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A New Approach in Solid State Steelmaking from Thin Cast Iron Sheets through Decarburization in CaCO3 Pack

机译:CaCO 3 装箱中脱碳从薄铸铁薄板进行固态炼钢的新方法

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In the solid state steelmaking process used in recent researches, pig iron was directly casted and then decarburized in an oxidizing atmosphere in order to eliminate or reduce the amount of carbon. In the present study, the feasibility of solid state steelmaking from cast iron was investigated using limestone. For this purpose, white cast iron specimens were buried in a chamber containing CaCO_(3) powder. Calcination of CaCO_(3) produces CO_(2) which participates in cast iron decarburization. In this technique, CO_(2) reacts with the carbon content of sample according to Boudouard reaction which results in carbon consumption. Furthermore, effects of temperature and time on the decarburization process were investigated. White cast iron samples were decarburized at temperatures of 800, 900 and 1000°C for 10 and 24 h in the CaCO_(3) powder pack. Very fine oxide layer was also observed to form during the decarburization process. Finally, samples were studied with optical microscope and SEM to measure the depth of the decarburized layer. However, secondary graphitization was occurred during the decarburization. Results showed that decarburization at 1000°C for 24 h has led to a completely decarburized layer of 420 μ m thickness. In agreement, carbon analysis showed the reduction of carbon content from 3.16 wt% to 0.012 wt%. Kinetic studies revealed activation energy of 125 KJ/mol for decarburization of white cast iron using CaCO_(3) powder pack.
机译:在最近的研究中使用的固态炼钢工艺中,将生铁直接铸造然后在氧化气氛中脱碳以消除或减少碳含量。在本研究中,使用石灰石研究了用铸铁进行固态炼钢的可行性。为此,将白色铸铁试样埋入含有CaCO_(3)粉末的室内。煅烧CaCO_(3)会生成CO_(2),该CO_(2)参与铸铁脱碳。在这种技术中,CO_(2)根据Boudouard反应与样品的碳含量反应,导致碳消耗。此外,研究了温度和时间对脱碳过程的影响。在CaCO_(3)粉末包装中,白色铸铁样品在800、900和1000°C的温度下脱碳10和24小时。还观察到在脱碳过程中形成了非常细的氧化物层。最后,用光学显微镜和SEM研究样品,以测量脱碳层的深度。但是,在脱碳过程中发生了二次石墨化。结果表明,在1000°C下脱碳24 h已导致厚度为420μm的完全脱碳层。一致地,碳分析显示碳含量从3.16重量%降低到0.012重量%。动力学研究表明,使用CaCO_(3)粉末包对白口铸铁进行脱碳的活化能为125 KJ / mol。

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