蠕动
材料科学
岩土工程
腐蚀
剪切(地质)
压力(语言学)
剪应力
复合材料
抗剪强度(土壤)
地质学
直剪试验
接头(建筑物)
有限元法
结构工程
有效应力
应力场
应力腐蚀开裂
作者
Teng-Fei Fu,Fayuan Yan,Yang Yuan,Susheng Wang,Chongfeng Chen,Guo-Qiang Zhu
标识
DOI:10.1080/19475705.2026.2652590
摘要
Using the parametrically designed battery pack in Grasshopper, a Voronoi grain-based discrete element model was established in the three-dimensional distinct element code, incorporating progressively increasing grain equivalent diameters. A grain-based stress corrosion model, enhanced with an improved stress corrosion theory, was further proposed to simulate both the direct shear characteristics and shear creep behaviour of unsaturated sandstone under varying normal stresses. The mesoscopic parameters, including the contact properties between grains and the stress corrosion parameters, were then calibrated. This ensured that the model could accurately reproduce the mechanical properties of sandstone observed in laboratory tests. The modelling results indicated that tensile cracks were the dominant cracks generated during the shear process under various saturations and normal stresses, along with a few shear cracks. A significant negative correlation was observed between the joint roughness coefficient (JRC) and the ratio of long-term to peak shear strength. Additionally, increased normal stress or decreased saturation were both found to accelerate the time-dependent failure process, leading to a shorter time-to-failure under constant shear loading. We summarize that the proposed model effectively characterizes the direct shear and creep behaviour of unsaturated sandstone at varying roughnesses and normal stresses.
科研通智能强力驱动
Strongly Powered by AbleSci AI