Study of Strain-rate Effect in Two-dimensional Biaxial Test on Granular Material using Discrete Element Method

Ananda Putri Swastinitya, Jessica Sjah, James Jatmiko Oetomo
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Abstract

Numerical study to investigate the effect of various strain rates on global friction angle in the sand has been performed. Granular material behavior is influenced by several factors, among others: pack configuration, grain macro and micro roughness, confinement pressure, loading rate, etc. Sand is a granular material composed of discrete particles that the most refined microscopic techniques are needed to study its mechanical properties. In Indonesia, research related to the Discrete Element Method is still very limited. The two-dimensional discrete element method is capable to calculate the motion and interparticle contacts of large number of small particles, and each particle is modeled as a rigid circular element. The study started with the validation of the DEM model using YADE. Particles with a local friction angle of 35° are arranged in a closed rectangular box (frictionless wall). The number of particles used in this model validation simulation is 1000 sphere-type particles with monodisperse particle gradations. The simulation was done by a drained biaxial test with confinement stress of 100 kPa, thereafter varying strain rate are applied. Based on the deviatoric stress–axial strain curve from YADE, the result can be depicted on the Mohr circle to obtain the value of the global friction angle. It is found that the different value of strain rate affects its global friction angle. Increasing the value of the strain rate can increase the material global friction angle, which increases the strain rate from 1% to 5%, 10%, 25%, and 50% will increase its global friction angle by 5%, 5%, 14%, and 18%, respectively.
基于离散元法的颗粒材料二维双轴试验应变率效应研究
本文对不同应变率对砂土整体摩擦角的影响进行了数值研究。颗粒材料的行为受到几个因素的影响,其中包括:填料结构、颗粒宏观和微观粗糙度、约束压力、加载速率等。沙子是一种由离散颗粒组成的颗粒状材料,需要最精细的微观技术来研究其力学特性。在印度尼西亚,有关离散元法的研究仍然非常有限。二维离散元法能够计算大量小颗粒的运动和颗粒间接触,并将每个颗粒建模为一个刚体圆单元。研究从使用YADE对DEM模型进行验证开始。局部摩擦角为35°的颗粒排列在封闭的矩形盒(无摩擦壁)中。该模型验证模拟中使用的颗粒数量为1000个单分散颗粒级配的球形颗粒。模拟采用排水双轴试验,约束应力为100 kPa,然后采用变应变速率。基于YADE的偏应力-轴向应变曲线,将结果绘制在莫尔圆上,得到整体摩擦角的值。结果表明,应变速率的不同会影响其整体摩擦角。增加应变率值可以增加材料的整体摩擦角,应变率从1%增加到5%、10%、25%和50%,其整体摩擦角分别增加5%、5%、14%和18%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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