Liyang

Professor    Supervisor of Doctorate Candidates    Supervisor of Master's Candidates

  • Name (Pinyin):liyang
  • E-Mail:
  • Education Level:With Certificate of Graduation for Doctorate Study
  • Gender:Male
  • Degree:博士
  • Professional Title:Professor
  • Status:Employed
  • Academic Titles:辽宁省特殊钢电冶金专业技术创新中心副主任、特殊钢先进冶金工艺与装备教育部工程研究中心副主任、东北大学冶金学院钢铁冶金第二党支部书记
  • Other Post:中国金属学会电冶金分会委员、全国工业电热设备标准化技术委员会副主任委员、国际电工委员会IEC TC27技术委员、中国电工技术学会电热专业委员会、沈阳市标准化专家、沈阳市专利侵权纠纷行政裁决技术调查官、沈阳市中级人民法院技术调查官
  • Alma Mater:东北大学

Paper Publications

Degradation mechanism of MgO-MgAl2O4 dual-phase refractory in contact with the automobile gear steel SCr420H under Si-Mn, Al and Ce-Al deoxidation

Release time:2024-12-07Hits:
  • First Author:
    孙萌
  • Correspondence Author:
    姜周华,李阳
  • Co author:
    陈常勇,马彦硕,马帅,李天赐,刘航
  • Journal:
    Ceramics International
  • Issue:
    13
  • Volume:
    49
  • Impact Factor:
    5.1
  • DOI number:
    10.1016/j.ceramint.2023.04.014
  • Affiliation of Author(s):
    东北大学冶金学院
  • Teaching and Research Group:
    绿色智能特殊钢冶金研究中心
  • Abstract:
    The current research, the degradation mechanism of MgO-MgAl2O4 dual-phase crucibles in contact with steel SCr420H with Si-Mn, Al, and Ce-Al deoxidation was investigated using a laboratory steelmaking experiment at 1873 K. The refractory interface in contact with the steel and inclusions was analysed using SEM and EPMA. In the case of Si-Mn deoxidation, the refractory's MgO phase was initially attacked by the dissolved Si, resulting in its transformation into the 2MgO-SiO2 phase, as confirmed by thermodynamic calculations. In the case of Al deoxidation, the reaction between the dissolved Al and the refractory had a significant effect on the increase in Mg concentration and MgAl2O4 inclusions. Refractory degradation was suppressed because the MgAl2O4 phase was an equilibrium phase based on thermodynamic consideration. The distribution of the MgAl2O4 phase in the refractory hindered the degradation reaction. The primary degradation mechanism in the case of Al deoxidation was steel penetration. In Ce-Al deoxidation, both Ce and Al were involved in refractory degradation. During this process, the MgO phase reacted with the dissolved Al, leading to its transformation into the MgAl2O4 phase, which was subsequently modified to the Ce-Al-O phase. Additionally, the MgAl2O4 phase was directly denatured into the Ce-Al-O phase.
  • Key Words:
    Corrosion;MgO;Interfaces
  • Indexed by:
    SCI
  • Note:
  • Discipline:
    Engineering
  • First-Level Discipline:
    Metallurgical Engineering
  • Page Number:
    21903-21915
  • ISSN No.:
    0272-8842
  • Translation or Not:
    no