石灰石粉掺量及细度对水泥水化进程的影响及动力学分析
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1.重庆大学材料科学与工程学院;2.重庆渝湘复线高速公路有限公司;3.中铁四局集团有限公司第六工程分公司

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TQ172.41???????????

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重庆市交通科技项目


The influence and kinetic analysis of limestone powder dosage and fineness on cement hydration process
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Affiliation:

1.College of Materials Science and Engineering;2.Chongqing Yuxiang Expressway Co,Ltd;3.The Sixth Engineering Branch of China Railway Fourth Bureau Group Co,Ltd,Xi’an

Fund Project:

Chongqing Transportation Research Program

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    摘要:

    本文采用微热量仪对含不同掺量和细度石粉的水泥浆体进行水化热分析,并基于Krstulovi?-Dabi?模型得到实际水化反应速率曲线和各阶段理论水化反应速率曲线,计算反应程度、反应级数和NG、I、D阶段的反应速率常数等反应动力学相关参数,分析石灰石粉掺量和细度对水泥水化的影响。结果表明:当掺量在0~35%范围内,细度在465 m2/kg~665 m2/kg范围内,随着石粉掺量和细度的增大,水泥水化反应速率加快,使得水泥水化放热峰值增大、峰值出现的时间提前,当石粉掺量为35%时,峰值提升26.2%、提前3.17 h;水泥水化NG过程(结晶成核与晶体生长过程)反应程度增大。石灰石粉的掺入和细度的提高,在提高初期水化反应速率的同时,会导致水泥的后期水化反应受限。

    Abstract:

    In this study, a microcalorimeter was used to analyze the hydration heat of cement pastes with different contents and fineness of limestone powder. Based on the Krstulovi?-Dabi? model, the actual hydration reaction rate curve and the theoretical hydration reaction rate curve of each stage were obtained. The reaction kinetics related parameters including degree of reaction, reaction order, and reaction rate constants for the NG, I, and D stages were calculated to analyze the influence of limestone powder content and fineness on cement hydration. Experimental results demonstrate that within the limestone powder dosage range of 0~35% and specific surface area of 465 m2/kg ~665 m2/kg, the correlated increase in both parameters enhances cement hydration kinetics, resulting in both elevated hydration heat peaks and accelerated peak occurrence. When the limestone powder content is 35%, the peak increases by 26.2% and occurs 3.17 hours earlier. Additionally, the reaction degree of the NG process (crystallization nucleation and crystal growth process) of cement hydration increases. The addition of limestone powder and the increased fineness enhance the early hydration reaction rate, while leading to a limited hydration degree in the later-stage.

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  • 收稿日期:2025-01-06
  • 最后修改日期:2025-04-10
  • 录用日期:2025-06-01
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