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Constitutive Relations of Jammed Frictionless Granular Materials under Oscillatory Shear

机译:振动剪切下卡住无摩擦颗粒材料的组成关系

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We numerically investigate the rheological properties of jammed frictionless granular materials under an oscillatory shear in terms of our simulation of the distinct element method. It is demonstrated that the constitutive relation between the shear stress and the shear strain of grains strongly depends on the amplitude and the frequency of the oscillatory shear. For a small amplitude region, the granular material behaves as a visco-elastic material characterized by the Kelvin-Voigt model, while it behaves as a yield stress liquid for a large amplitude region. We find that the rheology of grains under the large amplitude oscillatory shear can be described by a phenomenological constitutive model.
机译:在我们对不同元素法的模拟方面,在振荡剪切下进行了数值研究了堵塞无摩擦颗粒材料的流变性能。据证明剪切应力与晶粒的剪切菌株之间的本构关系强烈取决于振荡剪切的幅度和频率。对于小幅度区域,粒状材料的表现为具有Kelvin-Voigt模型的粘弹性材料,而其表现为大振幅区域的屈服应力液。我们发现,可以通过现象学组成型模型来描述大幅度振荡剪切下的颗粒的流变学。

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