直剪试验
材料科学
岩土工程
剪切(地质)
三轴剪切试验
残余强度
单剪
残余物
剪应力
剪切速率
剪切模量
应变硬化指数
临界切应力
抗剪强度(土壤)
复合材料
硬化(计算)
地质学
土壤水分
数学
流变学
土壤科学
算法
图层(电子)
作者
Jiankun Liu,Peng Lv,Yinghui Cui,Jingyu Liu
标识
DOI:10.1016/j.coldregions.2014.04.007
摘要
In order to study the mechanical behavior of frozen soil–concrete interfaces, a series of direct shear tests were conducted on a large-scale temperature-controlled direct shear test system (TZJ-150). Synchronous variations were found in both the shear stress–displacement and vertical displacement–shear displacement curves. The whole shear process can be divided into five stages: the elastic deformation part, the plastic deformation part, the whole slide part, the strain hardening part, and the stable residual strength part. The influence rules of normal pressure, temperature, and water content on the shear strength of the interface were obtained by a series of sample tests with different parameters. Fitted equations between factors and shear strength were presented. The peak shear strength had linear relationships with the normal pressure and temperature, but a nonlinear relationship with the water content, which had a much greater effect on the peak shear strength. The residual shear strength also had linear relationships with the normal pressure and temperature, but was basically unrelated with the water content. A reasonable explanation about the changes of peak shear strength and residual shear strength was proposed.
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