欢迎访问《金属矿山》杂志官方网站,今天是 分享到:
×

扫码分享

金属矿山 ›› 2022, Vol. 51 ›› Issue (07): 250-258.

• 综合利用 • 上一篇    下一篇

钢渣中非稳定性物质微观结构和性能的研究现状与展望

李恩硕1,2胡晨光1,2苏航1,2付佳伟1,2   

  1. 1.华北理工大学材料科学与工程学院,河北 唐山 063210;2.河北省无机非金属材料重点实验室,河北 唐山 063210
  • 出版日期:2022-07-15 发布日期:2022-07-31
  • 基金资助:
    河北省高端钢铁冶金联合基金项目(编号:E2020209010);唐山市科技计划项目(编号:19150225E)。

Research Status and Prospect of the Microstructure and Properties of Unstable Substance in Steel Slag

LI Enshuo1,2HU Chenguang1,2SU Hang1,2FU Jiawei1,2   

  1. 1.College of Materials Science and Engineering,North China University of Science and Technology,Tangshan 063210,China;2.Hebei Province Key Laboratory of Inorganic Nonmetallic Materials,Tangshan 063210,China
  • Online:2022-07-15 Published:2022-07-31

摘要: 钢渣中f-CaO、f-MgO和RO相等非稳定性物质是影响其安定性的主要物质,限制了钢渣大规模资源化利用。直接法研究表明:在中、高碱度钢渣中存在大量的大尺寸球形呈聚集分布的f-CaO,降低碱度和气淬、热焖等处理方式可降低f-CaO含量和颗粒尺寸;化学合成CaO法研究表明,Fe和Mn离子掺杂会使f-CaO致密度升高,晶粒尺寸减小,其中Mn2+对晶粒尺寸减小作用更强。进一步论述了钢渣中f-CaO水化特性、钢渣体积膨胀率,以及f-CaO水化膨胀的相应数学模型和钢渣集料体积膨胀演化模型,压蒸粉化率与单粒径钢渣膨胀力的相互关系等进展。之后,综述了钢渣中f-MgO和RO相微观结构和水化特性,结果表明:钢渣碱度增加可促进方镁石形成,有利于MnO固溶到MgO-FeO固溶体;RO相水化活性与碱度、KM=nMgO/n(FeO+MnO)直接相关,钢渣中RO相并非稳定,当KM≥1时可能造成稳定性破坏。最后,指出了今后的研究方向:在不同钢渣碱度、处理工艺、陈化时间、水化程度等因素下,非稳定性物质在钢渣中水化反应速度、离子传输过程、显微结构层面力的传导机制;钢渣中活性矿物水化产物离子对非稳定性物质水化过程影响及其与钢渣膨胀特性、长期稳定性的关系;钢渣稳定性的判定标准、评价方法与其长期稳定性的关系。

关键词: f-CaO, f-MgO, RO相, 微结构, 水化和膨胀性能

Abstract: The unstable substances such as f-CaO,f-MgO and RO phases in steel slag are the main substances affecting its stability,which limits the large-scale resource utilization of steel slag.The direct research method indicated that a large number of f-CaO with spherical large size and concentrated distribution,exist in the medium or high basicity steel slag,and f-CaO content will be decreased and particle size will be reduced by reducing steel slag basicity and utilizing the treatment methods of gas quenching,hot stuffy and so on.The chemical synthesis research method incicated that Fe and Mn ions doping in CaO by chemical synthesis will increase the compact density of f-CaO and reduce its grain size,and Mn2+ has a stronger reduction effect on the f-CaO grain size.Further,status in the hydration characteristics of f-CaO in steel slag,the volume expansion rate of steel slag,and the corresponding mathematical model of f-CaO hydration expansion and the volume expansion evolution model of steel slag aggregate,and then the relationship between the autoclave pulverization rate of steel slag and the expansion force of single steel slag particle and so on are introduced.Then,the microstructure and hydration characteristics of f-MgO and RO phases in steel slag are reviewed,and the results indicated that the increase of steel slag basicity can promote the formation of magnesia,and will be beneficial to the MnO incorporating into MgO-FeO solid solution;besides,the hydration activity of RO phases is directly related to basicity and KM=nMgO/n(FeO+MnO),RO phases in steel slag are unstable,therefore,when KM≥1,RO phases may cause stability damage.In the end,the future research direction is pointed out.Such as,under the different basicity,treatment process,aging time and hydration degree of steel slag,the hydration rate of unstable substances in steel slag,ions transport process and the force conduction mechanism at the microstructure level;and then effect of hydration product ions of active minerals in steel slag on the hydration process of unstable substances and its relationship with expansion characteristics or long-term stability of steel slag;besides,the criteria standard and evaluation methods of steel slag stability and its relationship with long-term stability.

Key words: f-CaO, f-MgO, RO phase, microstructure, hydration and expansion properties