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冻融循环条件下重塑黄土水分迁移及其对力学性质影响
引用本文:陈静茹,李宝平.冻融循环条件下重塑黄土水分迁移及其对力学性质影响[J].科学技术与工程,2018,18(34).
作者姓名:陈静茹  李宝平
作者单位:西安工业大学,西安工业大学
基金项目:陕西省教育厅专项科研计划资助项目(17JK0384)
摘    要:以西安地区黄土为研究对象,通过常规三轴剪切试验,研究了冻融循环对重塑黄土物理力学性质的影响。结果表明:试样冻融过程中水分不断向冰晶冰冻锋面迁移;即试样冻结过程中水分向试样表面迁移,融化之后水分向试样内部迁移;在此过程中试样结构性破坏,内部空隙增大,其剪切强度逐渐减小;故而试样含水率越大,冻融过程中水分迁移量越大,试样破坏越明显,其剪切强度降低越明显。

关 键 词:冻融循环  常规三轴试验  冻融黄土物理性质  抗剪强度
收稿时间:2018/7/27 0:00:00
修稿时间:2018/9/13 0:00:00

Study on Physical Properties and Failure form of Remolded Loess under Freeze-thaw Cycle
chenjingru and.Study on Physical Properties and Failure form of Remolded Loess under Freeze-thaw Cycle[J].Science Technology and Engineering,2018,18(34).
Authors:chenjingru and
Institution:Xi''an Technological University,,
Abstract:the effect of freeze-thaw cycle on the physical and mechanical properties of remolded loess was studied by conventional triaxial shear test. The results show that during the freezing and thawing process, the moisture moves to the freezing front of the ice crystal, that is, the moisture moves to the surface of the sample during the freezing process, and the moisture moves to the inside of the sample after thawing, and the structural failure of the specimen occurs during the process of freezing and thawing. The larger the moisture content of the sample is, the greater the moisture migration is during the freeze-thaw process, and the more obvious the damage is, the more obvious the shear strength is.
Keywords:freeze-thaw cycle  conventional triaxial test  physical properties of freeze-thaw loess  shear strength
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