...
首页> 外文期刊>Cold regions science and technology >Deformation behaviors and meso-structure characteristics variation of the weathered soil of Pisha sandstone caused by freezing-thawing effect
【24h】

Deformation behaviors and meso-structure characteristics variation of the weathered soil of Pisha sandstone caused by freezing-thawing effect

机译:冻融作用引起Pisha砂岩风化土的变形行为及细观结构特征变化

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The deformation behaviors of soil caused by freezing-thawing (F-T) effect play a key role in determining the damage for engineering structures in seasonal frozen soil regions. Based on the laboratory tests, investigations were made into the deformation behaviors of the weathered soil of Pisha sandstone, as well as the meso-structure characteristics variation before and after F-T effect. The F-T tests demonstrate that there exists an initial frost heave moisture content (IFHMC) and an initial thawing settlement moisture content (ITSMC) in the soil. When the moisture content of the soil below the IFHMC and the ITSMC, the frost heave and the thawing settlement phenomenon will not occur. On the contrary, the soil will expand during the thawing process. Once the moisture content exceeds the value of IFHMC and ITSMC, the frost heave ratio and thawing settlement coefficient increase with moisture content. The frost heave ratio displays a growing trend with dry density, while the thawing settlement coefficient decreases first and then increases with dry density. There is a critical dry density that corresponds to the minimum value of thawing settlement coefficient. With the decreases of freezing temperature, the unfrozen water amount in soil drops, and the frost heave ratio and the thawing settlement coefficient increase gradually, presenting a non-linear increasing development tendency. The meso-structure tests show that some changes occurred in the pore structure and soil particles of the specimen. The larger moisture content of the specimen is, the more sensitive to the pore structures change and soil particles position variation.
机译:冻融(F-T)效应引起的土壤变形行为在决定季节性冻土地区工程结构的破坏中起着关键作用。在室内试验的基础上,对Pisha砂岩风化土的变形行为以及F-T效应前后的细观结构特征变化进行了研究。 F-T测试表明,土壤中存在初始的冻胀含水量(IFHMC)和初始解冻沉降含水量(ITSMC)。当IFHMC和ITSMC以下的土壤中的水分含量增加时,不会发生冻胀和融化沉降现象。相反,土壤将在解冻过程中膨胀。一旦水分含量超过IFHMC和ITSMC的值,霜冻率和解冻沉降系数就会随水分含量的增加而增加。冻胀率随着干密度的增加呈现出增长的趋势,而解冻沉降系数则随着干密度的增加先减小后增大。临界干密度对应于解冻沉降系数的最小值。随着冻结温度的降低,土壤中的未冻结水量下降,冻胀率和融化沉降系数逐渐增加,呈现出非线性增加的发展趋势。细观结构测试表明,样品的孔隙结构和土壤颗粒发生了一些变化。样品的水分含量越大,对孔隙结构变化和土壤颗粒位置变化越敏感。

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