Experimental and numerical study of calcium treatment of steel

被引:2
|
作者
Priyadarshi H. [1 ,2 ]
Boissiere B. [1 ]
Gardin P. [1 ]
Lehmann J. [1 ]
Silva L. [2 ]
机构
[1] ArcelorMittal, Maizières-lès-Metz
[2] École Centrale de Nantes, High Performance Computing Institute, Nantes
来源
Metallurgical Research and Technology | 2019年 / 116卷 / 05期
关键词
Calcium recovery; Calcium treatment; Convection; Dissolution; Mass transfer coefficient; Numerical modeling; Three phase flows;
D O I
10.1051/metal/2019007
中图分类号
学科分类号
摘要
This paper presents the laboratory scale experiments of calcium release in liquid steel and its modeling to better understand the mass transfer mechanism occurring during calcium treatment of steel. The calcium injections are performed at the liquid steel temperature below and above the boiling point of calcium (1484 °C). The corresponding yields (calcium recovery) are compared. The objective is to confront the experimental results with the results of the numerical model developed. Rise of calcium droplet in liquid steel is a three-phase problem (calcium droplet/liquid steel/air at the top) therefore an in-house scientific computational platform based on finite element methods is adapted to allow the modeling of such three-phase flows, which is validated using classical bench mark issued from literature. Mass transfer model is first validated by comparison with the analytical solution obtained for a motionless calcium droplet dissolving in stable liquid steel. This case study highlighted the importance and sensitivity on the prediction of concentration profile near the interface with numerical parameters, such as the mesh size. The case of mass transfer for a rising liquid droplet in a liquid matrix is also simulated. The accordance between the calculated Sherwood number and the Sherwood number found in the literature demonstrates the ability of the model to predict the mass transfer rate occurring at the interface. © EDP Sciences, 2019.
引用
收藏
相关论文
共 50 条
  • [1] EXPERIMENTAL AND NUMERICAL STUDY OF STAYED STEEL COLUMNS
    Pichal, R.
    Machacek, J.
    ENGINEERING MECHANICS 2017, 2017, : 774 - 777
  • [2] Experimental and numerical study of formability for EDD steel
    Kotkunde, Nitin
    Tunuguntla, Madhava Prasad
    Arote, Abhijeet
    Gupta, Amit Kumar
    MATERIALS TODAY-PROCEEDINGS, 2015, 2 (4-5) : 3770 - 3777
  • [3] Experimental and numerical study of CFRP reinforced steel beams
    Kypriadis, Minos E.
    Bilalis, Elias P.
    Tsouvalis, Nicholas G.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART M-JOURNAL OF ENGINEERING FOR THE MARITIME ENVIRONMENT, 2021, 235 (04) : 931 - 943
  • [4] Experimental and Numerical Study of Compression Zone in Steel Connections
    Bougoffa, Sabra
    Durif, Sébastien
    Mezghanni, Omar
    Bouchair, Abdelhamid
    Daoud, Atef
    ce/papers, 2021, 4 (2-4) : 850 - 856
  • [5] Experimental and numerical study of the ironing of stainless steel cups
    Delarbre, Daniel
    Montmitonnet, Pierre
    Journal of Materials Processing Technology, 1999, 91 (01): : 95 - 104
  • [6] On the experimental and numerical study of braced steel shear panels
    Akbari Hamed, Arash
    Mofid, Massood
    STRUCTURAL DESIGN OF TALL AND SPECIAL BUILDINGS, 2015, 24 (14): : 853 - 872
  • [7] Numerical and Experimental Study on the Residual Stresses in the Nitrided Steel
    X. Song
    Zhi-Qian Zhang
    S. Narayanaswamy
    Y. Z. Huang
    M. Zarinejad
    Journal of Materials Engineering and Performance, 2016, 25 : 4036 - 4045
  • [8] Experimental and Numerical Study of Expanded Aluminum and Steel Tubes
    Seibi, A. C.
    Barsoum, I.
    Molki, A.
    11TH INTERNATIONAL CONFERENCE ON THE MECHANICAL BEHAVIOR OF MATERIALS (ICM11), 2011, 10 : 3049 - 3055
  • [9] EXPERIMENTAL AND NUMERICAL STUDY OF SAND-STEEL INTERFACES
    TEJCHMAN, J
    WU, W
    INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 1995, 19 (08) : 513 - 536
  • [10] Numerical and Experimental Study on the Residual Stresses in the Nitrided Steel
    Song, X.
    Zhang, Zhi-Qian
    Narayanaswamy, S.
    Huang, Y. Z.
    Zarinejad, M.
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2016, 25 (09) : 4036 - 4045