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现代矿业 ›› 2025, Vol. 41 ›› Issue (10): 148-157,162.

• 安全·环保 • 上一篇    下一篇

承德典型尾矿细泥低温烧成制备仿石陶瓷砖及其性能研究

白雅宁1 段雨朋1 柴宗册1 郑永超2 黄朝晖1 房明浩1 闵 鑫1   

  1. 1. 中国地质大学(北京)材料科学与工程学院;2. 北京建筑材料科学研究总院有限公司
  • 出版日期:2025-10-25 发布日期:2025-12-04

Study of Preparation of Stone-Imitation Ceramic Tiles by Low-temperature Firing of Fine Mud from Typical Tailings in Chengde and Their Properties

  1. 1. School of Materials Science and Technology,China University of Geosciences (Beijing); 2. Beijing Building Materials Science Research Institute Co.,Ltd.
  • Online:2025-10-25 Published:2025-12-04

摘要: 为推进尾矿资源高值化利用并开发低成本环保型仿石建材,以承德地区典型钒钛磁 铁矿尾矿、钼矿尾矿和萤石矿尾矿为主要原料,辅以废玻璃粉、Na₂CO₃、K₂CO₃等添加剂,系统研究了 颗粒级配与废玻璃粉掺量对低温(850 ℃)烧成仿石陶瓷材料结构与性能的影响。结果表明,当钒钛 磁铁矿尾矿中大颗粒(3~2 mm)、中颗粒(2~1 mm)、小颗粒(1~0.075 mm)与细泥(-0.075 mm)质量比 为 25∶10∶5∶20 时,试样内部颗粒堆积紧密,致密性最佳;废玻璃粉掺量为 10% 时,试样体积密度为 2.24 g/cm³,显气孔率为18.21%,吸水率为8.14%,抗折强度与抗压强度分别达13.29 MPa与29.80 MPa。 添加废玻璃粉,可以在烧结过程中形成较多玻璃相,有效促进传质与孔隙填充,显著提升材料性能。 研究结果为承德地区尾矿资源在仿石陶瓷材料中的规模化应用提供了可行的工艺路径与理论依据。

关键词: 钒钛磁铁矿尾矿, 钼尾矿, 萤石尾矿, 仿石陶瓷砖, 低温烧成

Abstract: In order to promote the high-value utilization of tailings resources and develop low-cost and environmentally friendly stone-like building materials,the typical vanadium-titanium magnetite tail⁃ ings,molybdenum tailings and fluorite tailings in Chengde area were used as the main raw materials,sup⁃ plemented by waste glass powder,Na2CO3,K2CO3 and other additives. The effects of particle gradation and waste glass powder content on the structure and properties of stone-like ceramic materials sintered at low temperature (850 °C ) were systematically studied. The results show that when the mass ratio of large perti⁃ cles(3~2 mm),middle particles(2~1 mm),small particles(1~0.075 mm) and fine mud(-0.075 mm) in vanadi⁃ um-titanium magnetite tailings is 25∶10∶5∶20,the internal particles of the sample are tightly packed and the compactness is the best. When the content of waste glass powder is 10%,the bulk density of the sample is 2.24 g/cm3 ,the apparent porosity is 18.21%,the water absorption is 8.14%,and the flexural strength and compressive strength are 13.29 MPa and 29.80 MPa,respectively. The addition of waste glass powder can form more glass phase during the sintering process,effectively promote mass transfer and pore filling,and sig⁃ nificantly improve material properties. The research results provide a feasible process path and theoretical ba⁃ sis for the large-scale application of tailings resources in Chengde area in imitation stone ceramic materials.