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Minimal dissipation theory and shear bands in biaxial tests

机译:双轴测试中的最小耗散理论和剪切带

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True biaxial tests of granular materials are investigated by applying the principle of minimal dissipation and comparing to two dimensional contact dynamics simulations. It is shown that the macroscopic steady state manifested by constant stress ratio and constant volume is the result of the ever changing microscopic structure which minimizes the dissipation rate. The shear band angle in the varying shear band structures is found to be constant. We also show that introducing friction on the walls reduces the degeneracy of the optimal shear band structures to one for a wide range of parameters which gives a non-constant stress ratio curve with varying aspect ratio that can be calculated.
机译:通过应用最小耗散原理并与二维接触动力学仿真进行比较,研究了颗粒材料的真实双轴测试。结果表明,恒定的应力比和恒定的体积所表现出的宏观稳态是不断变化的微观结构的结果,微观结构使耗散率最小化。发现变化的剪切带结构中的剪切带角是恒定的。我们还表明,在壁上引入摩擦力可将最佳剪切带结构的简并性降低至一个参数范围,从而可以得出具有可变长宽比的非恒定应力比曲线。

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