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Experimental study on improving the engineering properties of coarse grain sulphate saline soils with inorganic materials

机译:无机材料改善粗硫酸盐盐渍土工程性质的试验研究。

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Coarse grain soils are a good kind of embankment fill material. However, when they contain a high-level soluble salt, the engineering consequences can include salt expansion and collapsibility. The main objective of this study was to improve the salt expansion, collapsibility, and strength characteristics of coarse grain sulphate saline soils using inorganic binders and to provide an optimal proportion for the improvements. Coarse grain sulphate saline soils with 2% soluble salt contents were improved using different ratios of slaked lime, slaked lime-fly ash, and slaked lime-volcanic ash. Meanwhile, salt expansion tests, collapsibility tests, saturated unconfined compressive strength (SUCS) tests, and SEM tests were performed for the improved soils using different proportions. The results demonstrated that adding slaked lime, slaked lime-volcanic ash, or slaked lime-fly ash could not only effectively reduce the salt expansion amount, but also reduce the sensitive temperature range of the salt expansion. The deformation rate of salt expansion and collapsibility were < 1% after adding > 11% slaked lime or 15% slaked lime-volcanic ash (or fly ash). The 7 curing day SUCS of the improved soil was not < 0.35 MPa. Compared with the strength of the slaked lime improved soil and the slaked lime-fly ash improved soil, the strength of the slaked lime-volcanic ash modified coarse grain sulphate saline soil was stronger. Also, the addition of volcanic ash could increase the strength gain rate in these improved saline soils. Furthermore, the feasibility and rationality of using inorganic binder to improve coarse grain sulphate saline soil were clarified by discussing the microstructure and improvement mechanism of coarse grain sulphate saline soil before and after improvement.
机译:粗粮土是一种很好的路堤填充材料。但是,当它们包含高含量的可溶性盐时,工程后果可能包括盐的膨胀和可折叠性。这项研究的主要目的是使用无机粘结剂改善粗粮硫酸盐盐渍土的盐分膨胀性,塌陷性和强度特性,并为改良提供最佳比例。使用不同比例的熟石灰,熟石灰粉煤灰和熟石灰石灰火山灰可改善含2%可溶性盐含量的粗粮硫酸盐盐渍土壤。同时,用不同的比例对改良土壤进行了盐分膨胀试验,塌陷试验,饱和无侧限抗压强度试验和SEM试验。结果表明,添加熟石灰,熟石灰火山灰或熟石灰粉煤灰不仅能有效降低盐分膨胀量,而且能减小盐分膨胀的敏感温度范围。加入> 11%熟石灰或15%熟石灰-火山灰(或粉煤灰)后,盐的膨胀和塌陷变形率<1%。改良土壤的7天养护期SUCS不小于0.35 MPa。与生石灰改良土和灰飞灰改良土的强度相比,生石灰火山灰改良粗粒硫酸盐盐渍土的强度更强。同样,添加火山灰可以提高这些改良盐渍土的强度增加率。此外,通过讨论改良前后粗粮硫酸盐盐渍土的微观结构和改良机理,阐明了使用无机粘结剂改良粗粮硫酸盐盐渍土的可行性和合理性。

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