主应力轴旋转引起颗粒材料塑性变形的细观机理
编号:216 访问权限:仅限参会人 更新:2024-04-30 10:30:27 浏览:229次 口头报告

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摘要
Different from classical plasticity theory developed basing on stress invariants, rotation of principal stress axis causes plastic deformation of granular materials. To investigate this unique feature of granular materials, this study carries out discrete element simulations (DEM) to simulate the material response under principle stress rotation and applies homogenization to discover the paricle-scale mechanism. The simulation results show that plastic deformation is produced by rotation of principal stress axis and higher the stress ratio, the material plastic deformation gets larger and and the degree of non-coaxiality gets smaller. Continuous rotation of principal stress axis to large number of cycles brings the sample to an ultimate state with constant stress ratio and repeated strain trajectories. This ultimate state is insensitive to the initial void ratio and mainly dependent on the stress state. Larger stress ratio results in a smaller void ratio and larger strain trajectory.
To further investigate material plasticity caused by rotation of principal stress axis, numerical simulations of small loading-unloading increment have been carried out to facilitate detailed analyse of elastic deformation and material plasticity. Particle-state governing mechanism and state parameters have been proposed by detailed investigation of changes in contact forces, internal fabric and particle displacements. Together with homogenization theory, the spatial distribution of local stress increments and local strain increments and the evolution of material state variables are given, serving the development of constitutive model of granular materials considering general load paths.
关键词
rotation of principal stress axis; discrete element method (DEM); fabric evolution; non-coaxial deformation
报告人
李欣
东南大学

稿件作者
李欣 东南大学
李霞 东南大学
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重要日期
  • 会议日期

    05月31日

    2024

    06月03日

    2024

  • 06月03日 2024

    摘要截稿日期

  • 06月03日 2024

    初稿截稿日期

  • 06月03日 2024

    注册截止日期

主办单位
中国力学学会
计算力学专业委员会
颗粒材料计算力学专业组
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河海大学
大连理工大学
中国颗粒学会
江苏省力学学会
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