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基于冻融和残余效应的岩石莫尔-库仑强度准则修正方法

Correction method of Mohr-Coulomb strength criterion for rock based on freeze-thaw and residual effects.

作者信息

Liu Yang, Meng Xiangzhen, Zhang Huimei, Shen Yanjun

机构信息

School of Geology and Environment, Xi'an University of Science and Technology, Xi'an, 710054, China.

Geological Research Institute for Green Coal Mining, Xi'an University of Science and Technology, Xi'an, 710054, China.

出版信息

Sci Rep. 2024 Dec 28;14(1):31005. doi: 10.1038/s41598-024-82152-w.

Abstract

Under confining pressure, rocks transition from brittle failure to plastic failure, and residual strength exists after complete failure. However, in the process of establishing rock damage constitutive models, the strength criteria used usually do not consider residual stress. In cold region engineering, the freeze-thaw effect caused by temperature changes should be considered in the constitutive model, and strength criteria should also be introduced. Considering the failure characteristics of micro element when rock is subjected to freeze-thaw and load, and based on the impact of reducing the effective bearing area on each damage, the total damage variable and constitutive model of rock under freeze-thaw and load are established. Starting from the characteristics of the entire process of rock deformation, the revised Mohr-Coulomb (M-C) strength criterion of rock is established by considering freeze-thaw cycles and residual effects. The results show that: The theoretical curve and test curve of the constitutive model are not completely consistent, but the variance R between the two does not exceed 0.6, indicating that the theoretical curve is in good agreement with the test curve and can reflect the entire process of rock deformation and failure, verifying the rationality of the constitutive model and damage variable description. With the increasing of freeze-thaw cycles, the strength decreases and the deformation increases of rock. As the number of freeze-thaw cycles increases, the strength decreases and deformation increases. When the freeze-thaw cycle reaches 40 cycles, the strength decreases by more than 60%. With the increasing of confining pressure, the strength and deformation also increase. When the confining pressure increases from 0 to 6 MPa, the strength of red sandstone increases by more than 80% under the same freeze-thaw cycles, which is consistent with the actual situation. The revised M-C strength criterion data does not exceed the test data and is relatively close to the test data. The difference between the two is less than 25%, indicating that the established strength criteria can be safely used as a basis for rock elemental failure, verifying the rationality of the strength standard considering freeze-thaw and residual effects. This Revised M-C strength criterion introduces the influence of freeze-thaw cycles and residual stress factors, which not only characterizes the relationship between internal stress parameters in rock limit states under different freeze-thaw cycles, but also addresses the disadvantage of Drucker-Prager (D-P) criterion being more conservative. This method is based on the measured results of rock triaxial test, which makes it more flexible and the calculation results closer to reality.

摘要

在围压作用下,岩石从脆性破坏转变为塑性破坏,完全破坏后存在残余强度。然而,在建立岩石损伤本构模型的过程中,通常使用的强度准则并未考虑残余应力。在寒区工程中,本构模型应考虑温度变化引起的冻融效应,还应引入强度准则。考虑岩石在冻融和荷载作用下微元的破坏特性,基于有效承载面积减小对各损伤的影响,建立了冻融和荷载作用下岩石的总损伤变量及本构模型。从岩石变形全过程特征出发,考虑冻融循环和残余效应,建立了修正的岩石莫尔 - 库仑(M - C)强度准则。结果表明:本构模型的理论曲线与试验曲线并非完全一致,但二者之间的方差R不超过0.6,表明理论曲线与试验曲线吻合良好,能够反映岩石变形破坏的全过程,验证了本构模型及损伤变量描述的合理性。随着冻融循环次数的增加,岩石强度降低、变形增大。当冻融循环次数增加时,强度降低且变形增大。当冻融循环达到40次时,强度降低超过60%。随着围压的增加,强度和变形也增大。当围压从0增加到6MPa时,在相同冻融循环次数下红砂岩强度增加超过80%,这与实际情况相符。修正的M - C强度准则数据不超过试验数据且与试验数据较为接近,二者差值小于25%,表明所建立的强度准则可安全地作为岩石单元破坏的依据,验证了考虑冻融和残余效应的强度标准的合理性。这种修正的M - C强度准则引入了冻融循环和残余应力因素的影响,不仅表征了不同冻融循环次数下岩石极限状态内部应力参数之间的关系,还克服了德鲁克 - 普拉格(D - P)准则较为保守的缺点。该方法基于岩石三轴试验实测结果,使其更加灵活且计算结果更接近实际。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7563/11680891/d45cfa7a8845/41598_2024_82152_Fig1_HTML.jpg

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