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A Study of the Influence of the Surrounding Gas on the Plasma Jet and Coating Quality during Plasma Spraying

机译:等离子喷涂过程中周围气体对等离子流和涂层质量的影响研究

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摘要

Coating quality is affected by arc and plume instabilities during plasma spraying. In closed chamber plasma spraying, gradual drift is one of the intermediate instabilities, which is mainly due to the electrode erosion. This work focuses on the source of the gradual drift of the plasma jet and the influence on coating quality. The ambient state inside the chamber was controlled by a ventilation system and a vacuum system. The variation in the plasma jet was observed by a particle flux image (PFI) device based on a CCD camera. The optical spectrum of the plasma plume was measured and analyzed through an optical spectrometer. The results indicated that the addition of hydrogen to plasma gas induced the change in the plasma jet length and width with changing rates depending on the chamber state and the ventilation power. With poor ventilation, the intensity of Hα emission was found to become gradually stronger while Hβ and Hγ were found to become weaker. On closing the chamber and remaining enough ventilation power, it was observed that the ambient gas slowly turned red. Simultaneously, the coating weight and thickness were slightly decreased meanwhile the porosity ratio was obviously increased. The red ambient gas has been proved to be able to acidify the city water with pH value decreased from 7 to 1~3. Without hydrogen, the plasma jet was found to be stable without reddening and variation, but the plasma enthalpy was unfortunately low.
机译:等离子喷涂过程中,电弧和羽流不稳定性会影响涂层质量。在密闭室等离子喷涂中,逐渐漂移是中间不稳定性之一,这主要是由于电极腐蚀所致。这项工作的重点是等离子体射流逐渐漂移的源头以及对涂层质量的影响。腔室内的环境状态由通风系统和真空系统控制。通过基于CCD相机的粒子通量图像(PFI)设备观察到等离子体射流的变化。通过光谱仪测量并分析了等离子体羽的光谱。结果表明,向等离子体气体中添加氢气会导致等离子体射流长度和宽度随腔室状态和通风功率的变化而变化。在通风不良的情况下,发现Hα的发射强度逐渐变强,而Hβ和Hγ的强度变弱。在关闭腔室并保持足够的通风能力时,观察到环境气体缓慢变为红色。同时,涂层的重量和厚度略有减少,同时孔隙率明显增加。红色的环境气体已被证明能够酸化城市水,pH值从7降低到1〜3。如果没有氢,则等离子体射流是稳定的,没有变红和变化,但是不幸的是等离子体焓低。

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