首页> 外文期刊>Environmental earth sciences >Analysis of microscopic pore structures of the silty clay before and after freezing-thawing under the subway vibration loading
【24h】

Analysis of microscopic pore structures of the silty clay before and after freezing-thawing under the subway vibration loading

机译:地铁振动荷载作用下粉质黏土冻融前后的微观孔隙结构分析

获取原文
获取原文并翻译 | 示例
           

摘要

With the rapid development of the subway rail transit, the effect of the cyclic loading on the surrounding foundations and buildings has drawn wide attention. In addition to the in situ tests and the laboratory triaxial tests, microscopic tests also provide an effective way to clarify the physical and mechanical characteristics of soils. On the other hand, the characteristics of the soft silty clay before and after freezing-thawing has been less studied. In this paper, the scanning electron microscope (SEM) tests following the cyclic triaxial tests of silty clay layer were performed to investigate the variations of the microscopic pore structures of the layer before and after freezing-thawing. The corrected Otsu method was used to obtain the binary SEM images of silty clay. The porosity results demonstrate that the magnifications from 10009 up to 50009 were suitable for observation of the silty clay microstructures. The binary SEM images of soil pore structures were quantitatively analyzed, including the porosity, the size distribution, the pore shape coefficient, the pore orientation distribution and the fractal dimension. The pore orientation of samples without loading is arranged in the horizontal direction, while the pores of samples under cyclic loadings are arranged in the vertical. After freezing-thawing, the mean anisotropy value of the microscopic pore structures increased about 12% and the porosity of samples without loadings increases about 11.24%. The lower the freezing temperature is, the larger the porosity within the samples becomes. However, the freezing-thawing has little effect on the pore shape coefficient of the silty clay. The porosity of the silty clay increases with an increase in pore diameter, but it decreases with the increase in excess pore pressure. In addition, the microscopic pore structures of the silty clay exhibit fractal characteristics. The fractal dimension is reduced by the disturbance from the effect of freezing-thawing, coupled with the effect of cyclic loading.
机译:随着地铁的快速发展,周期性荷载对周围基础和建筑物的影响已引起广泛关注。除了现场测试和实验室三轴测试外,显微镜测试还提供了一种有效的方法来阐明土壤的物理和机械特性。另一方面,对软质粉质粘土的冻融前后的特性的研究较少。本文在粉质黏土层的循环三轴试验之后进行了扫描电子显微镜(SEM)试验,以研究冻融前后该层的微观孔隙结构的变化。使用校正的Otsu方法获得粉质粘土的二元SEM图像。孔隙率结果表明,从10009到50009的放大倍率适合观察粉质粘土的微观结构。对土壤孔隙结构的二元SEM图像进行了定量分析,包括孔隙率,尺寸分布,孔隙形状系数,孔隙取向分布和分形维数。空载样品的孔取向沿水平方向排列,循环载荷下样品的孔沿垂直方向排列。冻融后,微观孔结构的平均各向异性值增加了约12%,无载荷的样品的孔隙率增加了约11.24%。冷冻温度越低,样品内的孔隙率越大。然而,冻融对粉质粘土的孔形状系数影响很小。粉质粘土的孔隙度随孔径的增加而增加,但随过孔压力的增加而降低。另外,粉质粘土的微观孔隙结构表现出分形特征。由于冻融作用的干扰以及循环载荷的作用,分形维数减小了。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号