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A study on crack damage stress and the damage constitutive model of frozen sandstone

机译:裂纹损伤应力与冷冻砂岩损伤本构模型研究

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摘要

The artificial ground freezing (AGF) method has been widely used in underground engineering construction. As the main load-bearing elements of the AGF method, the strength of frozen walls is expected to play a crucial role in engineering stability. To improve the accuracy of quantitative evaluations of engineering stability, it is necessary to grasp the strength characteristics of frozen rock during service. To achieve this, the red sandstone taken from a frozen shaft project was tested via triaxial compression at different temperatures (-5 degrees C,-10 degrees C,-15 degrees C,-20 degrees C,-25 degrees C, and -30 degrees C). After that, a damage constitutive model with a Weibull distribution was derived to characterize the damage development of the frozen sandstone. Based on the validated model, the variation of damage degree was analyzed. The results show that the crack initiation stress, crack dilation stress, and peak strength all increase with decreasing temperature. The crack damage threshold increases as the frozen sandstone strength increases. The presented damage constitutive model can reflect the damage evolution of frozen sandstone. When the stress exceeds the crack initiation stress, the damage degree begins to increase, and it increases quickly when the stress approaches the peak strength. The model parameters can reflect the influence of negative temperatures on the strength of frozen sandstone. The crack damage threshold could be treated as an essential intrinsic property for predicting the failure process of frozen sandstones. The results can provide an important reference for the design and construction of frozen ground engineering.
机译:人造冻结(AGF)方法已广泛用于地下工程建设。作为AGF方法的主要承载元件,预计冷冻壁的强度将在工程稳定性中发挥至关重要的作用。为了提高工程稳定性的定量评估的准确性,有必要掌握在服务期间冷冻岩石的强度特征。为此,通过不同温度的三轴压缩测试从冷冻轴项目的红色砂岩(-5℃,-10℃,-15℃,-20℃,-25℃,和-30 C)。之后,衍生具有威布尔分布的损伤本构模型,以表征冷冻砂岩的损伤开发。基于验证的模型,分析了损害程度的变化。结果表明,裂纹引发应力,裂纹扩张应力和峰值强度随温度降低而均增加。随着冷冻砂岩强度的增加,裂纹损伤阈值增加。所提出的损伤本构模型可以反映冷冻砂岩的损伤演变。当应力超过裂纹启动应力时,损伤程度开始增加,当应力接近峰值强度时,它会增加。模型参数可以反映负温度对冷冻砂岩强度的影响。裂纹损伤阈值可被视为用于预测冷冻砂岩的失效过程的基本内在性质。结果可为冷冻地面工程设计和构建提供重要参考。

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