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淤泥质土固化及路用性能试验研究
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Experimental Study on Solidification and Road Performance of Mucky Soil
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    摘要:

    为解决软弱的淤泥质土无法直接用于路基填筑的问题,需要探索优良的固化剂配 方 .首先选取工业废料高炉矿渣、粉煤灰和电石渣为固化原材料,对台州淤泥质土进行加固 . 利用混料试验分析的方法,得到 14 d和 28 d龄期下无侧限抗压强度的回归方程,分析得到最 佳配比下固化剂质量分数比为高炉矿渣∶粉煤灰∶电石渣=42.1∶11.5∶46.4,取名 ZX20,并得到 ZX20 固化土在 28 d 龄期下强度为 1 479.32 kPa;然后对 ZX20 固化土与二灰土进行无侧限试 验、水稳性试验和干湿循环性试验,发现 ZX20固化土满足路基填筑强度要求,并比传统二灰 土有更好的路用性能;接下来讨论了ZX20固化土强度和龄期的关系,并用对数函数对固化土 的强度与龄期进行拟合,发现具有较好的拟合度;最后通过 SEM方法和 PCAS软件对 ZX20固 化土的微观机理进行定性和定量分析,发现随龄期变化固化土中生成大量丝状物、针状物和 絮凝状物,分割大孔隙为小孔隙并填充部分孔隙,以此提高固化土的强度.

    Abstract:

    In order to solve the problem that the weak mucky soil cannot be directly used for subgrade filling, it is necessary to explore an excellent curing agent formula. First,blast furnace slag, fly ash, and calcium carbide slag were selected as curing materials to reinforce the Taizhou mucky soild. Next, by texting unconfined compressive strength, the regression equations of 14 d and 28 d ages were obtained using the method of mixture test analysis. It was found that the mass fraction ratio of the curing agent which is called ZX20 at the best ratio was as blast furnace slag∶fly ash∶calcium carbide slag = 42.1∶11.5∶46.4. The strength of ZX20 solidified soil at 28 d age was 1 479.32 kPa. Then, by texting unconfined test, water stability test, and dry-wet cycle test on ZX20 solidified soil and limelime soil, the results showed that ZX20 solidified soil met the requirements of subgrade filling strength and had higher strength, better road performance water stability and dry-wet cycle than traditional lime-lime soil. Next, it was found that the logarithmic function had a good fit for the relationship between the strength of ZX20 solidified soil and age. Finally, by using the SEM method and PCAS software, the microscopic mechanism of ZX20 solidified soil was analyzed qualitatively and quantitatively. It was found that a large number of filaments, needles, and floccules were generated in the solidified soil with age, and the large pores were divided into small pores and filled partial pores, thereby increasing the strength of the solidified soil.

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徐日庆 ,朱坤垅 ,黄伟 ,闫自海 ,张岗平 ,严佳佳 ,张明明 ,张白羚 .淤泥质土固化及路用性能试验研究[J].湖南大学学报:自然科学版,2022,49(3):167~174

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  • 在线发布日期: 2022-05-13
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