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Pore Structure Evolution and Its Effect on Strength Development of Sulfate-Containing Cemented Paste Backfill

机译:含硫酸盐水泥浆回填的孔结构演变及其对强度发展的影响

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In this study, the effects of the initial sulfate content on the properties of cemented paste backfill (CPB) made from coarse tailings has been investigated via mercury intrusion porosimetry. The combined effects of the sulfate content and curing time on the total porosity, pore size distribution, and unconfined compressive strength of the produced material were discussed. It was found that the specimens with an initial sulfate content of 5000 and 35,000 ppm exhibited higher unconfined compressive strength, while the resulting fine porous structures characterized by pore radii of 10?¢????400 and 1?¢????10 ????m significantly improved the mechanical properties of the CPB. In addition, an increase in the curing time decreased the overall pore volume in the radius range of 1?¢????400 ????m but increased the pore volume at pore radii less than 1 ????m.
机译:在这项研究中,已通过压汞法研究了初始硫酸盐含量对由粗尾矿制成的水泥浆回填物(CPB)性能的影响。讨论了硫酸盐含量和固化时间对所生产材料的总孔隙率,孔径分布和无侧限抗压强度的综合影响。发现初始硫酸盐含量为5000和35,000 ppm的样品表现出更高的无侧限抗压强度,而所得的细微多孔结构的特征在于孔半径为10≤400≤400和1≤≤10≤10大大改善了CPB的机械性能。另外,固化时间的增加使总孔体积在1≤θ≤400μm的半径范围内减小,但在孔半径小于1≤θm时增大了孔体积。

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