Chen Youliang, Tong Huidong, Chen Qijian, Du Xi, Wang Suran, Pan Yungui, Dong Yang, Ma Hao
Department of Civil Engineering, School of Environment and Architecture, University of Shanghai for Science and Technology, Shanghai 200093, China.
Department of Engineering Geology and Hydrogeology, RWTH Aachen University, 52064 Aachen, Germany.
Materials (Basel). 2023 Sep 15;16(18):6234. doi: 10.3390/ma16186234.
Aiming at the problem of chemical-mechanics-hydro (C-M-H) action encountered by rocks in underground engineering, chemical damage variables, water damage variables, and force damage variables are introduced to define the degree of degradation of rock materials. Stone is selected as the sample for acid corrosion treatment at 3, 4, and 7, and a chemical damage factor is defined that coupled the value and duration of exposure. Then based on the spatial mobilized plane (SMP) criterion and the Lemaitre strain equivalence hypothesis, this research develops a constitutive model considering rock chemical corrosion-water-confining pressure damage. The proposed damage constitutive model employs the extremum method to ascertain the two Weibull distribution parameters ( and ) by theoretical derivation and exhibits satisfactory conformity between the theoretical and experimental curves. The damage constitutive model can be consistent in the stress-strain characteristics of the rock triaxial compression process, which verifies the rationality and reliability of the model parameters. The model effectively represents the mechanical properties and damage characteristics of rocks when subjected to the combined influence of water chemistry and confinement. The presented model contributes to a better understanding of tangible rock-engineered structures subjected to chemical corrosion in underwater environments.
针对地下工程中岩石所遇到的化学-力学-水(C-M-H)作用问题,引入化学损伤变量、水损伤变量和力损伤变量来定义岩石材料的劣化程度。选取石材作为样本,分别在3、4和7的条件下进行酸腐蚀处理,并定义了一个耦合暴露值和持续时间的化学损伤因子。然后基于空间移动平面(SMP)准则和勒梅特应变等效假设,本研究建立了一个考虑岩石化学腐蚀-围压损伤的本构模型。所提出的损伤本构模型采用极值法通过理论推导确定两个威布尔分布参数(和),理论曲线与实验曲线表现出令人满意的一致性。损伤本构模型在岩石三轴压缩过程的应力-应变特性方面能够保持一致,验证了模型参数的合理性和可靠性。该模型有效地反映了岩石在水化学和围压联合作用下的力学性能和损伤特性。所提出的模型有助于更好地理解水下环境中遭受化学腐蚀的实际岩石工程结构。