围压和温度对冻结含盐粉质粘土强度和变形特性的影响

Pub Date : 2023-02-01 DOI:10.1016/j.rcar.2023.04.003
Gang Wu , GuoYu Li , Hui Bing , Dun Chen , YaPeng Cao , LiYun Tang , HaiLiang Jia
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引用次数: 0

摘要

在寒冷地区,即使存在盐碱地,建筑物也总是受到冻胀和融化沉降的影响。本文介绍了高含盐量冻粉质粘土的三轴试验结果,探讨了围压和温度对其力学特性的影响。常规三轴压缩试验在不同围压(0.5-7.0 MPa)和温度(- 6°C、- 8°C、- 10°C和- 12°C)下进行。试验结果表明:围压小于1 MPa时,冻盐粉质粘土以脆性行为为主,表现为x形剪胀破坏模式;随着围压的增大,试样逐渐由脆性向塑性转变。冻结含盐粉质粘土的强度随围压的增大先升高后降低。改进的Duncan-Chang双曲模型能较好地描述冻融含盐粉质粘土的应力-应变关系。抛物线型强度准则可用于描述冻结含盐粉质粘土的强度演化过程。拟合得到了强度参数与温度的函数关系,抛物线型强度准则的计算结果与试验结果吻合较好,特别是围压小于5 MPa时。因此,本研究对寒区高盐土作为工程材料的设计和施工具有重要的指导意义。
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Effects of confining pressure and temperature on strength and deformation behavior of frozen saline silty clay

Buildings are always affected by frost heave and thaw settlement in cold regions, even where saline soil is present. This paper describes the triaxial testing results of frozen silty clay with high salt content and examines the influence of confining pressure and temperature on its mechanical characteristics. Conventional triaxial compression tests were conducted under different confining pressures (0.5–7.0 MPa) and temperatures (−6 °C, −8 °C, −10 °C, and −12 °C). The test results show that when the confining pressure is less than 1 MPa, the frozen saline silty clay is dominated by brittle behavior with the X-shaped dilatancy failure mode. As the confining pressure increases, the sample gradually transitions from brittle to plastic behavior. The strength of frozen saline silty clay rises first and then decreases with increasing confining pressure. The improved Duncan-Chang hyperbolic model can describe the stress-strain relationship of frozen saline silty clay. And the parabolic strength criterion can be used to describe the strength evolution of frozen saline silty clay. The function relation of strength parameters with temperature is obtained by fitting, and the results of the parabolic strength criterion are in good agreement with the experimental results, especially when confining pressure is less than 5 MPa. Therefore, the study has important guiding significance for design and construction when considering high salinity soil as an engineering material in cold regions.

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