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金属矿山 ›› 2026, Vol. 55 ›› Issue (6): 296-301.

• 矿物材料 • 上一篇    下一篇

铝硅比与熔剂氧化物协同调控高炉渣发泡陶瓷物相演变及性能研究

霍红英1,2 杨绍利1,2   

  1. 1.攀枝花学院钒钛学院,四川 攀枝花 617000;2.攀枝花学院钒钛关键战略材料四川省重点实验室,四川 攀枝花 617000
  • 出版日期:2026-07-15 发布日期:2026-07-21
  • 作者简介:霍红英(1984—),女,副教授,硕士。
  • 基金资助:
    四川省钒钛材料工程技术研究中心项目(编号:2024FTGC09);钒钛材料及复合技术四川省高等学校重点实验室项目(编号: 25FTCL0003)。

Study on Synergistic Regulation of Al2 O3 /SiO2 Ratio and Fluxing Oxides on Phase Evolution and Properties of Blast Furnace Slag-Based Foam Ceramics

HUO Hongying1,2 YANG Shaoli1,2   

  1. (1.College of Vanadium and Titanium,Panzhihua University,Panzhihua 617000,China;2.Vanadium and Titanium Critical Strategic Materials Key Laboratory of Sichuan Province,Panzhihua University,Panzhihua 617000,China)
  • Online:2026-07-15 Published:2026-07-21

摘要: 为解决高炉渣堆存引发的环境问题,以攀钢高炉渣为主要原料,系统研究了Al2 O3 与SiO2 之比、Na2 O 及CaO含量对高炉渣基发泡陶瓷物相组成、微观结构及性能的影响规律。采用 X 射线衍射(XRD)、扫描电子显微镜 (SEM)等表征手段,结合力学性能、气孔率及导热系数测试,分析了各组分对陶瓷性能的调控机制。研究结果表明: 提高Al2 O3 与SiO2 之比可驱动物相由石英、榍石向氧化铝、钙钛矿转变,显著提升材料的密度、强度与导热性能;当 Na2 O含量为1.75%时,陶瓷形成均匀的气孔结构,过量Na2 O则生成钠长石(NaAlSi3 O8 )相;CaO 虽能促进烧结,但含 量过高会抑制钙长石结晶,导致性能下降。在优化配方(高炉渣与硼酸质量比50∶10;Al2 O3 与SiO2 质量比为0.5; Na2 O含量为1.75%)下,制备的发泡保温陶瓷抗折强度为4 MPa,导热系数为0.079 5 W/(m·K),体积密度为2.22 g/cm3,吸水率为3.7%,各项性能均满足《建筑用发泡陶瓷保温板》(JG/T 511—2017)的要求。

关键词: 高炉渣 , 发泡陶瓷 , 铝硅比 , 导热系数

Abstract: To address the environmental issues caused by the accumulation of blast furnace slag,this study systematically investigated the effects of alumina silica ratio,Na2 O content,and CaO content on the phase evolution,microstructure,and prop erties of blast furnace slag-based foam ceramics using Pansteel blast furnace slag as the main raw material.The regulation mechanisms of each component on the ceramic properties were analyzed through X-ray diffraction (XRD),scanning electron microscopy (SEM),combined with mechanical property,porosity,and thermal conductivity tests.The results show that increas ing the alumina silica ratio drives the phase transformation from quartz and sphene to alumina and perovskite,significantly en hancing the density,strength,and thermal conductivity of the material.When the Na2 O content reaches 1.75%,the ceramic ex hibits a uniform pore structure,while excessive Na2 O leads to the formation of albite (NaAlSi3 O8 ).Although CaO promotes sintering,excessively high CaO content inhibits the crystallization of anorthite,resulting in deteriorated properties.Under the optimized formulation (mass ratio of blast furnace slag and boric acid of 50∶10,alumina silica ratio of 0.5,Na2 O content of 1.75%),the prepared foam insulation ceramic achieves a flexural strength of 4 MPa,thermal conductivity of 0. 079 5 W/(m·K),bulk density of 2.22 g/cm3,and water absorption of 3.7%,all of which meet the requirements of the standard "Foam Ceramic Insulation Panel for Building" (JG/T 511—2017).

Key words: blast furnace slag,foam ceramics,alumina silica ratio,thermal conductivity

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