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Improving the surface properties of cellophane by air plasma treatment

机译:通过空气等离子体处理改善玻璃纸的表面性能

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Air plasma treatment at low pressure was applied to modify the surface of a cellulose film with the aim to improve its wettability, dyeability and adhesion properties. The contact angles of different polar liquids on the treated films show an exponential decay with treatment time at a given power; the power-time reciprocity is followed. The calculated surface tension values exponentially rise to the same maximum value with a decrease of the polar fraction. ATR-FTIR analyses suggest that a cellulose dehydration takes place rather than a surface oxidation. The plasma treatment improves also the cellophane dyeability with typical dyes for cellulose fibers: the results of dye uptake follow the same trend as the surface energy. The bond strength of lap joints of cellophane with LLDPE film shows a strong improvement of the adhesion depending on the duration and the power of treatment. The whole results are consistent with ablation effects like those observed with air corona treatment rather than oxygen plasma. (c) 2005 Elsevier B.V. All rights reserved.
机译:进行低压空气等离子体处理以修饰纤维素膜的表面,以改善其润湿性,染色性和粘附性。在给定的功率下,不同极性液体在处理过的薄膜上的接触角随处理时间呈指数衰减。遵循开机时间互惠性。随着极性分数的减小,所计算的表面张力值以指数方式上升到相同的最大值。 ATR-FTIR分析表明发生了纤维素脱水而不是表面氧化。等离子体处理还改善了纤维素纤维典型染料的玻璃纸可染性:染料吸收的结果遵循与表面能相同的趋势。玻璃纸的搭接接头与LLDPE薄膜的结合强度显示粘合力的强力提高,具体取决于处理的持续时间和处理能力。整体结果与消融效果一致,如采用空气电晕处理而非氧等离子体观察到的消融效果。 (c)2005 Elsevier B.V.保留所有权利。

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