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磷石膏基冷粘结集料固化条件对物理性能、力学强度发展及孔隙结构的比较

Comparison of Curing Conditions on Physical Properties, Mechanical Strength Development, and Pore Structures of Phosphogypsum-Based Cold-Bonded Aggregates.

作者信息

Wang Guiming, Ye Zhiyi, Sun Tao, Mo Zhenlin, Wang Ziyan, Ouyang Gaoshang, He Juntu, Deng Yihua

机构信息

School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.

International School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.

出版信息

Materials (Basel). 2024 Oct 11;17(20):4971. doi: 10.3390/ma17204971.

Abstract

This study compared the physical properties and mechanical strength development of PCBAs with water, sealed, standard, and open ambient air curing over 28 days to find a suitable curing method for the production of phosphogypsum-based cold-bonded aggregates. The types and relative amounts of hydration products, microstructural morphology and pore structure parameters were characterized utilizing XRD, TGA, FTIR, SEM and nitrogen adsorption methods. According to the results, water curing leads to rapid increases in single aggregate strength, reaching 5.26 MPa at 7 d. The standard curing condition improved the 28 d mechanical strength of the aggregates by 19.3% over others by promoting the generation of hydration products and the transformation of the C-S-H gel to a higher degree of polymerization and by optimizing the pore structure. Further, PCBAs achieved an excellent solidification of phosphorus impurities under all four curing conditions. This work provides significant guidance for selecting an optimized PCBA curing method for industrial production.

摘要

本研究比较了水养护、密封养护、标准养护和开放环境空气养护28天的磷石膏基冷粘结骨料(PCBA)的物理性能和力学强度发展,以找到适合生产磷石膏基冷粘结骨料的养护方法。利用X射线衍射(XRD)、热重分析(TGA)、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)和氮吸附方法对水化产物的类型和相对含量、微观结构形态和孔隙结构参数进行了表征。结果表明,水养护导致单颗粒骨料强度迅速增加,7天时达到5.26MPa。标准养护条件通过促进水化产物的生成和C-S-H凝胶向更高聚合度的转变以及优化孔隙结构,使骨料的28天力学强度比其他养护条件提高了19.3%。此外,在所有四种养护条件下,PCBA对磷杂质都实现了优异的固化。这项工作为工业生产中选择优化的PCBA养护方法提供了重要指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee00/11509110/2e70b9a7ea1c/materials-17-04971-g001.jpg

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