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Investigation of Part Detachment Process from Printed Circuit Boards for Effective Recycling Using Particle-Based Simulation

机译:用基于粒子仿真对有效回收的印刷电路板部件分离过程的研究

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摘要

For the establishment of appropriate recycling process, the delamination of electric components from printed circuit boards (PCBs), which are major components of c-waste, is expected, because some of useful critical metals are concentrated in specific components. However, the knowledge about the mechanism of the delamination process in a drum typed agitation mill is still limited and uncertain. To better comprehend the mechanism, in this study, the particle-based simulation and comminution tests using handmade PCBs were conducted. The behavior of PCBs and the air flow in the mill having flexible chains was simulated by the discrete element method (DEM) coupled with computational fluid dynamics (CFD). To model the shape of PCBs, the particle based rigid body model was introduced into the DEM. Since this model could not directly simulate the breakage phenomena, collision energy was calculated to qualitatively evaluate the comminution performance. In addition, the simulation results were compared with the experimental comminution tests, This study demonstrated the behavior of PCBs and the air flow in the mill, and the effect of the air to comminution process in the mill. It was also shown that the collision energy related to parts collision was better correlated with the experimental results and this correlation can be assumed using first order rate equation, which suggested part detachment was mainly brought by direct collision to parts in the mill.
机译:为了建立适当的回收过程,预期来自印刷电路板(PCB)的电气部件的分层,这是C废料的主要组分,因为一些有用的关键金属浓缩在特定组分中。然而,关于鼓型搅拌磨机中分层过程机制的知识仍然有限和不确定。为了更好地理解该机制,在本研究中,进行了使用手工PCB的基于粒子的仿真和粉碎测试。通过与计算流体动力学(CFD)耦合的离散元件方法(DEM)模拟了PCB的行为和研磨机中的气流具有柔性链。为了模拟PCB的形状,将基于颗粒的刚体模型引入DEM。由于该模型不能直接模拟破损现象,因此计算碰撞能量以定性地评估粉碎性能。此外,将仿真结果与实验粉碎试验进行了比较,本研究证明了PCB和轧机中的空气流动的行为,以及空气在研磨机中对粉碎过程的影响。还表明与部件碰撞相关的碰撞能量与实验结果更好地相关,并且可以使用第一阶速率方程假设这种相关性,这一相关部分脱离主要通过直接碰撞到磨机中的零件。

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