考虑永久记忆效应的含水泥岩蠕变损伤本构模型研究

    STUDY ON CREEP DAMAGE CONSTITUTIVE MODEL OF HYDROUS MUDSTONE CONSIDERING PERMANENT MEMORY EFFECT

    • 摘要: 考虑记忆效应对准确描述蠕变过程中的非线性加速蠕变阶段至关重要。以含水泥岩为研究对象,开展了不同含水率泥岩的三轴压缩和蠕变试验及细观结构测试,揭示了泥岩弹性模量随含水率的软化规律,确定了含水泥岩蠕变长期强度,表明水作用对泥岩细观结构劣化影响显著。基于此,提出了基于弹性模量软化及孔隙分形维数的不同含水率泥岩宏-细观损伤变量,构建了Burgers蠕变损伤本构模型。然后,根据记忆依赖导数理论提出了修正的记忆依赖导数,建立了一个由应力开关控制的可以描述岩石非线性加速蠕变特征的黏壶元件,该元件的记忆效应具有不随时间失效的优越性以及准确清晰的物理意义。最后,将Burgers蠕变损伤本构模型与黏壶元件串联,建立了考虑永久记忆效应的蠕变损伤本构模型。该模型综合考虑了不同含水率泥岩的初始宏-细观损伤特征,并通过对不同含水率泥岩三轴压缩蠕变试验成果验证及与其他类型蠕变本构模型的对比计算,验证了所提蠕变本构模型的准确性和优越性。研究成果可为岩土工程长期稳定性分析提供理论依据。

       

      Abstract: The memory effect plays a critical role in accurately characterizing the nonlinear accelerated creep stage of rock deformation. Using hydrous mudstone as the research object, triaxial compression tests, creep tests, and microstructural analyses were conducted on mudstone specimens with varying water contents. The results reveal the softening behavior of the elastic modulus with increasing water content and determine the long-term creep strength of water-bearing mudstone, demonstrating the significant influence of water on the deterioration of mudstone microstructure. Based on these findings, macroscopic and mesoscopic damage variables were defined using elastic modulus softening and pore fractal dimension, respectively, and a Burgers creep damage constitutive model was developed. Furthermore, based on the theory of memory-dependent derivatives, a modified memory-dependent derivative was proposed, and a stress-switch-controlled dashpot element capable of describing nonlinear accelerated creep behavior was established. This element features a memory effect that does not decay over time and possesses clear physical significance. Finally, the dashpot element was connected in series with the Burgers creep damage model to construct a creep damage constitutive model that accounts for permanent memory effects. This model comprehensively incorporates the initial macroscopic and mesoscopic damage characteristics of mudstone under different water contents. The accuracy and superiority of the proposed model were validated through triaxial creep test results on mudstone with varying water contents and comparative calculations with other creep models. These findings provide a theoretical foundation for analyzing the long-term stability of geotechnical engineering structures.

       

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