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Assessments of swelling anisotropy of Ankara clay

机译:评估安卡拉粘土的溶胀各向异性

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Determination of swelling pressure exerted by expansive soils is important for designing structures such as shallow foundations, shallow tunnels, retaining walls, canal linings and underground conduits in such soils. The axial deformation and swelling pressure under zero lateral deformation can be determined by conventional oedometer using two identical samples. However, this test doesn't permit a synchronized measurement of both the axial and lateral swelling pressures on the same sample. The Ankara clay, which is an overconsolidated clay, rich in smectite group clay minerals, and partly covers the southern part of Ankara, the capital of Turkey, causes damage to light structures located at the surface and at shallow depths. A comprehensive study was conducted (i) to determine the swelling parameters (swelling pressure and swelling percentage) of Ankara clay both in vertical and lateral directions using a thin wall oedometer ring (providing synchronized measurement of swelling parameters in both directions), (ii) to compare lateral and vertical swelling parameters of the clay for the assessment of swelling anisotropy, and (iii) to investigate the effect of microstructure of Ankara clay on its swelling behavior using Scanning Electron Microscope (SEM). The experimental results revealed that the swelling parameters measured in vertical direction were greater than those measured in lateral direction. The ratio between the swelling pressures in lateral and vertical directions was found between 0.34 and 0.98. The results of the SEM analyses suggested that the clay minerals in Ankara clay show horizontal and/or nearly horizontal sheeting and have stepped face-to-face structure. This arrangement indicates that the swelling parameters in vertical direction should be greater than those in lateral direction. It also confirms the experimental results and shows the influence of the microstructure of the clay on swelling anisotropy.
机译:确定膨胀土施加的溶胀压力对于设计这样的土壤中的结构,例如浅基础,浅隧道,挡土墙,运河衬砌和地下管道非常重要。零横向变形下的轴向变形和溶胀压力可以通过传统的里程表使用两个相同的样品确定。但是,此测试不允许同步测量同一样品上的轴向和横向溶胀压力。安卡拉粘土是一种超固结粘土,富含绿土类粘土矿物,部分覆盖了土耳其首都安卡拉的南部地区,对地表和浅深度的轻型结构造成了破坏。进行了全面的研究(i)使用薄壁测压计环确定安卡拉粘土在垂直和水平方向的溶胀参数(溶胀压力和溶胀百分比)(提供两个方向的溶胀参数的同步测量),(ii)比较粘土的横向和垂直溶胀参数以评估溶胀各向异性,以及(iii)使用扫描电子显微镜(SEM)研究安卡拉粘土的微观结构对其溶胀行为的影响。实验结果表明,垂直方向的溶胀参数大于横向方向的溶胀参数。发现横向和垂直方向上的膨胀压力之间的比率在0.34至0.98之间。 SEM分析的结果表明,安卡拉粘土中的粘土矿物显示出水平和/或接近水平的薄片,并且具有阶梯状的面对面结构。这种布置表明垂直方向的溶胀参数应大于横向方向的溶胀参数。它还证实了实验结果,并显示了粘土的微观结构对溶胀各向异性的影响。

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