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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Numerical research on multi-particle movements and nozzle wear involved in abrasive waterjet machining
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Numerical research on multi-particle movements and nozzle wear involved in abrasive waterjet machining

机译:磨料水射流加工中多颗粒运动和喷嘴磨损的数值研究

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摘要

Multi-particle velocities and trajectories in abrasive waterjet machining are of great value to understand the particle erosion mechanism involved in the cutting process. In this paper, the whole-stage simulation model is established from the high-pressure water and abrasive particles entering the nozzle to the mixed abrasive jet impacting the workpiece based on the SPH-DEM-FEM method. Comparing the simulation results with the experimental results under different process parameters, the capability of the proposed model is systematically validated. The model is applied to study the mixing and accelerating process of abrasive particles, and the results show that a speed difference is existed between the water and abrasive particles after being ejected from the nozzle. In addition, the nozzle wear pattern is also analyzed carefully. It is discovered that the most serious wear happened at the junction of the mixing chamber and the focusing tube. And the focusing tube wear is uneven and spreads downward.
机译:磨料水射流加工中的多颗粒速度和轨迹对于理解切削过程中涉及的颗粒侵蚀机理具有重要价值。本文基于SPH-DEM-FEM方法,建立了从高压水和磨粒进入喷嘴到混合磨料射流冲击工件的全阶段仿真模型。将仿真结果与不同工艺参数下的实验结果进行对比,系统验证了所提模型的性能。应用该模型研究了磨料颗粒的混合和加速过程,结果表明,水和磨粒从喷嘴喷出后存在速度差。此外,还仔细分析了喷嘴磨损模式。结果发现,最严重的磨损发生在混合室和聚焦管的连接处。并且调焦管磨损不均匀,向下蔓延。

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