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金属矿山 ›› 2025, Vol. 54 ›› Issue (6): 302-309.

• 矿物材料 • 上一篇    下一篇

超细矿渣对水泥浆体流变及强度影响机理研究 

普少昌1,2,3   李  伟1,2,3   任  鹏1,2,3   王东宇1,2,3   刘玉凤1,2,3    

  1. 1. 煤炭科学技术研究院有限公司,北京 100013;2. 煤矿灾害防控全国重点实验室,北京 100013; 3. 北京市煤矿安全工程技术研究中心,北京 100013
  • 出版日期:2025-06-15 发布日期:2025-07-09
  • 作者简介:普少昌(1996—),男,助理工程师,硕士。
  • 基金资助:
    煤炭科学技术研究院有限公司科技发展基金项目(编号:2023CX-I-08)。 

Effect Mechanism of Ultra-fine Slag on the Rheology and Strength of Cement Paste 

PU Shaochang 1,2,3   LI Wei 1,2,3   REN Peng 1,2,3   WANG Dongyu 1,2,3   LIU Yufeng 1,2,3    

  1. 1. CCTEG China Coal Research Institute,Beijing 100013,China;2. State Key Laboratory of Coal Mine Disaster Prevention and Control, Beijing 100013,China;3. Beijing Engineering and Research Center of Mine Safe,Beijing 100013,China
  • Online:2025-06-15 Published:2025-07-09

摘要: 为提高固废利用率并减少水泥用量,研究选取普通矿渣与超细矿渣开展流变特性试验,揭示粒径、掺量 及水泥水化对早期流变的影响机理,结合硬化浆体显微形貌与胶砂抗压强度分析矿渣的微观-宏观作用机制。 结果 表明:普通矿渣在低掺量下可提升浆体的流动性,而超细矿渣显著降低浆体的流动性,且在低水胶比时需增加减水剂 用量;超细矿渣能加速水泥水化并增强絮凝结构的稳定性,较普通矿渣浆体触变环面积与剪切应力值增加,普通矿渣 浆体剪切应力在 30 min 时最大;超细矿渣使浆体的屈服应力与塑性粘度随掺量显著增加;而普通矿渣体系塑性粘度 和屈服应力随掺量变化不大;普通矿渣掺量小于 20%可提升胶砂后期强度及微观致密性,但对早期强度不利;而超细 矿渣则同步增强早期和后期强度并形成低孔隙结构,在 20%掺量时后期强度最大;超细矿渣在大掺量下保持优异强 度,却严重劣化流变性。 

关键词: 超细矿渣,   流动度 , 流变 , 微观  , 强度

Abstract: In order to improve the utilization rate of solid waste and reduce the amount of cement,this study selected ordinary slag and ultra-fine slag for rheological characteristics tests,revealed the influence mechanism of particle size,dosage and cement hydration on the early rheology,and combined the microstructure of hardened paste and the compressive strength of mortar to analyze the micro-macro action mechanism of ultra-fine slag. The results showed that ordinary slag can improve the fluidity of the slurry at low dosage,while ultrafine slag significantly reduces the fluidity of the slurry,and the dosage of waterreducing agent needs to be increased at a low water-binder ratio. Ultrafine slag can accelerate the hydration of cement and enhance the stability of the flocculation structure. Thus,the thixotropic ring area and shear stress value are increased compared with those of ordinary slag slurry,and the shear stress of the ordinary slag slurry is the greatest at 30 minutes. Ultrafine slag causes the yield stress and plastic viscosity of the slurry to increase with the dosage. However,the plastic viscosity and yield stress of ordinary slag system do not change much with the dosage. Common slag with content of less than 20% can enhance the later strength and microscopic compactness of the mortar,but it is unfavorable for the early strength. The ultrafine slag simultaneously enhances the early and later strengths and forms a low-pore structure,with the greatest later strength at dosage of 20%. Ultrafine slag maintains excellent strength at a large dosage,but severely deteriorates rheological properties. 

Key words: ultra-fine slag,fluidity,rheology,microscopic,strength 

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