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首页> 外文期刊>Journal of Thermal Spray Technology >Controlling the Twin Wire Arc Spray Process Using Artificial Neural Networks (ANN)
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Controlling the Twin Wire Arc Spray Process Using Artificial Neural Networks (ANN)

机译:使用人工神经网络(ANN)控制双丝电弧喷涂工艺

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One approach for controlling the twin wire arc spray process is to use optical properties of the particle beam as input parameters for a process control. The idea is that changes in the process like eroded contact nozzles or variations of current, voltage, and/or atomizing gas pressure may be detected through observation of the particle beam. It can be assumed that if these properties deviate significantly from those obtained from a beam recorded for an optimal coating process, the spray particle and thus the coating properties change significantly. The goal is to detect these deviations and compensate the occurring errors by adjusting appropriate process parameters for the wire arc spray unit. One method for monitoring optical properties is to apply the diagnostic system particle flux imaging (PFI): PFI fits an ellipse to an image of a particle beam thereby defining easy to analyze characteristical parameters by relating optical beam properties to ellipse parameters. Using artificial neural networks (ANN), mathematical relations between ellipse and process parameters can be defined. It will be shown that in the case of a process disturbance through the use of an ANN-based control new process parameters can be computed to compensate particle beam deviations.
机译:控制双丝电弧喷涂工艺的一种方法是将粒子束的光学特性用作工艺控制的输入参数。想法是,可以通过观察粒子束来检测过程的变化,例如接触喷嘴的腐蚀或电流,电压和/或雾化气体压力的变化。可以假设,如果这些性能与为最佳涂覆过程而记录的光束所获得的性能明显不同,则喷涂颗粒和涂层性能将发生显着变化。目的是通过调整电弧喷涂装置的适当工艺参数来检测这些偏差并补偿发生的错误。监视光学特性的一种方法是应用诊断系统粒子通量成像(PFI):PFI使椭圆适合粒子束的图像,从而通过将光束特性与椭圆参数相关来定义易于分析的特征参数。使用人工神经网络(ANN),可以定义椭圆和过程参数之间的数学关系。将表明,在过程干扰的情况下,通过使用基于ANN的控制,可以计算出新的过程参数来补偿粒子束偏差。

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