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首页> 外文期刊>Applied Surface Science >Effects of different laser and plasma treatments on the interface and adherence between evaporated aluminium and polyethylene terephthalate films: X-ray photoemission, and adhesion studies
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Effects of different laser and plasma treatments on the interface and adherence between evaporated aluminium and polyethylene terephthalate films: X-ray photoemission, and adhesion studies

机译:不同激光和等离子体处理对蒸发的铝和聚对苯二甲酸乙二醇酯薄膜之间的界面和附着力的影响:X射线光发射和附着力研究

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Chemical functionalities, topography and adherence between Al and polyethylene terephthalate (PET) films, modified by laser treatment below the polymer ablation threshold fluence in air and in helium at different wavelengths, fluences, pulse numbers and by low pressure plasma treatment in He 95% with O-2 5%, at 0.2 W/cm(3) were investigated by XPS, AFM, water contact angle and adhesion measurements. XPS results revealed (i) formation of polar-oxygenated functional groups (C=O, O-C=O) by laser treatments in air and (ii) incorporation of ester and ether groups by plasma treatment in He 95% with 0, 5%. After deposition of thermally evaporated Al on laser or plasma treated PET films, U-Peel tests indicated that laser treatment in air at 248 nm and 20 mJ/cm and plasma treatment improved AUPET adhesion. XPS studies revealed the presence of an increasimg number of Al-O-C stable and cohesive interfacial complexes formed by chemical interaction between aluminium and the laser treated in air or plasma treated in He 95% with O-2 5% PET films. These interfacial compounds play an important role in the enhancement of the metal/polyrner adhesion. (c) 2004 Elsevier B.V. All rights reserved.
机译:铝和聚对苯二甲酸乙二酯(PET)膜之间的化学功能,形貌和粘附性,通过激光处理在低于聚合物烧蚀阈值的情况下在空气和氦气中的不同波长下的通量,通量,脉冲数以及在95%的He中进行低压等离子体处理而得以改进通过XPS,AFM,水接触角和附着力测量研究了O-2 5%(0.2 W / cm(3))。 XPS结果显示(i)通过在空气中进行激光处理形成极性加氧的官能团(C = O,O-C = O),以及(ii)通过在95%的He,0%和5%的He中通过等离子体处理掺入酯基和醚基。在将热蒸发的Al沉积在激光或等离子体处理过的PET膜上之后,U-Peel测试表明,在空气中以248 nm和20 mJ / cm进行激光处理以及等离子体处理可以改善AUPET的附着力。 XPS研究表明,铝和激光在空气中或在He 95%中用O-2 5%PET膜处理过的等离子体中进行的激光之间的化学相互作用形成了数量不断增加的Al-O-C稳定且内聚的界面复合物。这些界面化合物在增强金属/聚合体附着力方面起着重要作用。 (c)2004 Elsevier B.V.保留所有权利。

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