization of 2 mm iron sheet in weak oxidizing atmosphere (Ar + H-2 + H2O) at 1293, 1353, and 1413 K is studied. The influences of decarburization time and temperature are considered. Increasing both the temperature and time can enhance decarburization. The gas-solid decarburization reaction of 2 mm iron sheets is nearly a first-order reaction, and the activation energy of the decarburization reaction is 144.9 kJ/mol. It was found that the diffusion of carbon from the interior of the sheet to the reaction interface is the rate-controlling step. The relationship between decarburization time, temperature, and average carbon content is precisely described by an empirical formula. A new segmented heating method is developed. With this new method, 0.28 mass% C sheets can be produced from 4.15 mass% C sheets with thickness of 2 mm in 70 min.
机译:脱碳后的平均碳含量是判断固态炼钢过程的可行性的重要标准。为了研究平均碳含量的变化机理,研究了1293,1353和1413K的弱氧化气氛(Ar + H-2 + H 2 O)中2mm铁片的气体固体脱碳。考虑脱碳时间和温度的影响。增加温度和时间可以增强脱碳。 2mm铁片的气体固体脱碳反应几乎是一阶反应,脱碳反应的活化能是144.9kJ / mol。发现碳从片材的内部扩散到反应界面是速率控制步骤。脱碳时间,温度和平均碳含量之间的关系精确地通过经验公式描述。开发了新的分段加热方法。通过这种新方法,0.28质量%C片材可以由4.15质量%C片生产,厚度为70分钟。

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