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Modeling of Concrete-Frozen Soil Interface from Direct Shear Test Results

机译:直接剪切试验结果建模混凝土冻土界面

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摘要

The shear behaviors of concrete-frozen soil interface are important for analyzing the performance of engineering structures buried in the frozen ground. In this paper, a series of direct shear tests were carried out to determine the concrete-soil interface behaviors at different test temperatures (19°C, ?1°C, ?3°C, and ?5°C) and initial water contents (9.2%, 13.1%, 17.1%, and 20.8%) of soils. The interface shear behaviors, including the shear stress versus horizontal displacement, interface cohesion, and interface friction coefficient, were analyzed based on the test results. Then, a simple, nonlinear model was proposed and verified for the interface shear behaviors. The results show that the effect of initial water content and test temperature on the interface shear behavior is significant, and the peak stress increases with the increasing initial water content and decreasing test temperature. The interface cohesion is sensitive to the test temperature and initial water content, while the interface friction coefficient is insensitive to both the factors. The parameters of the simple nonlinear model can be gained by back-analyzing the test results. The predictions made by the proposed model are found to be in good agreement with the experimental results.
机译:混凝土土壤界面的剪切行为对于分析冻结地面埋藏的工程结构性能很重要。在本文中,进行了一系列直接剪切测试,以确定不同测试温度(19℃,α1℃,α3℃和α5℃)和初始水内容物的混凝土界面行为(9.2%,13.1%,17.1%和20.8%)土壤。基于测试结果,分析了界面剪切行为,包括剪切应力与水平位移,界面凝聚和界面摩擦系数。然后,提出了一种简单的非线性模型并验证了界面剪切行为。结果表明,初始含水量和测试温度对界面剪切行为的影响是显着的,并且峰值应力随着初始含水量的增加和试验温度降低而增加。界面凝聚力对测试温度和初始含水量敏感,而界面摩擦系数对两个因素不敏感。通过反析测试结果,可以获得简单非线性模型的参数。拟议模型所做的预测与实验结果吻合良好。

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