Wang Xianliang, Zhang Jianhai, Qian Li, Yao Tianzhi, Mo Zuguo, He Jianhua, Zhang Ru
State Key Laboratory of Hydraulics and Mountain River Engineering, College of Water Resources and Hydropower, Sichuan University, Chengdu, 610065, China.
Sichuan Metallurgical Geological Survey and Design Group Corporation Limited, Chengdu, 610051, China.
Sci Rep. 2022 Mar 31;12(1):5460. doi: 10.1038/s41598-022-09503-3.
The stress-strain curves and mechanical properties of Shuangjiangkou granite were obtained using five groups of conventional triaxial tests under various confining pressures using MTS815 rock test equipment. From the microscale, mesoscale, and macroscale perspectives, four types of mechanisms that contribute to energy dissipation during granite deformation were investigated. Based on the energy dissipation ratio, a new approach for estimating crack closure stress and damage stress is proposed. The energy dissipation ratio was substituted into the Weibull distribution function, and then a new nonlinear statistical damage constitutive model of granite based on the energy dissipation ratio was constructed after Biot's theory was modified per the Lemaitre strain equivalence principle. By comparing experimental data with theoretical values estimated by the model, the model's rationality and correctness were confirmed.
利用MTS815岩石试验设备,在不同围压下进行了五组常规三轴试验,得到了双江口花岗岩的应力-应变曲线和力学性能。从微观、细观和宏观尺度的角度,研究了花岗岩变形过程中能量耗散的四种机制。基于能量耗散率,提出了一种估算裂纹闭合应力和损伤应力的新方法。将能量耗散率代入威布尔分布函数,然后根据勒梅特应变等效原理修正比奥理论,构建了基于能量耗散率的花岗岩非线性统计损伤本构模型。通过将试验数据与模型估算的理论值进行比较,验证了模型的合理性和正确性。