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Computer modelling of the influence of process parameters on the heating and acceleration of particles during plasma spraying

机译:等离子喷涂过程参数对颗粒加热和加速影响的计算机建模

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The motion and heating of feedstock particles in the jet during plasma spraying have been simulated using a theoretical model based on a CFD code. The main parameters affecting particle behavior are the particle diameter, powder injection velocity, the flow velocity and temperature of the plasma gas at the nozzle inlet. There is found to be a strong interaction between the flow field characteristics and the particle parameters, which complicates the particle behavior during spraying. The work demonstrates that particle velocity and surface temperature measurements provide limited information and a coherent computational model is required for process optimization. An end state of in-flight particles is proposed as a means of improving the methodology for the control of thermal spraying. Contour diagrams of end-state parameters against injection velocity and particle size are presented as a guide for improved process control.
机译:使用基于CFD代码的理论模型模拟了等离子喷涂过程中射流中原料颗粒的运动和加热。影响颗粒行为的主要参数是粒径,粉末注射速度,喷嘴入口处等离子气体的流速和温度。发现流场特性与颗粒参数之间存在很强的相互作用,这使喷涂过程中的颗粒行为变得复杂。这项工作表明,颗粒速度和表面温度的测量只能提供有限的信息,并且需要一个连贯的计算模型来进行过程优化。提出了飞行中粒子的最终状态,作为改进热喷涂控制方法的一种手段。最终状态参数相对于注射速度和粒径的等高线图作为改进工艺控制的指南。

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