An improved damage constitutive model for pre-heated rocks under uniaxial compression considering the initial compaction effect and residual strength

IF 4 2区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY International Journal of Damage Mechanics Pub Date : 2024-08-22 DOI:10.1177/10567895241275380
Xunjian Hu, Dongdong Ma, Ni Xie, Qizhi Zhu, Haibo Hu, Xiaonan Gong
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Abstract

Enhancing our understanding of the damage evolution in pre-heated rock is essential for safer design practices. Accordingly, a mechanical damage variable that accurately depicts the initial damage recovery process was proposed. Subsequently, a damage constitutive model is developed based on the generalized equivalent strain principle, enabling the identification of the initial nonlinear characteristics exhibited in the stress-strain curve. By integrating the above constitutive model with a statistical damage model that considers the residual strength based on the Weibull distribution, a comprehensive piecewise damage constitutive model specifically designed for pre-heated rocks was derived. The model consists of eight parameters, which can be directly determined through experimental results or readily obtained by fitting of the stress-strain data. A comparison of experimental data from multiple pre-heated rock types subjected to uniaxial compression is performed to validate the proposed model, revealing a strong agreement between the theoretical and experimental results. The comparison results demonstrate that the proposed model effectively captures the nonlinearity of the stress-strain curve throughout various stages, including the initial compaction, linear elastic, and strain-hardening stages before reaching the peak stress, as well as the subsequent strain-softening and residual stages. Furthermore, the proposed damage constitutive model elucidates the influence of temperature on crucial factors such as the elastic modulus, peak stress, residual strength, and stress-strain curve of pre-heated rocks, thereby enhancing its applicability in the design of deep underground rock projects.
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考虑初始压实效应和残余强度的预热岩石单轴压缩改进损伤构成模型
加强对预热岩石损伤演变过程的了解对于更安全的设计实践至关重要。因此,我们提出了一种能准确描述初始损伤恢复过程的机械损伤变量。随后,根据广义等效应变原理建立了损伤构成模型,从而能够识别应力-应变曲线中表现出的初始非线性特征。通过将上述组成模型与基于威布尔分布考虑残余强度的统计损伤模型相结合,得出了一个专为预热岩石设计的综合片断损伤组成模型。该模型由八个参数组成,这些参数可以通过实验结果直接确定,也可以通过应力应变数据拟合轻松获得。为了验证所提出的模型,对多种预热岩石类型在单轴压缩条件下的实验数据进行了比较,结果表明理论结果与实验结果非常吻合。对比结果表明,所提出的模型有效地捕捉了应力-应变曲线在各个阶段的非线性,包括达到峰值应力之前的初始压实、线弹性和应变硬化阶段,以及随后的应变软化和残余阶段。此外,所提出的损伤构成模型还阐明了温度对预热岩石的弹性模量、峰值应力、残余强度和应力应变曲线等关键因素的影响,从而提高了其在地下深层岩石工程设计中的适用性。
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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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