首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Transmission of stresses in static and sheared granular beds: The influence of particle size, shearing rate, layer thickness and sensor size
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Transmission of stresses in static and sheared granular beds: The influence of particle size, shearing rate, layer thickness and sensor size

机译:静态和剪切颗粒床中的应力传递:粒径,剪切速率,层厚度和传感器尺寸的影响

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摘要

The spatial non-uniformities and temporal fluctuations in the normal stress transmitted across a sheared granular layer have been studied through a combination of experiments in a Jenike shear cell equipped with normal force (stress) transducers imbedded on the bottom shearing surface and discrete element method (DEM) simulations. Experiments were carried out with particles of different sizes and layers of different thicknesses; the normal stress was measured at several different shearing rates and at several positions on the bottom surface. The DEM simulations revealed a direct link between the spatial inhomogeneities and temporal fluctuations in the stress recorded in our measurements. We found that the dependence of the average normal stress on the bottom surface as a function of height mirrored that in Janssen's analysis of stresses in wall-bounded static assemblies.
机译:通过在Jenike剪切单元中进行的实验组合研究了在剪切颗粒层上传递的法向应力的空间不均匀性和时间波动,该单元配备了嵌入在底部剪切面上的法向力(应力)传感器和离散元方法( DEM)模拟。对不同大小的颗粒和不同厚度的层进行了实验;在几种不同的剪切速率下以及在底面上的多个位置处测量法向应力。 DEM模拟揭示了空间不均匀性与我们测量中记录的应力的时间波动之间的直接联系。我们发现,平均法向应力在底表面上的依赖关系与高度的关系与在Janssen对带壁边界的静态装配体中的应力进行分析时所反映的情况相似。

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