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High-efficiency reduction behavior for the oxide scale formed on hot-rolled steel in a mixed atmosphere of hydrogen and argon

机译:在氢气和氩气中形成热轧钢上形成的氧化钢的高效减小行为

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摘要

In this study, a novel double-stage reduction method of "low temperature and high temperature" was proposed to improve the reaction efficiency of the hydrogen reduction technology of the oxide scale formed on hot-rolled steel. The reduction behavior of the oxide scale in 20 vol% H-2-Ar at various reduction methods was investigated in detail. The weight change of specimen under various reduction methods was measured by thermogravimetric analysis, and then the reduction degree and the reaction rate were calculated based on the measured value. Scanning electron microscopy was used to observe the surface and the cross-sectional morphologies of the oxide scale after the reduction reaction, and the mass percent of oxygen and iron in the cross-sectional reduction layer was measured by energy-dispersive spectroscopy. X-ray diffraction was applied to characterize the phase transformation of the oxide scale in the heating process, and the phase composition of the oxide scale and reduction layer. The experimental results indicated that the reduction degree and the reaction rate of the oxide scale during the double-stage reduction method increased significantly compared with the traditional single-stage reduction method in the range of 500-800 degrees C. The mechanism of the double-stage reduction method was discussed from two aspects of the phase transformation of the oxide scale and the restrictive link of the gas (H-2)-solid (Fe oxides) reduction reaction.
机译:在该研究中,提出了一种新的“低温和高温”的双级减少方法,提高了在热轧钢上形成的氧化渣缩放技术的反应效率。详细研究了在各种还原方法的20Vol%H-2-AR中在20体积%H-2-AR中的还原行为。通过热重分析测量各种还原方法下试样的重量变化,然后基于测量值计算还原程度和反应速率。扫描电子显微镜用于观察还原反应后的氧化物尺度的表面和横截面形态,并且通过能量分散光谱法测量横截面还原层中的氧气和铁的质量%。施加X射线衍射以表征加热过程中氧化物尺度的相变,以及氧化物尺度和还原层的相组成。实验结果表明,与500-800摄氏度范围内的传统单阶段减少方法相比,双阶段减少方法的氧化物尺度的还原程度和反应速率显着增加。双重的机制从氧化物尺度的相变的两个方面讨论了阶段还原方法,以及气体(H-2) - 溶解(Fe氧化物)还原反应的限制性链路。

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  • 来源
    《Journal of Materials Science》 |2020年第4期|共14页
  • 作者单位

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

    Northeastern Univ State Key Lab Rolling &

    Automat Shenyang 110819 Liaoning Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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