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Particle temperature fluctuations in plasma spraying

机译:等离子喷涂中的颗粒温度波动

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In a DC plasma spray torch, the dynamic behaviour of the arc attachment at the anode nozzle results in fluctuations of arc voltage and the resulting plasma jet instabilities affect the treatment of the particles injected in the plasma flow, and thus, the coating quality. However it is not clear if the experimentally-observed fluctuations of particle temperatures are a major phenomena and if their frequencies are always in unison with those of voltage. In this study, two on-line techniques are used to investigate respectively the time-variation of particle temperatures and their correlations with voltage variations; the first technique makes it possible to analyse plasma voltage instabilities and the second one to investigate the instabilities of particle temperatures. Both allow determining the frequencies and amplitude variations of voltage and particle temperatures. The experiments are carried out with two plasma torches (F4-type and 3MB-type) using respectively argon-hydrogen or nitrogen-hydrogen mixtures as plasma-forming gases. A good correlation between arc voltage and particle temperature fluctuations is observed when the plasma torch is operating with argon-hydrogen while that's not the case when the torch is operating with nitrogen-hydrogen.
机译:在直流等离子喷枪中,阳极喷嘴处电弧附件的动态行为会导致电弧电压波动,并且所产生的等离子束不稳定性会影响等离子流中注入的颗粒的处理,从而影响涂层质量。但是,尚不清楚实验观察到的颗粒温度波动是否是主要现象,以及它们的频率是否始终与电压一致。在这项研究中,使用两种在线技术分别研究了颗粒温度的时变及其与电压变化的关系。第一种技术可以分析等离子体电压的不稳定性,第二种技术可以研究粒子温度的不稳定性。两者都可以确定电压和粒子温度的频率和幅度变化。用两个等离子炬(F4型和3MB型)进行实验,分别使用氩氢或氮氢混合物作为等离子体形成气体。当等离子炬使用氩氢运行时,观察到电弧电压与颗粒温度波动之间具有良好的相关性,而炬使用氮氢运行时则不是这种情况。

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