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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Discrete element method simulations and experimental study of interactions in 3D granular bedding during low-velocity impact
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Discrete element method simulations and experimental study of interactions in 3D granular bedding during low-velocity impact

机译:低速冲击期间3D粒状床上用品相互作用的离散元素模拟及实验研究

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The impact of a spherical intruder on a bedding of spherical particles and the behaviour of particles during the splashing phenomenon were studied experimentally and via discrete element method (DEM) simulations. The objective of this study was to gain deeper insight into the physical mechanisms governing the behaviour of the particle bedding during low-velocity impact. The experiments were performed using a high-speed camera to capture the splash of the particles. A piezoelectric ceramic pressure sensor located at the bottom of the container was employed to measure the pressure impulse generated by the intruder impact. We obtained good agreement between the DEM simulations and experimental results for all the considered parameters of the impact process. The study allowed a better understanding of the interactions in a granular bedding during impact at micro-scale. The results indicated that the dynamics of the intruder-particles, particle-particle, and particles bottom interactions were similar, having a nonlinear increase that accompanied an increase in the impact velocity. This was caused by a local increase in the effective stiffness of the bedding resulting from simultaneous multi collisions. The coefficient of particle-particle friction significantly affected all the measures considered: speed of the compression wave, amplitude of the impact force, amount of kinetic energy transferred from the intruder to the particles, depth of penetration and crater diameter, and number of ejected particles and their kinetic energy. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过离散元素法(DEM)模拟,研究了球形入侵者在球形颗粒寝具和颗粒行为的影响。本研究的目的是更深入地了解治疗低速撞击期间颗粒床上用品行为的物理机制。使用高速相机进行实验以捕获颗粒的飞溅。采用位于容器底部的压电陶瓷压力传感器来测量通过入侵者冲击产生的压力脉冲。我们在DEM仿真和实验结果之间获得了良好的矛盾过程的实验结果。该研究允许更好地理解在微尺度的影响期间颗粒状床上用品中的相互作用。结果表明,入侵者 - 颗粒,颗粒和颗粒底部相互作用的动态相似,具有伴随冲击速度的增加的非线性增加。这是由同时多碰撞产生的床上用品的有效刚度的局部增加引起的。粒子颗粒摩擦系数显着影响所有措施所考虑的所有措施:压缩波的速度,冲击力的幅度,从入侵者转移到颗粒的动能量,渗透和火山口直径的深度,以及喷射粒子的数量及其动能。 (c)2018 Elsevier B.v.保留所有权利。

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