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首页> 外文期刊>Journal of Applied Polymer Science >Adhesion of the plasma polymer of trimethylsilane to aluminum alloys
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Adhesion of the plasma polymer of trimethylsilane to aluminum alloys

机译:三甲基硅烷的等离子聚合物与铝合金的粘合力

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摘要

The adhesion of a plasma polymer and the corrosion protection offered to aluminum alloy substrates depends on the cleanliness of the substrate surface and the state of oxides on the aluminum alloy surface. Both factors are dependent on what type of alloy is used, and consequently, the best preparation of the substrate surface differs on the type of aluminum alloy. Oxygen plasma treatment is effective for the elimination of organic surface contamination, but plasma treatment, such as that of mixed argon and hydrogen, cannot be used to modify the surface state of oxides on these alloys. This is because oxides of aluminum are stable and thus resist plasma modification, and prolonged plasma treatment has been observed to change concentrations of alloy components at the surface due to the heating of the alloy. Chemical cleaning of the surface is necessary before the application of the plasma polymer used for corrosion protection enhancement. Once the surface was properly prepared, a plasma polymer of trimethylsilane (TMS), prepared by cathodic polymerization, adhered well to aluminum alloys investigated in this study. Major adhesive failure, however, occurred as a consequence of reactor contamination when hexafluoroethane (HFE) plasma treatment of initially formed TMS plasma polymers was employed. Plasma pretreatment of the substrate with O-2 or postplasma treatment of the plasma polymer of TMS with Ar (instead of HFE) was effective in eliminating the surface-contamination effect on the adhesion. (C) 2002 Wiley Periodicals, Inc. [References: 16]
机译:等离子体聚合物的粘附性和提供给铝合金基材的腐蚀保护取决于基材表面的清洁度和铝合金表面上氧化物的状态。这两个因素均取决于所用合金的类型,因此,基材表面的最佳制备方法因铝合金的类型而异。氧等离子体处理对于消除有机表面污染是有效的,但是等离子体处理(如混合氩气和氢气的等离子体处理)不能用于修改这些合金上氧化物的表面状态。这是因为铝的氧化物是稳定的并且因此抵抗等离子体改性,并且已经观察到长时间的等离子体处理由于合金的加热而改变了表面处的合金成分的浓度。在施加用于增强腐蚀防护的等离子聚合物之前,必须对表面进行化学清洁。一旦适当地准备了表面,通过阴极聚合制备的三甲基硅烷(TMS)的等离子聚合物可以很好地粘附到本研究中研究的铝合金上。但是,当采用六氟乙烷(HFE)等离子体处理最初形成的TMS等离子体聚合物时,由于反应器污染而导致发生严重的粘合故障。用O-2对基材进行等离子体预处理或用Ar(而不是HFE)对TMS的等离子聚合物进行等离子处理,可以有效地消除粘附的表面污染效应。 (C)2002 Wiley Periodicals,Inc. [参考:16]

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