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Plasma Treatment of Crosslinked Polyethylene Tubes for Improved Adhesion of Water-based Paints

机译:等离子体处理交联聚乙烯管,以改善水性涂料的附着力

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Cold plasmas fed trichloromethane-argon mixtures were used to treat cross-linked polyethylene (PE) to improve the adhesion of water-based paint. The effects of the plasma treatment undertaken at different percentages of CHCl 3 in the plasma feed, C Cl , were investigated using Infrared Spectroscopy in Diffuse Reflection (DR) mode, Scanning Electron Microscopy (SEM), Energy Dispersive X-ray Spectroscopy (EDS), X-ray Photoelectron Spectroscopy (XPS), goniometry for surface contact angle measurements, profilometry for roughness measurements, and paint adhesion tests. All the treatments modify the surfaces by introducing chlorine. Oxygen is present in the bulk and on the surfaces of the treated and untreated material. The treatments do not alter the bulk, but tend to increase the surface roughness and contact angle. When CHCl 3 is present in the plasma subsequent paint adhesion is improved from a very poor classification of 4 to an excellent classification of 0 (assessed according to the appropriate Brazilian standards (BS EN ISO 2409:2007 and BS 3900-E6:2007A)). Surface roughness is not increased at low C Cl but improved paint adhesion occurs for all C Cl 0. Although the causes of the improved paint adhesion with the plasma treatment are unclear, they may be related to the plasma activation of unsaturated carbon and oxygen functionalities.
机译:使用冷等离子体加入的三氯甲烷-氩气混合物处理交联聚乙烯(PE),以改善水性涂料的附着力。使用扩散反射(DR)模式的红外光谱,扫描电子显微镜(SEM),能量色散X射线光谱(EDS)研究了在血浆进料C Cl中以不同百分比的CHCl 3进行等离子体处理的效果。 ,X射线光电子能谱(XPS),用于表面接触角测量的测角仪,用于粗糙度测量的轮廓测量仪以及涂料附着力测试。所有处理都通过引入氯来改变表面。氧气存在于经过处理和未经处理的材料的主体中和表面上。处理不会改变体积,但会增加表面粗糙度和接触角。当血浆中存在CHCl 3时,随后的涂料附着力从极差的4级改善到极好的0级(根据适当的巴西标准进行评估(BS EN ISO 2409:2007和BS 3900-E6:2007A)) 。在低C Cl下表面粗糙度不会增加,但是对于所有C Cl> 0都会出现改善的涂料附着力。尽管尚不清楚通过等离子体处理改善涂料附着力的原因,但它们可能与不饱和碳的等离子体活化和氧官能度有关。

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