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基于断裂分析的弹塑性土中断裂注浆裂纹Ⅰ型应力强度因子。

Fracture analysis-based mode-I stress intensity factors of crack under fracture grouting in elastic-plastic soils.

机构信息

College of Architecture and Civil Engineering, Xi'an University of Science and Technology, Xi'an, 710054, China.

出版信息

Sci Rep. 2023 Jan 25;13(1):1389. doi: 10.1038/s41598-023-28649-2.

Abstract

For the interaction of crack on the soil-grout interface under fracture grouting, an approximate method to determine the stress intensity factor (SIF) of crack on the soil-grout interface was proposed based on the conservation J-integral. With this method, the energy release rate of crack propagation under fracture grouting can be defined by the parameters of elastic-plastic soils and the grouting pressure. In order to study the change of strain energy near the crack of elastic-plastic soil under fracture grouting, a mechanical model of elastic-plastic soil with crack was established based on non-associated Mohr-Coulomb criterion model, and the SIF of crack with spring boundary was investigated. The influence of the crack depth ratio and crack aspect ratio on the SIF of cracks under the spring boundary were analyzed, and revealed the rule of crack growth under fracture grouting in elastic-plastic soils. The results showed that the variation of the crack depth ratio and crack aspect ratio had an effect on the change of the SIF of cracks. Increasing the crack depth ratio and crack aspect ratio caused an increase in the SIF of the crack. The results can provide the reference for foundation reinforcement in elastic-plastic soils.

摘要

针对断裂注浆条件下土-浆界面裂缝的相互作用,基于守恒 J 积分,提出了一种确定土-浆界面裂缝应力强度因子(SIF)的近似方法。该方法通过弹性-塑性土和注浆压力的参数来定义断裂注浆下裂缝扩展的能量释放率。为了研究断裂注浆条件下弹性-塑性土中裂缝附近应变能的变化,基于非关联 Mohr-Coulomb 准则模型,建立了含裂缝的弹性-塑性土力学模型,研究了具有弹簧边界的裂缝的 SIF。分析了裂缝深度比和裂缝长宽比对弹簧边界下裂缝 SIF 的影响,揭示了弹性-塑性土中断裂注浆下裂缝扩展的规律。结果表明,裂缝深度比和裂缝长宽比对裂缝 SIF 的变化有影响。增大裂缝深度比和裂缝长宽比会导致裂缝 SIF 的增大。研究结果可为弹性-塑性土中的基础加固提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0e5/9876900/7939b6328b95/41598_2023_28649_Fig1_HTML.jpg

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