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Evaluation of energy contributions using inter-particle forces in granular materials under impact loading

机译:在冲击载荷下使用颗粒材料中的颗粒间力评估能量贡献

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Adrop-tower based experimental setupwas developed for the impact testing of 2D assembly of cylinders with impactor velocity of around 6 m/s. This drop tower setup was used to load 2D granular assemblies of polyurethane and polycarbonate cylinders of 1 ''-1.25 '' length with three different diameters of 1/4 '', 3/8 '' and 1/2 ''. A high speed camera was used for recording the images at speeds between 10,000 and 55,000 fps to monitor the deformation of the cylinders. Kinematic and strain fields in individual grains during each experiment were measured using digital image correlation. These experimentally measured strain and kinematic fields were used as inputs for the granular element method (GEM) based force inference technique and the inter-particle forces in normal and tangential direction were determined at every contact in each experiment. The inter-particle forces at each contact can facilitate the calculation of frictional work done at each contact. The GEM based inter-particle forces for a simple 2 particle granular assembly were found to be in good agreement with predictions from ABAQUS explicit based FEMsimulation. The influence of different model parameters was also characterized such as grain stiffness, frictional coefficient was investigated qualitatively. The impact response of the various ordered granular assemblies was also investigated using the GEM approach and the effect of local defects such as voids or layering of granular materials on the wave propagation phenomena is also studied. The presence of the point or line defects have significant effects on thewave propagation in the granular assemblies due to wave scattering and attenuation.
机译:已开发出基于滴落塔的实验装置,用于冲击器速度约为6 m / s的2D气缸组装的冲击测试。该滴塔装置用于装载长度为1英寸-1.25英寸的聚氨酯和聚碳酸酯圆柱体的二维颗粒组件,其直径分别为1/4英寸,3/8英寸和1/2英寸三种。使用高速相机以10,000至55,000 fps的速度记录图像,以监视圆柱体的变形。使用数字图像相关性测量每个实验期间单个晶粒的运动场和应变场。这些实验测量的应变和运动场被用作基于粒元法(GEM)的力推论技术的输入,并且在每个实验中的每次接触中确定了法向和切向方向上的粒子间力。每个接触处的粒子间力可以促进计算每个接触处完成的摩擦功。发现基于GEM的简单2粒子颗粒组件的粒子间力与ABAQUS基于显式有限元模拟的预测非常吻合。表征了不同模型参数的影响,如晶粒刚度,定性研究了摩擦系数。还使用GEM方法研究了各种有序颗粒组件的冲击响应,还研究了局部缺陷(例如空隙或颗粒材料的分层)对波传播现象的影响。点或线缺陷的存在由于波的散射和衰减而对粒状组件中的波传播具有显着影响。

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