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A study of pneumatic conveying with high-density AM-using metal powder in a pipe bend

机译:用管弯管用高密度AM - 使用金属粉末的气动输送研究

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In this study, we numerically investigate a pneumatic-conveying system for high-density metal powder via a gas-solid two-phase theory. This conveying system is modeled as a conveying pipeline in an additive-manufacturing (AM)-recycling system. The gas phase is set to nitrogen, and the solid-particle phase is set to be a nickel-superalloy material used in AM. The two-phase-flow dynamics of the transport of metal powders by the pneumatic-conveying process are investigated by the CFD-DEM simulation method. In particular, we focus on the flow characteristics of the gas and solid-particle phases in the region of the conveying-pipe bend. The dynamics of the gas phase are evaluated via the three-dimensional Reynolds-averaged Navier-Stokes (RANS) equations. The metal powders are treated as a discrete phase and modeled via the Lagrangian-tracking approach and solved using Newton's second law. The secondary-flow pattern and rotating Dean vortices of the gas flow are discussed in terms of the conveying-pipe-bend-curvature effect. The rope-formation/dispersion behaviors of the solid-particle phase in the bends of different curvatures are also examined based on particle-gas-interaction forces. Experimental validation is conducted to verify the simulation results of the powder flow. The trajectories and velocity fields of the metal powders in the bends with different curvatures are measured in the experiments. The rope-formation/dispersion behaviors can also be found in the experiments. It is demonstrated that the numerical simulations and experimental observations are generally in good agreement. This framework will potentially aid in investigating recycling processes for AM applications under large metal-powder loadings.
机译:在该研究中,我们通过气固两相理论对高密度金属粉末进行了数量研究。该输送系统以添加制造(AM)-Reccling系统的输送管道建模。将气相设定为氮气,并且固体颗粒相设定为上AM中使用的镍超合金材料。通过CFD-DEM仿真方法研究了气动输送过程的金属粉末运输的两相流动力学。特别是,我们专注于输送管弯曲区域中气体和固体颗粒的流动特性。通过三维雷诺平均的Navier-Stokes(RAN)方程评估气相的动态。金属粉末被视为离散相位并通过拉格朗日跟踪方法进行建模,并使用牛顿的第二法解决。就输送管弯曲曲率效应而讨论了气流的二次流动图案和旋转DEAN涡流。还基于颗粒 - 气体相互作用力检查了不同曲率弯曲中固体颗粒相的绳索形成/分散行为。进行实验验证以验证粉末流的仿真结果。在实验中测量弯曲中弯曲中的金属粉末的轨迹和速度场。绳索形成/分散行为也可以在实验中找到。结果证明,数值模拟和实验观察通常很好。该框架将可能有助于在大型金属粉末载荷下调查AM应用的回收过程。

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