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Collisional SPH: A method to model frictional collisions with SPH

机译:碰撞SPH:一种用SPH模拟摩擦碰撞的方法

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Accurate modeling of rebound kinematics in particle-substrate collisions is essential in a wide range of applications like milling and mixing. To accurately model these real-world collisions the forces arising due to elastoplastic deformation and friction need to be modelled accurately. In this study the use of frictional boundary conditions in modeling elastic collisions with Smooth Particle Hydrodynamics (SPH) is explored. The collision dynamics for an oblique impact of a 3D spherical granule on an elastic substrate is assessed for SPH (a) without any special treatment for friction and (b) using Coulomb's friction model, and it is identified that these approaches are inaccurate in some instances. To resolve this, spring-based contact models are incorporated in SPH to develop a new method for improved contact modeling. We call this method Collisional SPH. This Collisional SPH method predicts both rebound kinematics and surface deformation accurately. This method opens new avenues for further development in modeling collisional deformations and collision dynamics in granular systems using SPH.
机译:精确的粒子衬底碰撞中的反弹运动学建模在铣削和混合等广泛的应用中是必不可少的。为了准确地模拟这些实际碰撞,由于弹性形状变形和摩擦而产生的力需要准确地建模。在这项研究中,探讨了在利用平滑粒子动力学(SPH)建模弹性碰撞中的摩擦边界条件的使用。用于SPH(A)的SPH(A)评估用于弹性基板上的3D球形颗粒的倾斜冲击的碰撞动力学,而不使用库仑的摩擦模型进行摩擦和(b),并且识别出这些方法在某些情况下是不准确的。要解决此问题,以SPH为基于弹簧的触点型号,以开发一种新的接触造型方法。我们称这种方法碰撞SPH。这种碰撞SPH方法准确地预测了反弹运动学和表面变形。该方法开辟了新的途径,以进一步开发使用SPH在颗粒系统中建模的碰撞变形和碰撞动力学。

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