镍铁渣粉水泥土的固化机理研究
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TU528

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福建省自然科学基金资助项目(2023J01130625,2022J01964)


Study on the Curing Mechanism of Ferronickel Slag Powdered Cement Soil
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    摘要:

    为研究镍铁渣粉掺量对水泥土固化材料的作用机理,通过深入研究镍铁渣粉水泥土的微观性质,更准确地揭示固化过程中的物理和化学变化规律。利用激光粒度试验分析了镍铁渣粉和水泥的粒径分布,发现了镍铁渣粉的离散性和平均粒径均略小于水泥;通过同步热分析试验,研究了镍铁渣粉水泥土的内部结构,结果显示镍铁渣粉填充了水泥土的孔隙,提高了颗粒间的胶结度,从而提高了其抗压强度;通过扫描电子显微镜(SEM)试验微观试验,表明了适量的镍铁渣粉有助于提升水泥土的动静强度,随着养护龄期的增加,水泥土的强度也得到进一步提升。

    Abstract:

    To study the mechanism of using nickel-iron slag powder as a solidification material for cement soil, the microscopic properties of nickel-iron slag powder cement soil were deeply studied to more accurately reveal the physical and chemical changes during the solidification process. The size distribution of nickel-iron slag powder and cement was analyzed by laser particle size test, and it was found that the dispersion and average particle size of nickel-iron slag powder were slightly smaller than that of cement. The internal structure of nickel-iron slag powder cement soil was studied by synchronous thermal analysis experiment, which showed that nickel-iron slag powder filled the pores of cement soil, improved the degree of intergranular bonding, and thus improved its compressive strength. The microscopic experiment by scanning electron microscope (SEM) showed that a moderate amount of nickel-iron slag powder was beneficial to enhance the dynamic and static strength of cement soil, and the strength of cement soil also increased further with the increase of curing age.

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黄炜炜,陈峰,郑铖杰,李致远.镍铁渣粉水泥土的固化机理研究[J].河北工程大学自然版,2024,41(6):45-52

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  • 收稿日期:2023-11-05
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  • 在线发布日期: 2025-01-14
  • 出版日期: 2024-12-25
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