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首页> 外文期刊>Journal of Thermal Spray Technology >High-Speed Video Analysis of the Process Stability in Plasma Spraying
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High-Speed Video Analysis of the Process Stability in Plasma Spraying

机译:等离子体喷涂过程稳定性的高速视频分析

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In plasma spraying, instabilities and fluctuations of the plasma jet have a significant influence on the particle in-flight temperatures and velocities, thus affecting the coating properties. This work introduces a new method to analyze the stability of plasma jets using high-speed videography. An approach is presented, which digitally examines the images to determine the size of the plasma jet core. By correlating this jet size with the acquisition time, a time-dependent signal of the plasma jet size is generated. In order to evaluate the stability of the plasma jet, this signal is analyzed by calculating its coefficient of variation c(v). The method is validated by measuring the known difference in stability between a single-cathode and a cascaded multi-cathode plasma generator. For this purpose, a design of experiment, covering a variety of parameters, is conducted. To identify the cause of the plasma jet fluctuations, the frequency spectra are obtained and subsequently interpreted by means of the fast Fourier transformation. To quantify the significance of the fluctuations on the particle in-flight properties, a new single numerical parameter is introduced. This parameter is based on the fraction of the time-dependent signal of the plasma jet in the relevant frequency range.
机译:在等离子喷涂中,等离子射流的不稳定性和波动对粒子在飞行中的温度和速度有重大影响,从而影响涂层的性能。本文介绍了一种利用高速摄像技术分析等离子体射流稳定性的新方法。提出了一种方法,该方法对图像进行数字检查,以确定等离子射流核心的大小。通过将该射流尺寸与采集时间相关联,可以生成与时间相关的等离子体射流尺寸信号。为了评估等离子体射流的稳定性,通过计算其变异系数c(v)来分析该信号。通过测量单阴极和级联多阴极等离子体发生器之间已知的稳定性差异,验证了该方法的有效性。为此,进行了一项涵盖各种参数的实验设计。为了确定等离子体射流波动的原因,获得了频谱,随后通过快速傅里叶变换进行了解释。为了量化涨落对粒子飞行特性的影响,引入了一个新的单一数值参数。该参数基于相关频率范围内等离子体射流的时间相关信号的分数。

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