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孙增春, 刘汉龙, 肖杨. 砂-粉混合料的分数阶塑性本构模型[J]. 岩土工程学报, 2024, 46(8): 1596-1604. DOI: 10.11779/CJGE20230666
引用本文: 孙增春, 刘汉龙, 肖杨. 砂-粉混合料的分数阶塑性本构模型[J]. 岩土工程学报, 2024, 46(8): 1596-1604. DOI: 10.11779/CJGE20230666
SUN Zengchun, LIU Hanlong, XIAO Yang. Fractional-order plasticity model for sand-silt mixtures[J]. Chinese Journal of Geotechnical Engineering, 2024, 46(8): 1596-1604. DOI: 10.11779/CJGE20230666
Citation: SUN Zengchun, LIU Hanlong, XIAO Yang. Fractional-order plasticity model for sand-silt mixtures[J]. Chinese Journal of Geotechnical Engineering, 2024, 46(8): 1596-1604. DOI: 10.11779/CJGE20230666

砂-粉混合料的分数阶塑性本构模型

Fractional-order plasticity model for sand-silt mixtures

  • 摘要: 砂-粉混合料是自然界和岩土工程中常见的非均质土,密实程度、应力水平和细粒含量等因素对其颗粒接触状态和力学性能具有显著影响。为了能够较为全面地描述砂-粉混合料在细粒含量阈值内的复杂力学特性(FCFCthre),基于分数阶微积分理论确定了能够统一描述相关联和非相关联的塑性流动法则,并采用等效骨架孔隙比的概念,将等效骨架状态参数嵌入剪胀方程和塑性模量中,进而建立了考虑细粒含量和状态相关的分数阶塑性本构模型。模型预测结果与试验数据对比分析表明,所建立的分数阶塑性模型能够有效反映砂-粉混合料在排水剪切条件下的应变软化(应变硬化)和剪胀(剪缩)等特性。同时,不排水条件下的关键特征,如流动和非流动行为也可以得到合理地描述。

     

    Abstract: The sand-silt mixtures, as common heterogeneous soils, are ubiquitous in nature and geotechnical engineering, and their particle contact state and mechanical properties are significantly affected by the factors such as density, stress level and fines content. In order to comprehensively describe the complex mechanical properties of the sand-silt mixtures within the fines content threshold (FC < FCthre), the plastic flow rules that can uniformly describe association and non-association are determined based on the fractional calculus theory. Using the concept of equivalent skeleton void ratio, the equivalent skeleton state parameter is embedded in the dilatancy equation and plastic modulus, and then a fractional-order plasticity model considering the fines content and state-dependent behavior is established. The comparison between the predicted results and the experimental data shows that the proposed fractional-order plasticity model can effectively reflect the strain-softening (strain-hardening) and dilatancy (contraction) behaviors of the sand-silt mixtures under drained conditions. Meanwhile, the key characteristics of undrained conditions, such as flow and non-flow behaviors, can also be reasonably described.

     

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