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Analysis of contamination level of gases generated during the surface cleaning process of metal sheets with low-pressure cold plasma

机译:低压冷等离子体表面清洁过程中污染气体污染水平的分析

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The research addresses an analysis of the level of contamination generated by the gases produced when applying low-pressure cold plasma in a cleaning process of metal sheets used in the manufacture of white goods. A mixture of argon and oxygen ionized gases at 50% was utilized to break down the lubricating oil molecules deposited on the surface of the sheet metal. A statistically significant number of samples were selected, with different volumes of oil on the surface, between 6 ml and 34 ml. The samples were later subjected to a plasma discharge with a time of 72 s, a gas pressure of 0.6 bar and 50% power to determine the correlation of the oil volume with the levels of gases generated by the discharge, maintaining the degree of surface cleanliness, as given by contact angle values between 67.5 and 79 degrees, constant. For the analysis of results a Pearson correlation was applied for each detected gas. An analysis was later conducted of the relationship between the degree of cleanliness of the metallic surface, as given by contact angles at 16, 36 and 53 degrees, with the levels of the gases generated by the plasma discharge, keeping the volume of the lubricating oil on the surface constant at 5 ml. For the analyses, statistical tests were carried out to find the correlation between the predictor variables and the dependent variable to establish a multivariate linear statistical model. The results allowed the behavior of the level of contamination to be determined, establishing that the volume of oil does not influence the level of the gases generated by the use of low-pressure cold plasma. The results obtained allow us to understand the relationship between the contact angle that represents the quality of surface cleaning of oil-impregnated sheet metal and the level of contamination generated in the process.
机译:该研究解决了在用于制造白色商品的金属板的清洁过程中施加低压冷等离子体时产生的气体产生的污染水平的分析。使用50%的氩气和氧电离气体的混合物分解沉积在金属板表面上的润滑油分子。选择统计学上大量的样品,在表面上具有不同体积的油,在6mL和34ml之间。后来将样品进行等离子体放电,其时间为72 s,气体压力为0.6巴,50%的动力,以确定油量与放电产生的气体水平的相关性,保持表面清洁度的程度,由67.5至79度之间的接触角值给出,常数。为了分析结果,对每个检测到的气体施加了Pearson相关性。后来分析后来在金属表面的清洁度之间的关系进行,如16,36和53度的接触角给出,具有由等离子体放电产生的气体的水平,保持润滑油的体积在5毫升的表面恒定上。对于分析,执行统计测试以找到预测变量与从属变量之间的相关性建立多变量线性统计模型。结果允许确定污染水平的行为,确定油的体积不会影响通过使用低压冷等离子体产生的气体水平。获得的结果允许我们了解表示油浸金属表面清洁质量的接触角与该过程中产生的污染水平的关系。

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