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首页> 外文期刊>International Journal of Distributed Sensor Networks >Effect of Plasma Gas Flow Direction on Hydrophilicity of Polymer by Small Zone Cold Plasma Treatment and Hydrophobic Plasma Treatment
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Effect of Plasma Gas Flow Direction on Hydrophilicity of Polymer by Small Zone Cold Plasma Treatment and Hydrophobic Plasma Treatment

机译:等离子体气体流动方向对小区冷等离子体处理和疏水等离子体处理的聚合物亲水性

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摘要

Plasma treatment is the most popular surface modification process of polymers. A small cold plasma zone treatment is an important modification technique in modern industry. In this study, the effect of gas flow direction on plasma treatment was investigated. In order to decrease the plasma zone area, we added a separate cylinder to surround the upper electrode. The separate cylinder is effective in limiting the plasma discharge area, and we could find a light and dark area in the vacuum chamber. After O2plasma treatment, the result shows that only PP nonwoven in the discharge area became hydrophilic, but the other position away from the plasma zone was not affected. The water adsorption of PP nonwoven increased from 34.8% to 537.4%. When the sample is further from the plasma zone, near the up stream of gas flow, the surface property is less hydrophilic. The water contact angle analysis of PS and glass shows the same results as those of PP nonwoven. But PET in plasma zone or dark zone (plasma zone: 75° to 31°, dark zone: 75° to 52°) both show hydrophilic property. The wettability effect in the dark zone may be due to the UV-light irradiation in the process of plasma excitation.
机译:等离子体处理是聚合物最流行的表面改性过程。一种小的冷等离子体区域处理是现代工业中的重要改进技术。在这项研究中,研究了气体流动方向对等离子体处理的影响。为了减少等离子体区域区域,我们添加了一个单独的圆筒以围绕上电极。单独的气缸有效地限制了等离子体放电区域,并且我们可以在真空室中找到一个光和暗区域。在O2PLASMA处理之后,结果表明,放电区域中只有PP非织造织物变得亲水,但远离等离子区的另一个位置不受影响。 PP非织造虫的水吸附从34.8%增加到537.4%。当样品进一步从等离子体区,靠近气流流靠近气流,表面性质不太亲水。 PS和玻璃的水接触角分析显示与PP非织造物相同的结果。但宠物在等离子区或暗区(等离子区:75°至31°,暗区:75°至52°)显示亲水性。暗区中的润湿性效应可能是由于等离子体激发过程中的UV光照射。

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