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Triaxial behavior of granular material under complex loading path by a new numerical true triaxial engine

机译:新数值真正三轴引擎复合加载路径下颗粒材料的三轴行为

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摘要

A new numerical true triaxial engine based on discrete element method accounting for rolling resistance contact is developed. By this engine, we have simulated mechanical behavior of granular materials under complex stress loading path in this study. Stress-strain responses of a kind of typical granular sand under several stress loading path in meridian and deviatoric stress space are provided. The results show that the three dimensional effects like the intermediate principal stress play an important role in the modeling processes. Theoretical analysis in strength characteristic implies the strength criteria with three parameters such as unified strength criterion and van Eekelen strength criterion are capable of describing cohesionless granular material behaviors in three dimensional stress states. Moreover, the case study for Chende sand further demonstrates the numerical true triaxial engine, is a potential tool. As compared to conventional triaxial compression test, this new developed apparatus could be widely used to "measure" elastic-plastic behavior in three dimensional stress space for finite element analysis in geotechnical problems. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:开发了一种基于离散元件的新的数值真正的三轴引擎,开发了用于滚动电阻接触的核算。通过该发动机,我们在本研究中的复合应力负荷载量下颗粒材料的模拟力学行为。提供了在经络和脱模应力空间中若干应力加载路径下典型粒状砂的应力 - 应变响应。结果表明,三维效果如中间主应力在建模过程中发挥着重要作用。强度特性的理论分析意味着具有三个参数的强度标准,例如统一强度标准和范肝细胞强度标准能够描述三维应力状态下的无粘性颗粒材料行为。此外,Chende Sand的案例研究进一步证明了数值真正的三轴发动机,是一种潜在的工具。与传统的三轴压缩测试相比,该新开发的装置可广泛用于“测量”在岩土问题中的三维应力空间中的弹性塑性行为,以便在岩土问题中进行有限元分析。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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