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Stress Network Analysis of 2D Non-Cohesive Polydisperse Granular Materials using Infrared Thermography

机译:二维非粘性多分散颗粒材料的红外热成像应力网络分析

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摘要

The objective of the study is to analyze the hydrostatic stress network in two-dimensional cohesionless polydisperse granular materials under confined compression. Infrared (IR) thermography and thermoelastic stress analysis were used for this purpose. As model materials, the granular media under study were composed of cylinders made in POM polymer. Three cylinder diameters were used to prepare different samples differing in terms of the ratio between the numbers of cylinders of each diameter. These samples comprised between 200 and 324 cylinders. The temperature variations due to thermoelastic coupling under loading were measured on a cross-section of the cylinder network using an IR camera. The processing enabled us to identify the hydrostatic stress network in the samples. Molecular dynamics (MD) simulations were then performed to obtain a numerical network of hydrostatic stresses for each sample. The fields obtained from IR experiments and MD simulations are rarely in agreement, except in some zones of the sample. This was expected as it is not possible to have exactly the same geometrical configurations with both approaches. However, a good agreement is obtained in terms of statistical distributions.
机译:该研究的目的是分析有限压缩下二维无粘性多分散颗粒材料的静水应力网络。为此使用了红外(IR)热成像和热弹性应力分析。作为模型材料,正在研究的颗粒介质由POM聚合物制成的圆柱体组成。使用三个圆柱体直径来制备不同样品,每个样品的直径之间的比率不同。这些样品包括200至324个圆柱体。使用红外热像仪在圆柱网络的横截面上测量了由于载荷作用下的热弹性耦合引起的温度变化。该处理使我们能够识别样品中的静水应力网络。然后进行分子动力学(MD)模拟以获得每个样品的静水压力数值网络。从IR实验和MD模拟获得的场很少一致,除了样品的某些区域。这是预料之中的,因为两种方法不可能具有完全相同的几何构型。但是,在统计分布方面获得了良好的一致性。

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