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首页> 外文期刊>The Baltic journal of road and bridge engineering >STABILIZATION OF PROBLEMATIC SILTY SANDS USING MICROSILICA AND LIME
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STABILIZATION OF PROBLEMATIC SILTY SANDS USING MICROSILICA AND LIME

机译:利用微生物和石灰稳定有问题的粉质沙土

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In this study, to stabilize problematic silty sand soils, Microsilica-Lime admixture was used as an additive. Various samples containing 0, 1, 2, 5, 10 and 15% (by weight) Microsilica and 0, 1, 3 and 5% (by weight) Lime were prepared. To investigate the role of the studied additives on the stabilization of the sandy soils, unconfined compressive strength of the materials and their swelling potential, were considered. To do this, unconfined compressive strength test, California Bearing Ratio, also, swelling tests were carried out. As a result, the unconfined compressive strength of samples with 10% Microsilica and 3% Lime in curing time of 28 days was obtained about 50 times larger than the strength of the untreated samples. On the other hand, the samples stabilized only with 1% Lime showed considerable swelling potential while adding only 1% Microsilica caused a considerable reduce in the amount of swelling. Unconfined compressive strength of samples containing 1% Microsilica and 1% Lime was about 12 times larger than the strength of the untreated samples and these samples showed less swelling potential. Then, these amounts are considered as the optimal amounts, which are used in the road construction projects. Also, the results obtained from scanning the samples using electron microscope illustrated that the Microsilica causes to form crystalline micro-structures in the soil which is the main cause for increasing the strength of stabilized samples.
机译:在这项研究中,为稳定有问题的粉质砂土,使用了微硅石灰混合料作为添加剂。制备了各种样品,它们包含0、1、2、5、10和15%(重量)的微硅粉和0、1、3和5%(重量)的石灰。为了研究所研究的添加剂在稳定沙质土壤中的作用,考虑了材料的无侧限抗压强度及其溶胀潜力。为此,还进行了无极限抗压强度试验,加利福尼亚轴承比,以及膨胀试验。结果,在28天的固化时间内获得具有10%的微二氧化硅和3%的石灰的样品的无限制压缩强度是未处理样品的强度的约50倍。另一方面,仅用1%的石灰稳定的样品显示出相当大的溶胀潜力,而仅添加1%的微二氧化硅则导致溶胀量大大降低。包含1%的微硅粉和1%的石灰的样品的无侧限抗压强度约为未处理样品的抗压强度的12倍,且这些样品的溶胀潜力较小。然后,这些数量被认为是最佳数量,用于道路建设项目。另外,使用电子显微镜对样品进行扫描所获得的结果表明,微二氧化硅导致在土壤中形成晶体微结构,这是增加稳定样品强度的主要原因。

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