长江科学院院报 ›› 2021, Vol. 38 ›› Issue (11): 142-148.DOI: 10.11988/ckyyb.20200729

• 水工结构与材料 • 上一篇    下一篇

钢渣细骨料安定性测试方法适应性及评价指标研究

陈霞1,2, 高志扬1,2, 彭子凌1,2, 周显1,2   

  1. 1.长江科学院 材料与结构研究所,武汉 430010;
    2.长江科学院 国家大坝安全工程技术研究中心,武汉 430010
  • 收稿日期:2020-07-21 修回日期:2020-11-10 出版日期:2021-11-01 发布日期:2021-11-08
  • 作者简介:陈 霞(1983-),女,湖北监利人,正高级工程师,博士,从事固体废弃物处理与资源化利用、水泥基材料基础理论与应用研究等工作。E-mail:chenxia1017@126.com
  • 基金资助:
    中央公益性科研院所基本业务费项目(CKSF2021430、CKSF2021437、CKSF2021483)

Stability Testing Methods for Steel Slag Used as Fine Aggregates: Adaptability and Assessment

CHEN Xia1,2, GAO Zhi-yang1,2, PENG Zi-ling1,2, ZHOU Xian1,2   

  1. 1. Material and Structure Department, Yangtze River Scientific Research Institute, Wuhan 430010, China;
    2. National Research Center on Dam Safety Engineering, Wuhan 430010, China
  • Received:2020-07-21 Revised:2020-11-10 Online:2021-11-01 Published:2021-11-08

摘要: 钢渣的安定性是制约其建材资源化利用的关键技术瓶颈。围绕钢渣用作细骨料的安定性,对滚筒、热泼和热焖工艺获得的钢渣分别采用以压蒸膨胀率、压蒸粉化率、分级压蒸膨胀率及高温水养护膨胀率等作为表征的指标检验评价其安定性及差异,并进行对比分析。试验结果表明:MR-热泼渣和ER-热焖渣分别采用压蒸膨胀率与压蒸粉化率方法判定其安定性时,判定结果互相矛盾;压蒸粉化率与压蒸前后f-CaO、MgO含量变化以及MgO/Fe2O3的质量比之间呈良好相关性,应重视钢渣内残留f-CaO与f-MgO不均匀分布产生的危害;分级压蒸会加剧MR-滚筒渣的体积失稳,使用时应优先选择连续级配;基于测试结果敏感性及应用安全性,建议采用压蒸膨胀率法检验不同类型钢渣细骨料的安定性,结合“压蒸膨胀率”和“外观完整性”双控指标综合评价钢渣用作细骨料的安定性。

关键词: 钢渣, 细骨料, 安定性, 测试方法, 评价指标

Abstract: The stability of steel slag is the key technical bottleneck restricting its utilization as building material. We compared the stability of rotating furnace slag (RFS),Hot Splashing Slag(HSS),and Stewed Detained Slag(SDS) obtained by different testing methods—autoclave expansion rate test, autoclave pulverization rate test,grading autoclave expansion rate test,as well as hot water curing under different temperatures. Our findings revealed that the stability results of MR-HSS and ER-SDS obtained by autoclave expansion rate method and autoclave pulverization rate method were contradictory. The autoclave pulverization rate was closely related to the change of f-CaO, MgO content, and MgO/Fe2O3 mass ratio before and after autoclave test. The uneven distribution of f-CaO and f-MgO presented high potential risk to the stability based on the relationship between stability and chemical components changes before and after autoclave testing. The volume instability of MR-RFS would be aggravated when steel slag was grouped into discontinuous grades; as a result, steel slag with consistent gradation should be preferred for use as fine aggregates. Therefore, in consideration of the sensitivity of testing results and the safety of utilization, we suggest to adopt the autoclave expansion rate testing method in testing the stability of steel slag used as fine aggregates. In addition, the autoclave expansion rate in association with appearance integrity can be taken as comprehensive evaluation indicators.

Key words: steel slag, fine aggregate, stability, testing, assessment

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