Statistical damage constitutive model based on energy conversion for rocks

IF 4 2区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY International Journal of Damage Mechanics Pub Date : 2024-08-22 DOI:10.1177/10567895241277217
Cheng Hongming, Yang Xiaobin, Lu Jie, Dong Chuanlong, Lan Yongqing
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Abstract

The nonlinearity of the constitutive relation for rocks becomes more prominent with a more complex physical-mechanical environment and mechanical behavior. The accurate establishment of the constitutive relation affects the determination of rock deformation and damage state from physical features. In this study, a novel statistical damage constitutive model for rocks is proposed based on quantified energy conversion. The novelty of the model is that the nature of rock damage before and after damage stress is considered. In the constitutive model, the evolution characteristics of energy conversion show a five-stage evolution with a ‘spoon’ form and correspond to the rock deformation and damage process, which can be fitted with the modified GaussAmp function; the damage variable is deduced by the Weibull distribution with energy conversion as the distribution variable, which presents a monotonic decrease caused by initial defects before the σcd and shows a ‘S’ shape caused by nascent cracks after the σcd. Furthermore, triaxial test data of three types of rocks under different confining pressures were used to verify the proposed model, and the results were in good agreement with the test data in most cases. The characteristics of the crack closure stage, peak stress, residual strength, and stress drop process are controlled by the model parameters, which can be determined using experimental data. As these parameters definitely have a physical meaning and a relation to the confining pressure, the proposed model has the potential to be used in rock engineering.
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基于岩石能量转换的统计损伤构成模型
岩石构成关系的非线性随着物理力学环境和力学行为的复杂化而变得更加突出。构造关系的准确建立影响着根据物理特征确定岩石变形和破坏状态。本研究提出了一种基于量化能量转换的新型岩石统计损伤构成模型。该模型的新颖之处在于考虑了损伤应力前后岩石损伤的性质。在该组成模型中,能量转换的演化特征呈现出 "勺形 "的五阶段演化,与岩石变形和损伤过程相对应,可用修正的 GaussAmp 函数拟合;损伤变量由以能量转换为分布变量的 Weibull 分布推导得出,在 σcd 之前,由初始缺陷引起的损伤呈单调递减,在 σcd 之后,由新生裂缝引起的损伤呈 "S "形。此外,还使用了三种岩石在不同约束压力下的三轴试验数据来验证所提出的模型,结果在大多数情况下与试验数据十分吻合。裂缝闭合阶段、峰值应力、残余强度和应力下降过程的特征由模型参数控制,这些参数可通过实验数据确定。由于这些参数肯定具有物理意义并与约束压力有关,因此所提出的模型有可能用于岩石工程。
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来源期刊
International Journal of Damage Mechanics
International Journal of Damage Mechanics 工程技术-材料科学:综合
CiteScore
8.70
自引率
26.20%
发文量
48
审稿时长
5.4 months
期刊介绍: Featuring original, peer-reviewed papers by leading specialists from around the world, the International Journal of Damage Mechanics covers new developments in the science and engineering of fracture and damage mechanics. Devoted to the prompt publication of original papers reporting the results of experimental or theoretical work on any aspect of research in the mechanics of fracture and damage assessment, the journal provides an effective mechanism to disseminate information not only within the research community but also between the reseach laboratory and industrial design department. The journal also promotes and contributes to development of the concept of damage mechanics. This journal is a member of the Committee on Publication Ethics (COPE).
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